Aug 2026· International Journal of Innovative Science and Research Technology· 0 citations· 16 references
TL;DR
The proposed framework enhances transparency, trust, and operational efficiency while minimizing manual verification efforts, and its modular architecture facilitates future migration to public blockchain networks and decentralized storage platforms, making it suitable for scalable deployment across educational institutions and digital credential ecosystems.
Abstract
The rapid growth of digital education and online recruitment has significantly increased the demand for reliable
academic credential verification. Conventional certificate verification methods are often centralized, time-consuming, and
susceptible to document forgery, unauthorized modification, and administrative delays. To address these challenges, this
paper presents a Blockchain-Enabled Decentralized Framework for Secure Academic Certificate Issuance and Real-Time
Verification. The proposed framework utilizes Ethereum blockchain technology through Solidity smart contracts to
establish an immutable and transparent repository of certificate records, ensuring that issued credentials cannot be
altered without detection. A SHA-256 cryptographic hashing mechanism is employed to generate unique digital
fingerprints for each certificate, while Firebase Authentication and Cloud Firestore provide secure identity management
and efficient off-chain metadata storage. The user interface is developed using React.js, enabling educational institutions
to issue certificates and allowing employers, universities, and other stakeholders to verify credentials instantly through a
simple web-based platform. During verification, the system recomputes the certificate hash and compares it with the
blockchain record to detect tampering and validate authenticity in real time. Experimental evaluation on a local Ethereum
network demonstrates reliable certificate issuance, rapid verification with sub-second response times, secure transaction
handling, and effective resistance against certificate forgery. The proposed framework enhances transparency, trust, and
operational efficiency while minimizing manual verification efforts. Furthermore, its modular architecture facilitates
future migration to public blockchain networks and decentralized storage platforms, making it suitable for scalable
deployment across educational institutions and digital credential ecosystems.
A decentralized, blockchain-based issuer validation and certificate verification solution to overcome drawbacks of conventional verification techniques, which ensures data immutability and tamper resistance by storing certificate hashes on the blockchain using Ethereum.
Madiha Sadaf, Afshan Fatima, Ruqiya Fatima· American Journal of AI Cyber...· 0 citations
Comparative analysis against conventional systems and generic blockchain implementations confirms the superiority of the proposed approach in terms of security, efficiency, scalability, and privacy.
Ritika Bansal· International Journal of Adv...· 0 citations
This paper presents a blockchain-based digital land certificate system designed to prevent forgery, data manipulation, and document duplication in conventional centralized land certificate management systems. The system adopts a four-layer architecture built on a six-node Hyperledger Besu network using the Istanbul Byz...
Mustafa Azam Irvani, Amang Sudarsono, Ahmad Zainudin et al.· International Conference on...· 0 citations
The concept of meritocracy is threatened by the pervasive falsification of educational credentials, which compromises the integrity of both academic institutions and employment markets. Fraud detection and prevention are challenging due to the fragmented, unsecure, and ineffective nature of traditional certificate veri...
Madiha Farnaaz, I. S. P. James· American Journal of AI Cyber...· 0 citations
Blockchain-based infrastructures have increasingly been adopted for secure and tamper-resistant management of academic credentials. Despite the advantages offered by blockchain technology, existing blockchain-based credential management systems continue to face several scalability challenges, particularly in terms of l...
Shweta H. Bhatia, Ravirajsinh S. Vaghela· Blockchains· 0 citations
EBARMS results demonstrate that blockchain technology can provide a transparent and trustworthy modern academic record management system that allows credential verification in the authors' tertiary institution.
Mubarak Abdurrahman· International Journal of Eng...· 0 citations
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