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Three-dimensional, hetero-structured, Cu3P@C nanosheets with excellent cycling stability as Na-ion battery anode material.

Authors :
Zhu, Jinliang
He, Qiuchen
Liu, Yang
Key, Julian
Nie, Shuangxi
Wu, Mingmei
Shen, Pei Kang
Source :
Journal of Materials Chemistry A; 7/28/2019, Vol. 7 Issue 28, p16999-17007, 9p
Publication Year :
2019

Abstract

Transition metal phosphides, especially copper phosphide nanocrystals, afford promising anode material candidates for sodium ion batteries. However, despite their high specific capacity, their performance is generally thwarted by rapid capacity fading due to limited cycling stability. To address this issue, we report a three-dimensional nanoarchitecture comprising a heterostructured assembly of Cu<subscript>3</subscript>P@C nanosheets synthesized via a simple combined epitaxial phosphidation growth/carbon deposition process. In each individual nanosheet, the thin carbon shell serves as an electron conductor and accommodates volume change of the Cu<subscript>3</subscript>P single-crystalline nanosheet. On a macroscopic level, the assembled 3D nanoarchitecture offers fast ion transfer pathways and prevents aggregation of the nanosheets. As a result, the 3D Cu<subscript>3</subscript>P@C nanoarchitecture delivers an exceptionally high capacity retention of 286 mA h g<superscript>−1</superscript> after 300 cycles at 0.1 A g<superscript>−1</superscript> and 156 mA h g<superscript>−1</superscript> after 1000 cycles at 1 A g<superscript>−1</superscript>. This work, therefore, shows that achieving a synergistic multidimensional structure is possible via a simple one-pot method, and opens avenues to explore other metal phosphides in the same heterostructured format. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20507488
Volume :
7
Issue :
28
Database :
Complementary Index
Journal :
Journal of Materials Chemistry A
Publication Type :
Academic Journal
Accession number :
137528952
Full Text :
https://doi.org/10.1039/c9ta04035h