Fortifying Smart City Applications: Cryptographic Security in E-Health, E-Commerce, E-Banking, and E-Governance

dc.contributor.authorJ.H. Bhuiyan
dc.contributor.authorM.A. Taher
dc.contributor.authorMd. Sarowar Hossain
dc.contributor.authorR. Rashid
dc.contributor.authorM.K. Alam
dc.contributor.authorA. Ahad
dc.contributor.authorT. Ahamed
dc.contributor.authorMohammed Nazrul Islam Khan
dc.date.accessioned2026-04-20T03:18:32Z
dc.date.issued2025-11-25
dc.description.abstractMultiferroic materials that integrate electric and magnetic functionalities are crucial for next-generation spintronic, memory, and energy-storage devices. In this study, Bi0.9La0.075Ce0.025Fe1-xCrxO3 (x = 0.00–0.10) ceramics were synthesized via a cost-effective solid-state route to investigate the influence of Cr3+ substitution on their structural, dielectric, and magnetic behavior. X-ray diffraction confirmed a single-phase rhombohedral perovskite structure (R3c), while FTIR analysis verified enhanced Fe-O bond strength and reduced oxygen vacancies. Microstructural observations and magnetic measurements revealed that Cr3+ doping induces weak ferromagnetism with increased magnetic anisotropy. Frequency-dependent dielectric and impedance analyses (100 Hz–100 MHz) indicated that Cr substitution lowers dielectric loss and improves interfacial polarization, with the x = 0.05 composition showing balanced grain and grain-boundary responses. The optimized Bi0.9La0.075Ce0.025Fe0.95Cr0.05O3 exhibited high grain capacitance , moderate relaxation time (2 ns), and stable magnetic properties, making it a promising multifunctional material for high-frequency capacitors, dielectric resonators, and spintronic applications
dc.identifier.citationBhuiyan, J. H., et al. "Structure-based magneto-dielectric properties enhanced by Cr doping in Bi0. 9La0. 075Ce0. 025FeO3 perovskite." Surfaces and Interfaces (2025): 107949.
dc.identifier.issn: 24680230
dc.identifier.urihttp://dspace.uttarauniversity.edu.bd:4000/handle/123456789/1411
dc.language.isoen_US
dc.publisherSurfaces and Interfaces
dc.subjectSmart City Security
dc.subjectCryptographic Security
dc.subjectE-Commerce Security
dc.subjectEncryption Algorithms
dc.subjectSecure Communication
dc.titleFortifying Smart City Applications: Cryptographic Security in E-Health, E-Commerce, E-Banking, and E-Governance
dc.typeArticle

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