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Ex Situ Investigation of Anisotropic Interconnection in Silicon-Titanium-Nickel Alloy Anode Material.

Authors :
Jong-Soo Cho
Pankaj Kumar Alaboina
Chan-Soon Kang
Seul-Cham Kim
Seoung-Bum Son
Soonsung Suh
Jaehyuk Kim
Seunguk Kwon
Se-Hee Lee
Kyu-Hwan Oh
Sung-Jin Cho
Source :
Journal of The Electrochemical Society; 2017, Vol. 164 Issue 6, pA968-A972, 5p
Publication Year :
2017

Abstract

Herein we investigate the nanostructural evolution of Silicon-Titanium-Nickel (Si-Ti-Ni) ternary alloy material synthesized by melt spinning process for advanced lithium-ion battery anode. The synthesized material was found to have nano-Silicon particles dispersed in the Ti<subscript>4</subscript>Ni<subscript>4</subscript>Si<subscript>7</subscript> (STN) alloy buffering matrix and was characterized by X-ray diffraction (XRD), High resolution- transmission electron microscope (HR-TEM), Scanning transmission electron microscopes - energy dispersive X-ray spectrometer (STEM-EDS), and electrochemical performance test. The role of STN matrix is to accommodate the volume expansion stresses of the dispersed Si nanoparticles. However, an interesting behavior was observed during cycling. The Si nanoparticles were observed to form interconnection channels growing through the weak STN matrix cracks and evolving to a network isolating the STN matrix into small puddles. This unique nanostructural evolution of Si particles and isolation of the STN matrix failing to offer significant buffering effect to the grown Si network eventually accelerates more volume expansions during cycling due to less mechanical confinement and leads to performance degradation and poor cycle stability. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00134651
Volume :
164
Issue :
6
Database :
Supplemental Index
Journal :
Journal of The Electrochemical Society
Publication Type :
Academic Journal
Accession number :
122866763
Full Text :
https://doi.org/10.1149/2.0221706jes