Potential Use of Some Metal Clusters As Hydrogen Storage Materials--a Conceptual DFT Approach
Overview
Affiliations
Structure, stability and reactivity of several metal clusters with or without hydrogen doping were studied using standard ab initio and density functional theory (DFT) calculations. Conceptual DFT-based reactivity descriptors and the associated electronic structure principles lend additional support towards understanding the stability of metal clusters upon hydrogen doping. Related aromaticity was analyzed through nucleus-independent chemical shift values. Site selectivity towards electrophilic and nucleophilic attacks were analyzed in terms of the corresponding local reactivity descriptors. Most of the metal clusters have the capacity to trap hydrogen molecules.
Pandey S, Arunan E, Das R, Roy A, Mishra A Front Chem. 2022; 10:1019166.
PMID: 36419589 PMC: 9676666. DOI: 10.3389/fchem.2022.1019166.
Atomic Clusters: Structure, Reactivity, Bonding, and Dynamics.
Pal R, Poddar A, Chattaraj P Front Chem. 2021; 9:730548.
PMID: 34485247 PMC: 8415529. DOI: 10.3389/fchem.2021.730548.
Stability and aromaticity of nH(2)@B(12)N(12) (n=1-12) clusters.
Giri S, Chakraborty A, Chattaraj P Nano Rev. 2011; 2.
PMID: 22110872 PMC: 3215195. DOI: 10.3402/nano.v2i0.5767.