2024 : 12 : 19
Mahdi Rezaei Sameti

Mahdi Rezaei Sameti

Academic rank: Associate Professor
ORCID:
Education: PhD.
ScopusId:
HIndex:
Faculty: science
Address: Department of applied chemistry,Faculty science, Malayer University, Malayer, Iran
Phone: 32355404

Research

Title
Evaluating the drug delivery potential of graphene, BC3, and NC3 nanosheets for cyclophosphamide: A computational study analyzing static electric field and solvent effects through DFT, TD-DFT, and NLO techniques
Type
JournalPaper
Keywords
Cyclophosphamide drug BC3 NC3 Graphene DFT RDG
Year
2024
Journal Computational and Theoretical Chemistry
DOI
Researchers Mahdi Rezaei Sameti

Abstract

This study explores the interaction between cyclophosphamide (CP) and graphene (G), BC3 nanosheets (B), and NC3 nanosheets (N) under static electric fields (SEFz + 0.01 to SEFz + 0.04 a.u) using density functional theory (DFT) and time-dependent density functional theory (TD-DFT). Negative adsorption energy (Eads) and enthalpy (ΔH) values indicate favorable complex formation in gas and water environments for CP-drug&G, CP-drug&BC3, and CP-drug&NC3. Highlighted Eads values in models B1 (􀀀 29.61 kcal/mol) and B3 (􀀀 27.18 kcal/mol) suggest strong CP-drug and BC3 nanosheet interaction. AIM, RDG, and ELF analyses confirm noncovalent interactions. Increased total polarizability (αtot) and first hyperpolarizability (βtot) indicate potential traceability of CPdrug& nanosheet complexes. SEF fields enhance dipole moment and reactivity, highlighting BC3 nanosheets as promising candidates for designing carriers and sensors for targeted CP-drug delivery. The future outline includes further investigations into the dynamics of CP-drug&nanosheet complexes and their applications in drug delivery and sensing technologies.