Blockchain Papers

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10,511 papersLast indexed Aug 16, 2026
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Jul 31, 2026
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Blockchain and AI

Md Mehedi Hasan Emon, Ratul Islam

This chapter explores the transformative potential of blockchain and artificial intelligence (AI) in revolutionizing green finance. It begins by examining the role of digital transformation in driving sustainable financial practices, highlighting the integration of blockchain and AI. The chapter delves into blockchain's applications in enhancing transparency, traceability, and security within green finance, particularly through smart contracts and decentralized finance solutions. It further discusses AI's contributions to improving risk assessment, ESG evaluation, and combating greenwashing. The synergies between blockchain and AI are explored, showing how their combined use optimizes sustainability-focused investments. Additionally, the chapter addresses regulatory and ethical considerations surrounding these technologies. Finally, it discusses emerging trends and opportunities in green finance, providing insights into the future of sustainable financial systems driven by technological innovation.

Open access
Sustainable Finance and Green Bonds
FinTech, Crowdfunding, Digital Finance
Blockchain Technology Applications and Security
Original source
Jul 31, 2026·Front Matter
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Join our team! PKP is hiring a contract software developer

Famira Racy

Contract Role: Software Developer PKP is seeking a mid-career or senior software developer to join the software development team in coding the future of PKP's software applications, particularly Open Journal Systems (OJS), Open Monograph Press (OMP), and Open Preprint Systems (OPS). These applications are written in PHP and VueJS. There will be many opportunities for related work such as

Open access
2 source records
Original source
Jul 31, 2026·Applied Sciences
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From Text to Executable Semantics: A Modular Ontology and SHACL Controls for University Intellectual Property Non-Disclosure Agreements in Colombia

Oscar M. Bedoya, Jeferson Arango‐López, Jorge Hochstetter

The management of intellectual property (IP) agreements in universities continues to rely on static legal documents that are signed, archived, and consulted when necessary, but whose content is rarely formalized to facilitate their operation and verification. Consequently, obligations, permissions, restrictions, deadlines, scopes, and exceptions often remain scattered across clauses drafted in natural language, annexes, emails, and different document versions, which hinders their monitoring and makes compliance review dependent on intensive legal and administrative work. In response to this limitation, this article proposes an ontology to formalize non-disclosure agreements (NDAs) at the University of Caldas, Colombia, understood as a specific case within the broader management of IP agreements. The proposal adopts a modular Semantic Web architecture composed of a reusable ontological core and a specialized profile for NDAs. Its construction followed the METHONTOLOGY methodology, and its specification was supported by Competency Questions (CQs), which were subsequently translated into SHACL constraints and SPARQL queries. In addition, a SKOS vocabulary is incorporated to normalize synonyms and terminological variants typical of legal drafting in Spanish, together with a lightweight weak supervision layer based on regular expressions, SKOS, and structural signals to support clause labeling and the batch generation of RDF instances. Thus, the proposal enables querying, traceability, and verification over NDA content, while offering a formal basis for progressing toward automatable controls and their eventual articulation with smart contracts.

Open access
Semantic Web and Ontologies
Intellectual Property and Patents
Blockchain Technology Applications and Security
Original source
Jul 31, 2026·Derecho y cambio social.
0 cites
Contrato sem retorno? Smart contracts e os limites jurídicos da autoexecução

Lucas Monteiro de Oliveira, Olívia Brandão Melo Campelo

O presente artigo tem por objetivo analisar os limites jurídicos da autoexecução nos smart contracts, especialmente quando tais instrumentos, estruturados em tecnologia blockchain, produzem efeitos obrigacionais de difícil ou impossível reversão técnica. Parte-se do problema segundo o qual a programação contratual pode executar automaticamente prestações, transferências patrimoniais ou efeitos negociais sem intervenção humana posterior, ao mesmo tempo em que o ordenamento jurídico brasileiro preserva institutos como arrependimento, anulação, resolução, restituição, responsabilidade civil e vedação ao enriquecimento sem causa. A pesquisa, de natureza bibliográfica e qualitativa, examina a compatibilidade entre a lógica algorítmica dos contratos inteligentes e os fundamentos clássicos do Direito Civil e do Direito do Consumidor. Sustenta-se que a irreversibilidade técnica não pode ser convertida em irreversibilidade jurídica, pois a eficácia automática do código não afasta a incidência das normas relativas à validade do negócio jurídico, à boa-fé objetiva, à função social do contrato, à proteção do consumidor e à reparação de danos. Conclui-se que os smart contracts podem ser admitidos no ordenamento brasileiro, desde que sua arquitetura tecnológica permaneça subordinada à normatividade jurídica, mediante mecanismos de reversão, compensação, suspensão, auditoria, governança e responsabilização.

Open access
Brazilian Legal Issues
Governance, Compliance, and Sustainability
Academic Research in Diverse Fields
Original source
Jul 31, 2026·Zenodo (CERN European Organization for Nuclear Research)
0 cites
Prop Trust Verified Standard (PTVS): Forensic Physical Audit and Cryptographic Anchoring Protocol for Real World Assets (RWA)

Aurelio Tamarit Blay

The rapid growth of Real World Asset (RWA) tokenization faces a critical vulnerability: the "Physical Oracle Problem." While blockchain ensures digital immutability, it remains blind to the physical state of the underlying asset (e.g., structural degradation in real estate or hidden damage in naval vessels). This document introduces the Prop Trust Verified Standard (PTVS), a comprehensive forensic methodology designed to bridge this gap. Developed by Aurema Group, PTVS establishes a rigorous protocol for physical asset auditing, combining certified judicial expertise (Perito Judicial) with cryptographic anchoring. The methodology ensures that physical inspections, material verifications, and compliance checks are immutably recorded and linked to smart contracts (e.g., ERC-3643), providing institutional-grade trust for Family Offices, tokenization platforms, and regulatory bodies under frameworks like eIDAS (EU 910/2014). This report outlines the core principles, verification workflows, and case study applications of PTVS in real estate and maritime sectors. Español: El rápido crecimiento de la tokenización de Activos del Mundo Real (RWA) enfrenta una vulnerabilidad crítica: el "Problema del Oráculo Físico". Mientras que la blockchain garantiza la inmutabilidad digital, permanece ciega al estado físico del activo subyacente (ej. degradación estructural en inmuebles o daños ocultos en embarcaciones). Este documento presenta el Estándar Prop Trust Verified (PTVS), una metodología forense integral diseñada para resolver esta brecha. Desarrollado por Aurema Group, PTVS establece un protocolo riguroso de auditoría física de activos, combinando la pericia judicial certificada con el anclaje criptográfico. La metodología garantiza que las inspecciones físicas, verificaciones de materiales y controles de cumplimiento se registren de forma inmutable y se vinculen a contratos inteligentes (ej. ERC-3643), proporcionando confianza de grado institucional para Family Offices, plataformas de tokenización y organismos reguladores bajo marcos como eIDAS (UE 910/2014). Este informe detalla los principios fundamentales, flujos de trabajo de verificación y aplicaciones prácticas de PTVS en los sectores inmobiliario y naval.

Open access
2 source records
Digital and Cyber Forensics
Blockchain Technology Applications and Security
Law, logistics, and international trade
Original source
Jul 31, 2026·International Journal of Information Management Data Insights
0 cites
Taxonomy of fraud types in alternative finance using hybrid systematic review

Ioana Florina Coita, Marcos Machado, Lucia Gomez Teijeiro, Karsten Wenzlaff · 18 authors

Alternative finance platforms, including crowdfunding, peer-to-peer lending, equity-based platforms, and token-based fundraising mechanisms, have become important channels for financing entrepreneurial, social, and investment-oriented initiatives. Yet their reliance on digital intermediation, dispersed participation, and information asymmetry creates opportunities for fraud, undermining trust, investor protection, and platform sustainability. This study provides a systematic review of fraud detection and prevention in alternative finance, with crowdfunding emerging as the most extensively represented empirical domain. Methodologically, the paper combines a PRISMA-guided systematic literature review with a hybrid topic-modeling strategy that integrates neural topic modeling and probabilistic refinement, thereby supporting both transparent corpus selection and data-driven thematic synthesis. The findings show that Artificial Intelligence (AI), Machine Learning (ML), Natural Language Processing (NLP), and blockchain-based mechanisms are recurrently discussed as promising tools for detecting, preventing, or mitigating fraud. AI and ML approaches are mainly used to identify anomalies, suspicious textual patterns, behavioral signals, and transaction irregularities, while blockchain-based approaches are associated with transparency, traceability, smart contracts, and conditional fund release. The review also shows that fraud differs across alternative finance models, ranging from campaign misrepresentation and intentional and premeditated non-delivery in crowdfunding to borrower or platform misreporting in lending-based models and misleading disclosures or white-paper manipulation in ICO/STO contexts. A central challenge across the literature is the scarcity of labeled fraud data, which limits the use and benchmarking of supervised ML models. Overall, this study contributes by linking a reproducible hybrid SLR methodology to a structured synthesis of fraud types, platform-specific vulnerabilities, and AI-, ML-, and blockchain-based detection strategies in alternative finance.

Open access
FinTech, Crowdfunding, Digital Finance
Blockchain Technology Applications and Security
Imbalanced Data Classification Techniques
Original source
Jul 31, 2026·Journal of Intelligent Decision Making and Information Science
0 cites
Assess the Effectiveness and Robustness of the Developed Framework Through Rigorous Testing and Real-World Deployment Scenarios to Ensure its Efficacy in Bolstering Blockchain Security

Srinivas P M

Validation of a secure blockchain architecture's effectiveness and robustness may be achieved via a methodical process that involves comprehensive testing and implementation in real-world environments. The testing process includes analyzing requirements, setting up the environment, and conducting detailed evaluations. All aspects of the smart contract, from its logic and functionality to its defences against common attack vectors like Sybil and re-entrancy vulnerabilities, are evaluated in these reports. Performance testing under different loads and realistic network conditions is essential for assessing scalability, latency, and throughput, in addition to API and integration testing, which ensure that system components operate well together. System resilience to defects and hostile events is tracked, critical test cases are automated, and large-scale peer-to-peer networks are modelled to evaluate the framework's robustness further. Supply chain verification and clinical trial administration are two examples of real-world applications of blockchain technology that demonstrate its ability to secure sensitive activities on a large scale. These use cases also give light on the system's efficacy, data integrity, and anomaly detection capabilities. Verifying the scalability, security, and reliability of a blockchain architecture against real business objectives via integrated deployments and complicated testing methods is essential for a safe blockchain.

Open access
Blockchain Technology Applications and Security
Security and Verification in Computing
IoT and Edge/Fog Computing
Original source
Jul 31, 2026·Journal of Intelligent Decision Making and Information Science
0 cites
A Secure and Scalable Post-Quantum Cross-Blockchain Data Exchange Model Based on Hierarchical Attribute Encryption

Jigyasu Dubey Sunil Parihar

The exponential emergence of cross-chain data sharing in blockchain-enabled IoT and cloud systems creates vital challenges in the scalability, privacy, and post-quantum security landscapes. To tackle these problems, we propose a hierarchical attribute clustering-attribute-based encryption (HAC-ABE) scheme in this paper, which offers a secure post-quantum cross-blockchain data exchange framework. The method utilizes hierarchical attribute clustering and lattice-based encryption to reduce the computation overhead while supporting fine-grained access control. It utilizes IPFS decentralized storage and smart contracts to achieve a transparent data exchange across chains. Experimental results show 9.7% faster computation time and much lower communication overheads than state-of-the-art ABE-based approaches, verifying its effectiveness and scalability for practical decentralized environments.

Open access
Cryptography and Data Security
Blockchain Technology Applications and Security
Big Data and Digital Economy
Original source
Jul 31, 2026·Engineering and Technology Journal
0 cites
Privacy-Preserving Session-Bound Mother–Neonate Identity Verification with Permissioned Blockchain Audit Anchoring

Ihsan H. Hussein

Newborn misidentification poses serious patient safety and accountability problems, but errors can be traced through the use of a blockchain to create an audit trail. However, a blockchain storing raw or even hashed biometric templates for individual identities is not acceptable for privacy reasons. This work redefines our prior work (1) to form a privacy-preserving audit protocol that isolates the processes of capturing a biometric and matching it against a database of known identities to an external Service Provider and the processing of the blockchain to a permissioned Ledger that contains only pseudonymous audit commitments related to keyed entries on the Ledger. This work describes an implementation of this protocol in Solidity 0.8.30 and provides metrics for the gas use and latency of the smart contract for 100 iterations of 100 total Enrollment and Verification Workflows each. Twenty Adversarial Functional Tests are also described that attempt to place the system into an invalid state, as well as four additional tests that assess the effect of batched submission to the smart contract of multiple keyed audit commitments. The smart contract processing throughput is also determined for a batch of submissions, finding a maximum local throughput of 60.2 tx/s. A further 50,000 randomized reference-model transitions of the system’s internal reference-model were then made (involving a total of 57,345,087 invariant checks, all of which passed), as well as a measurement of the time taken to generate an HMAC-SHA-256-sized commitment for 10,000 iterations (local median time = 0.002 ms). The results of this work provide a solid foundation for the blockchain component of BIBIS, but it is not intended to provide any insights into the accuracy of neonatal biometric matching, the presentation attack resistance of the system, or even the usability of BIBIS by clinical end-users. The results also do not comment on the finality of QBFT-based commits to a blockchain.

Open access
2 source records
Biometric Identification and Security
Electronic Health Records Systems
Cryptography and Data Security
Original source
Jul 30, 2026·arXiv
0 cites
Blockchain Transaction Simulation Phishing

Xiaocan Wang, Shixuan Guan, Tong Yang, Xiapu Luo · 6 authors

Cryptocurrency users have increasingly become targets of phishing and scam attacks. To mitigate these threats, leading crypto wallets (e.g., MetaMask) have introduced transaction simulation, which previews a transaction's balance changes before on-chain execution. While effective against traditional fund-draining attacks, we show that this defense can itself be exploited by a new phishing technique, which we term transaction simulation phishing. This attack uses carefully crafted smart contracts whose execution depends on dynamic blockchain state, causing simulations to display benign or profitable outcomes while the actual on-chain execution redirects users' funds to attacker-controlled addresses. We present the first comprehensive study of transaction simulation phishing. We first develop a taxonomy of phishing contracts that can be utilized to facilitate this attack. Then, we propose SIMGUARD, a bytecode-level detection system that combines static and dynamic program analysis to identify phishing contracts. Applying SIMGUARD to Ethereum, Binance Smart Chain, Avalanche, and Polygon, we detect over 4,000 phishing contracts deployed between August 2024 and June 2025. Our analysis identifies more than 5,700 victims and approximately $3.48 million USD in losses, 91.5% of which occurred on Ethereum. Moreover, our clustering result reveals that the largest phishing contract cluster alone accounts for about 83% of the total losses. These results expose a critical weakness in current wallet defenses and highlight the urgent need for more robust transaction simulation mechanisms.

Open access
cs.CR
Original source
Jul 30, 2026·arXiv
0 cites
Demystifying Solana Bots: From GitHub Blueprints to On-Chain Fingerprints

Xiaoye Zheng, Yujing Chen, Minghao Wu, David Lo · 8 authors

Solana is an emerging blockchain platform designed for high throughput and low transaction fees, making it inexpensive to submit transactions at scale and, consequently, increasing exposure to bot spamming and related financial exploitation. Solana bots are typically off-chain software systems that operate in a competitive on-chain execution environment by constructing and submitting transactions, and the bot-related transactions on the decentralized exchanges exceed 250 million dollars in daily trading volume in January 2026. Prior studies on Solana have examined system performance, smart-contract security, and specific on-chain phenomena. However, we still lack a systematic understanding of what Solana bots implement in practice and how these implementations manifest as observable on-chain execution fingerprints. To address this gap, we performed a large-scale empirical study of Solana bots from two complementary views: (i) 586 bot repositories collected from GitHub, and (ii) 200 bot addresses on Solana, with over 44 million on-chain transactions. Our study derives an implementation-grounded taxonomy of Solana bots comprising 15 categories grouped into five domains (e.g., Trading Operations, MEV, and On-chain Analytics), identifies a largely shared five-stage operational pipeline manifested in bot implementations, and uncovers systematic variation in on-chain trading behaviors of Solana bots across diverse trading platforms and assets. Based on our findings, we highlight future research directions, and provide recommendations for building and operating bots on the Solana blockchain.

Open access
cs.SE
Original source
Jul 30, 2026·Zenodo (CERN European Organization for Nuclear Research)
0 cites
A Blockchain-based Framework for Secure and Transparent Digital Product Passports in Industrial Supply Chains

Jorge San Jose, Daniel Field, UST

This article presents the DigInTraCE Blockchain Module, a secure and scalable framework for managing Digital Product Passports (DPPs) and traceability data across industrial supply chains. Built on Hyperledger Fabric, the solution combines distributed ledger technology, cloud-native infrastructure, smart contracts, and standardized EPCIS 2.0 traceability to enable trusted collaboration among multiple stakeholders. The technical article describes the platform architecture, governance mechanisms, secure API integration, identity management, and blockchain-based validation processes that support transparent, interoperable, and auditable product lifecycle information. The proposed framework provides a robust foundation for future Digital Product Passport implementations and circular industrial value chains.

Open access
2 source records
Blockchain Technology Applications and Security
Food Supply Chain Traceability
Digital Transformation in Industry
Original source
Jul 30, 2026·Scientific Reports
0 cites
Secure distributed multimodal biometric authentication using blockchain with 3D face and 3D ear recognition

Veerpal Kaur, Devershi Pallavi Bhatt, Sumegh Tharewal, Pradeep Kumar Tiwari

To managing identities in a secure and decentralized manner, new opportunities have emerged because of recent breakthroughs in blockchain technology and biometric authentication. Blockchain is different from traditional biometric systems in that it is an unchangeable, distributed ledger that runs safe, decentralized code. Traditional biometric systems store data in one location and can’t be updated. Traditional biometric systems have some flaws, including template tampering, channel interception, and comparator overrides. So, the proposed work presents a Distributed Multimodal Biometric Security System with Blockchain to handle such issues. This system uses 3D face and 3D ear biometrics with blockchain technology, which comprises IPFS, smart contracts, and decentralized applications. Features from 3D face and 3D ear are embedded into a single multimodal template, which then undergoes encryption and storage on IPFS via content-addressed storage. The Content Identifier (CID) and data are then archived by smart contracts on the blockchain to maintain data integrity, security, verifiability, and immutability. In this way, a person can prove his identity without using any central services, further improving privacy. Blockchain consensus and the smart-contract-based access control mechanism further provide security, audibility, and simplicity to P2P transactions in biometric enrolment testing results show that feature extraction takes from 120 ms to 300 ms, uploading to IPFS takes between 200 and 600 ms, and completing blockchain transactions on local private network takes from 0.5 to 1 s, using 117,519 gas per enrolment. Additional analysis on the Ethereum Sepolia test network reveals that transaction fees change depending on network conditions, but gas consumption stays deterministic. The suggested solution is resistant to typical attacks like replay, interception, and template alteration; it is also irreversible, revocable, and unlinkable, according to security analysis conducted under a formal adversarial model.

Open access
Biometric Identification and Security
Face recognition and analysis
Face and Expression Recognition
Original source
Jul 30, 2026·Zenodo (CERN European Organization for Nuclear Research)
0 cites
Blockchain Technology: Evaluation Across Security, Scalability, Privacy And Governance

Rudra Rai, Krishnakant Tripathi, Priya Pandey

Blockchain is becoming an approachable data platform with several stakeholders having a shared history of transactions without being owned by an individual. The fundamental concepts of cryptographic hashing, peer-to-peer communication, and agreement protocols are sufficiently documented, and a lot of current research focuses on performance, security, privacy, and governance individually rather than as interacting dimensions. Recent blockchain research publications and deployments were structured based on a four-axis perspective that follows the dynamics of a system in terms of security, scalability, privacy, and governance. This lens was applied to consent mechanisms including proof-of-work, proof-of-stake, and practical Byzantine fault tolerance, and to techniques such as sharding and layer-2 that are designed to enhance throughput. Basic throughput calculations using reported block sizes, transaction sizes, and block intervals indicate that configuration limits are usually much larger than the transaction rates achieved in practice, implying that protocol overheads and network behaviour require a major share of the budget. A survey of attacks and defences indicates that increases in speed and programmability often expand the attack surface at the consensus and smart contract layers, which motivates the development of better analysis and monitoring tools. The results are applied to draw design insights for domains of finance, supply chains, healthcare, identity, and smart city platforms, and to highlight remaining problems in benchmarking and cross-chain coordination. A practical mapping of major blockchain platforms, namely Bitcoin, Ethereum, and Hyperledger Fabric, onto the four-axis framework was also provided to demonstrate its utility for platform comparison and selection.

Open access
2 source records
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Internet of Things and AI
Original source
Jul 30, 2026·Zenodo (CERN European Organization for Nuclear Research)
0 cites
Blockchain-Enabled Drug Supply Chain for Secure Pharmaceutical Tracking

Pratham Pujari, Dr. Shravankumar Arjunagi

Counterfeit medicines, fragmented record management, limited end-to-end visibility, and dependence on centralized databases create security and traceability challenges in pharmaceutical supply chains. This article presents Pharma-Chain, a blockchain-enabled pharmaceutical supply chain management system developed to record medicine registration, stakeholder interactions, ownership transfer, and authenticity verification on an Ethereum blockchain. The system integrates a React.js frontend with Web3.js, MetaMask wallet authentication, Solidity smart contracts, Truffle deployment tools, and Ganache for local blockchain development and validation. Manufacturers register medicine batches with product and lifecycle information; distributors and retailers verify blockchain records before accepting and transferring ownership; and customers retrieve medicine details and transaction history before purchase. The implementation was tested module by module and as an integrated application in a local Ethereum environment. Testing confirmed successful authentication and role-based access, medicine registration, ownership transfer, transaction validation, blockchain record retrieval, and medicine verification. Each successful supply-chain operation generated a blockchain transaction record, providing an immutable ownership history and improving transparency and auditability. The project demonstrates a practical decentralized approach for secure pharmaceutical tracking while identifying QR-code verification, IoT monitoring, AI-assisted analytics, mobile access, and deployment on public or enterprise blockchain networks as future extensions.

Open access
2 source records
Blockchain Technology Applications and Security
Pharmaceutical Quality and Counterfeiting
Physical Unclonable Functions (PUFs) and Hardware Security
Original source
Jul 29, 2026·arXiv
0 cites
Modeling Decisions in Blockchain Analytics: A Leakage-Aware Evaluation of Tree-Based vs. Sequential Models

Michał Bartnicki, Jarosław A. Chudziak

Sybil bots are Ethereum actors that imitate legitimate users to extract airdrop rewards or influence governance. Recent Sybil detection methods increasingly use deep learning and treat blockchain activity as a quasi-linguistic sequence. However, complex sequence models are computationally expensive for real-time monitoring, and their reported performance may be inflated by label leakage from high-signal smart contracts. We ask whether and how organic users, Sybil bots, and MEV bots differ in the structural complexity of their transaction histories; whether sequential models outperform tree-based tabular models once leakage is reduced; whether transaction order or timing provides the stronger behavioral signal; and whether the resulting models are practical for low-latency deployment. Our approach to leakage-aware Sybil bot detection consists of a Blind-Spot protocol and a Transaction Grammar representation of wallet behavior. The former eliminates shortcuts associated with high-signal contracts, whereas the latter models wallets using rhythm, EVM execution structure, and intent. We evaluate this approach on Ethereum actor classification by comparing Transformer and BiLSTM sequence models against XGBoost and SVM baselines. We contribute a framework for leakage-aware Ethereum actor classification and a Transaction Grammar representation of wallet behavior. Our results demonstrate that, under leakage-aware evaluation, XGBoost outperforms Transformer-based sequence models while providing lower latency and estimated energy use.

Open access
cs.LG
Original source
Jul 29, 2026·Zenodo (CERN European Organization for Nuclear Research)
0 cites
GENERAL CIVIL LAW QUALIFICATION OF SMART CONTRACTS AS A MEANS OF DISPOSING OF DIGITAL ASSETS

Oleg A. Polezhaev

This article is devoted to the general legal characteristics of smart contracts as a means of disposing of digital assets. Smart contracts are a key mechanism for transferring digital assets, but their legal regime remains controversial and unexplored. The main goal. To make a general civil law qualification of smart contracts as a special form of concluding transactions by order of the Central Bank and to justify their recognition as full-fledged legal means of achieving a legal result. The problems under consideration are the differentiation of the IC from related legal phenomena: computer programs, methods of securing, executing and concluding a transaction. The methods used are: formal-legal, comparativelegal, historical-legal, systematic. Conclusions. The IC is a special digital form of the transaction, which has the highest degree of reliability and accuracy of recording the will of the parties in the presence of objective guarantees of its execution.

Open access
2 source records
Security, Politics, and Digital Transformation
Digital Transformation in Law
Legal and Policy Issues
Original source
Jul 29, 2026·Data Science Journal of Computing and Applied Informatics
0 cites
Size-Controlled Opcode Ablation for Smart Contract Vulnerability Detection

Astrid Pranadani, Dhani Ariatmanto

Smart contract vulnerability detection requires evaluation protocols that separate real representation signal from dataset-specific artifacts. DIVE provides lifecycle-based tabular features for Ethereum smart contracts, but benchmark performance alone cannot show whether a dominant feature group is useful or only benefits from having many columns. This study examines Opcode Distribution features using 22,330 contracts, 397 processed features, and eight DASP-aligned vulnerability labels. Five multi-label learning configurations were evaluated under 3 x 5 repeated cross-validation, followed by global feature-group ablation, size-controlled random opcode ablation, per-label degradation analysis, cumulative stability analysis, and opcode-profile group-aware robustness checking. MultiOutput LightGBM achieved the best baseline performance, with Micro-F1 of 0.91396, Macro-F1 of 0.82464, and Macro-PR-AUC of 0.90146. Removing the full Opcode Distribution group reduced Macro-F1 to 0.78745, while removing a same-sized random opcode subset produced Macro-F1 of 0.82404. The findings indicate that Opcode Distribution acts as a collective predictive representation rather than a feature-count artifact, without implying causal vulnerability mechanisms.

Open access
Blockchain Technology Applications and Security
Imbalanced Data Classification Techniques
Adversarial Robustness in Machine Learning
Original source
Jul 29, 2026·Zenodo (CERN European Organization for Nuclear Research)
0 cites
Decentralized Identity Management System Using Blockchain For Privacy-Preserving Digital Authentication

Mrs. Aruna C, Rajeswary Nair

With the advent of digital services, various vulnerabilities in centralized identity management systems such as Single Point of Failure (SPOF), data leakage, and user privacy invasion are evident. In this paper, an architecture framework for designing Decentralized Identity Management System (DIDMS) by leveraging blockchain technologies is proposed for privacy preserving authentication in digital age. The DIDMS framework makes use of Decentralized Identifier (DID) with Verifiable Credentials (VC) and Zero Knowledge Proof (ZKP) techniques to implement the concept of self-sovereign identity. Four phases of framework including registration, credential issuance, authentication and storage is designed and tested. The performance results obtained from the experimentation indicate that the proposed framework gives an authentication latency of 320 ms, storage overhead reduction of 42%, and verification accuracy of 98.6% with 31% gas optimization over conventional smart contract approaches. The comparative evaluation with existing frameworks indicates improvement in the areas of privacy protection, scalability and user control.

Open access
2 source records
Blockchain Technology Applications and Security
Cryptography and Data Security
Advanced Authentication Protocols Security
Original source
Jul 28, 2026·arXiv
0 cites
Foundational Refinement Proofs for Deployed Bytecode, at the Price of Tokens

Lefteris Lazaropoulos, Zoe Paraskevopoulou

Relating low-level executable code to a high-level account of its behavior has been a central concern of programming-language research for decades. From formally verified compilers to translation validators, certifying compilers, and proof-carrying code, each approach chooses between laborious but foundational mechanized proofs and automation that costs completeness, generality, and an increased trusted base. Recently, large language models (LLMs) have begun to change the economics of formal verification. Agentic proof development is now capable of producing machine-checked proofs at a scale and speed that were previously out of reach. In this paper, we evaluate the capabilities of LLMs to produce foundational, machine-checked proofs of refinement between executable code and its high-level specification, as post hoc, per-artifact certificates. We study this in the context of the Ethereum Virtual Machine (EVM), a low-level virtual machine that executes smart contracts on the Ethereum blockchain. We build EquiVM, a foundational framework in Lean comprising an executable EVM semantics and a specification language that characterizes the intended behavior of smart contracts, but commits to no source language or compilation toolchain. In EquiVM, refinement is stated for deployed bytecode of arbitrary provenance, interaction with unknown code is part of the semantics, and each proof is a replayable, machine-checked certificate. No previous technique achieves this combination. Using frontier commercial LLMs, twenty-three real-world contracts are proved end to end with minimal human guidance, among them most of the MakerDAO stablecoin system, at up to a hundred million tokens and a hundred hours of proof time per contract. We conclude that foundational mechanized proofs can now be bought at the price of tokens, and that this shift can reshape how verification frameworks are architected.

Open access
cs.PL
Original source
Jul 28, 2026·Journal of Medical Internet Research
1 cites
Development of a Blockchain-Based Platform to Enable Indigenous Data Sovereignty and Shared Research Participation With Indigenous Communities: Technology Prototyping and Community Engagement Study

Tim K. Mackey, Alec J. Calac, Tiana McMann, Ken Miyachi · 10 authors

Background: Historic and ongoing problematic practices regarding the collection, storage, and use of Indigenous health data have led to the need to ensure principles of Indigenous Data Sovereignty (IDS) are followed in research practices and technology development. Objective: This project, a partnership between UC San Diego and the Native BioData Consortium (NativeBio), sought to explore the practical application of blockchain technology and its potential to facilitate Indigenous-led research collaboration. Methods: This project first undertook purposeful relationship building with NativeBio to form a Community Advisory Board (CAB) for identifying community and technology needs for a blockchain research collaboration platform with an initial focus on genomic data. Over a 2-year project period, a series of public meetings and presentations at Indigenous-led conferences introduced the concept of exploring compatibility between blockchain and IDS principles, followed by iterative prototyping and co-design of a blockchain platform with NativeBio, using Ethereum as the underlying protocol. Results: Direct engagement with NativeBio and the CAB informed the initial design and development of a "b-IDS" proof-of-concept (POC) blockchain platform. The POC consists of three main components: (1) the web front-end layer, (2) the Ethereum network that executes the smart contract and blockchain storage aspects of the framework, and (3) the back-end database that stores off-chain interactions and data for future use with external genomic data repositories. After refinement of the POC, a community-based participatory research (CBPR) use case aligned with IDS principles was identified as a practical workflow and incorporated into the design of the POC for implementation. Conclusions: The findings from this project demonstrated the potential use of operationalizing IDS through blockchain technology with proactive and sustained engagement with Indigenous partners. Blockchain technology may have certain advantages over other data governance approaches and systems, facilitating timely oversight, shared decision-making and consent structures, and direct involvement of Indigenous communities in technology design, respecting the core principles of IDS and CBPR. Future development of the blockchain-IDS POC will need to incorporate other research practices and ethics frameworks to expand its use to other public health and biomedical research use cases.

Open access
Research Data Management Practices
Ethics in Clinical Research
Indigenous Health, Education, and Rights
Original source
Jul 28, 2026·International journal of intelligent engineering and systems
0 cites
Ethereum-based Industrial Supply Chain Management with Multi-item Batch Transactions

Mays Munqith Salman, Mohammed Falih AL-Gailani

Industrial supply chains involve multiple stakeholders, complex logistics operations, and financial transactions that require transparency, traceability, and secure coordination.Traditional supply chain systems suffer from limited transparency, the risk of data manipulation, and insufficient trust among participants.To address these challenges, this paper proposes a decentralized industrial supply chain management system implemented on an Ethereum-compatible blockchain network.The proposed architecture integrates smart contracts to automate workflows, including stakeholder registration and verification, multi-item order processing, shipment tracking, simulated delivery verification (SDV), and escrow-based conditional payment settlement.The system adopts a hybrid on-chain/off-chain storage architecture in which transactional records are maintained on-chain, while raw material and product images are stored off-chain using the InterPlanetary File System (IPFS).This design reduces blockchain storage overhead while preserving data integrity through cryptographic hash references.To improve operational efficiency and reduce overhead from repeated transactions, the proposed system supports multi-item batch transactions during procurement and ordering, while the logistics and settlement stages maintain per-item execution to preserve traceability and accountability.Experimental evaluation was conducted on the Celo Sepolia network to measure gas consumption and transaction fees for both batch-based and functionally equivalent per-item execution workflows under controlled conditions.The evaluation included multiple predefined workload configurations, and statistical analysis using mean and standard deviation was performed to assess execution stability.The results indicate that transaction aggregation reduces gas consumption by approximately 40-43% for raw material order creation and by 40-48% for raw material operations (addToMultipleCart).Product aggregation workflows also demonstrated measurable gas-efficiency improvements.These findings demonstrate the efficiency benefits of multi-item transaction aggregation within the proposed implementation while preserving lifecycle traceability and escrow-enabled settlement correctness.The reported results represent controlled implementation-level efficiency measurements within the proposed blockchain-based supply chain architecture.

Open access
Blockchain Technology Applications and Security
Food Supply Chain Traceability
Digital Transformation in Industry
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