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Metal-Doped Al 12 N 12 X (X = Na, Mg, K) Nanoclusters as Nanosensors for Carboplatin: Insight from First-Principles Computation.

Authors :
Louis H
Mathias GE
Ikenyirimba OJ
Unimuke TO
Etiese D
Adeyinka AS
Source :
The journal of physical chemistry. B [J Phys Chem B] 2022 Jul 14; Vol. 126 (27), pp. 5066-5080. Date of Electronic Publication: 2022 Jul 05.
Publication Year :
2022

Abstract

This theoretical study focuses on the adsorption, reactivity, topological analysis, and sensing behavior of metal-doped (K, Na, and Mg) aluminum nitride (Al <subscript>12</subscript> N <subscript>12</subscript> ) nanoclusters using the first-principle density functional theory (DFT). All quantum chemical reactivity, natural bond orbital (NBO), free energies (Δ G , Δ H ), and sensor parameters were investigated using the ωB97XD functional with the 6-311++G(d,p) basis set. The trapping of carboplatin (cbp) onto the surfaces of doped Al <subscript> 12 </subscript> N <subscript> 12 </subscript> was studied using four functionals PBE0-D3, M062X-D3, ωB97XD, and B3LYP-D3 at the 6-311++G(d,p) basis set. Overall, the substantial change in the energy gap of the surfaces after the adsorption process affects the work function, field emission, and the electrical conductivity of the doped clusters, hence making the studied surfaces a better sensor material for detecting carboplatin. Higher free energies of solvation were obtained in polar solvents compared to nonpolar solvents. Moreover, negative solvation energies and adsorption energies were obtained, which therefore shows that the engineered surfaces are highly efficient in trapping carboplatin. The relatively strong adsorption energies show that the mechanism of adsorption is by chemisorption, and K- and Na-doped metal clusters acted as better sensors for carboplatin. Also, the topological analysis in comparison to previous studies shows that the nanoclusters exhibited very high stability with regard to their relevant binding energies and hydrogen bond interactions.

Details

Language :
English
ISSN :
1520-5207
Volume :
126
Issue :
27
Database :
MEDLINE
Journal :
The journal of physical chemistry. B
Publication Type :
Academic Journal
Accession number :
35786897
Full Text :
https://doi.org/10.1021/acs.jpcb.2c03671