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Comparative studies of hexagonal boron phosphide/V2CS2 heterostructure and homogeneous bilayers as metal-ion battery anodes.

Authors :
Yuan, Xian
Zhang, Zhongyong
He, Yuping
Zhou, Naigen
Source :
Physical Chemistry Chemical Physics (PCCP); 4/14/2023, Vol. 25 Issue 14, p10011-10021, 11p
Publication Year :
2023

Abstract

Heterostructures can not only maintain/avoid the desired characteristics/defects of their monolayers, but also have synergistic effects due to the contribution of an internal electric field from the heterostructure interlayer. Hexagonal boron phosphide (h-BP) and V<subscript>2</subscript>CS<subscript>2</subscript> were constructed into heterostructure (h-BP/V<subscript>2</subscript>CS<subscript>2</subscript>) and homogeneous bilayers (Dh-BP and DV<subscript>2</subscript>CS<subscript>2</subscript>), which were studied comparatively for their storage performances as anodes for metal (Li/Na/Mg/Ca)-ion batteries (LIBs/NIBs/MIBs/CIBs) using first-principles. The h-BP/V<subscript>2</subscript>CS<subscript>2</subscript> can adsorb five layers of Mg atoms while Dh-BP cannot adsorb any Mg atoms; heterostructures with a maximum adsorption concentration are stable at room temperature, while Dh-BP structures are unstable in the same cases, which make Dh-BP unsuitable as LIB/NIB/MIB/CIB anodes. h-BP/V<subscript>2</subscript>CS<subscript>2</subscript> completely exceeds DV<subscript>2</subscript>CS<subscript>2</subscript> in capacity, average OCV or interlayer barrier for LIBs/NIBs/MIBs/CIBs owing to its stronger internal electric field. In particular, for MIBs/NIBs, the capacity of heterostructure is 1219/732 mA h g<superscript>−1</superscript>, which is much higher than the 753/226 mA h g<superscript>−1</superscript> of DV<subscript>2</subscript>CS<subscript>2</subscript>; the average OCV of heterostructure is 0.07/0.35 V, as low as half of that of DV<subscript>2</subscript>CS<subscript>2</subscript>. The excellent storage performance of the heterostructure in NIBs/MIBs makes it very worthy of attention due to the urgent need for NIBs/MIBs with high energy density. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14639076
Volume :
25
Issue :
14
Database :
Complementary Index
Journal :
Physical Chemistry Chemical Physics (PCCP)
Publication Type :
Academic Journal
Accession number :
162918266
Full Text :
https://doi.org/10.1039/d3cp00221g