Author
Listed:
- Tathe S. G
- Kalokhe Omkar Nanabhau
- Takale Ram Arjun
- Borge Akash Sandip
Abstract
The proliferation of digital documents and academic credentials in today’s interconnected world has created both opportunities and vulnerabilities. Traditional certificate issuance and storage mechanisms are highly susceptible to forgery, duplication, and unauthorized manipulation, undermining the trustworthiness of academic and professional qualifications. To address these challenges, this research proposes a blockchain-based certificate generation and verification system that ensures transparency, immutability, and trust across stakeholders. Leveraging distributed ledger technology, the system securely records certificate metadata and unique identifiers, enabling real-time, tamper-proof validation without reliance on intermediaries. The architecture integrates modern web technologies such as Next.js for frontend and backend services, MongoDB for scalable storage, JWT for authentication, and cryptographic techniques including bcrypt for enhanced security. Additionally, smart contracts deployed on Ethereum/Ganache enable decentralized storage and validation, while certificate data is simultaneously linked with non-fungible tokens (NFTs) to provide verifiable ownership and authenticity. This integration not only eliminates certificate fraud but also facilitates seamless verification across institutions, employers, and regulatory authorities. By combining blockchain’s decentralized security with user-friendly web applications, the proposed approach aims to create a globally interoperable, cost-effective, and future-ready framework for academic and professional certification systems.
Suggested Citation
Tathe S. G & Kalokhe Omkar Nanabhau & Takale Ram Arjun & Borge Akash Sandip, 2025.
"Certificate Minter and Verifier Dapp,"
International Journal of Scientific Research in Science, Engineering and Technology, Technoscience Academy, vol. 12(6), pages 37-44, December.
Handle:
RePEc:ijs:ijsrse:v12:y2025:i6:id:795
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