Back to Search Start Over

Exploring the structure and hydrogen storage capacity of CeHn0/+ clusters.

Authors :
Zhao, H. H.
Huang, S. J.
Li, X. S.
Yu, W. W.
Fu, Y. W.
Liu, Y.
Wang, H. Y.
Source :
Physical Chemistry Chemical Physics (PCCP); 5/28/2024, Vol. 26 Issue 20, p14930-14936, 7p
Publication Year :
2024

Abstract

The unique 4f orbitals and abundant electronic energy levels of rare earth elements enable effective doping and modification to enhance hydrogen storage performance, making it an increasingly prominent focus of research. The structures of neutral and cationic CeH<subscript>n</subscript><superscript>0/+</superscript> (n = 2–20) clusters have been determined using the Crystal Structure AnaLYsis by Particle Swarm Optimization (CALYPSO) method in conjunction with density functional theory (DFT). Interestingly, the CeH<subscript>13</subscript> and CeH<subscript>14</subscript><superscript>+</superscript> exhibit remarkable stability in the doublet state with C<subscript>s</subscript> and C<subscript>2v</subscript> symmetry, respectively. The adsorption energy of CeH<subscript>n</subscript><superscript>0/+</superscript> (n = 2–20) suggests a preference for H atoms to chemically adsorb on Ce atoms. The analysis of molecular orbital composition reveals that the stability of both CeH<subscript>13</subscript> and CeH<subscript>14</subscript><superscript>+</superscript> is attributed to the significant hybridization between the H 1s and Ce 4f orbitals. Both CeH<subscript>13</subscript> and CeH<subscript>14</subscript><superscript>+</superscript> demonstrate significant hydrogen storage capacities, with values reaching 8.5 wt% and 9.1 wt%, respectively. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14639076
Volume :
26
Issue :
20
Database :
Complementary Index
Journal :
Physical Chemistry Chemical Physics (PCCP)
Publication Type :
Academic Journal
Accession number :
177400889
Full Text :
https://doi.org/10.1039/d4cp00354c