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2022
DOI: 10.1021/acs.jpcc.2c03394
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Decreased Deformation and Heat as well as Improved Interface and Diffusion of Silicon To Enhance Electrochemical Performance and Safety by a Negative Thermal Expansion Material

Abstract: Severe deformation, thermal runaway, and low ionic migration do harm to the applications of silicon. Herein, a negative thermal expansion material of LiTi2(PO4)3 (LTP) with high ionic conductivity was synthesized and utilized to modify nanoscaled Si, and its effects were investigated. Si modified with 3 wt % LTP (SL3) shows the best performance, and its discharge capacities retain 849.4 and 410.9 mAh/g after 100 cycles at 2 A/g as temperatures are 25 and 60 °C, respectively, about 245.4 and 399.9% higher than … Show more

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Cited by 2 publications
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“…The real part of impedance (Z') was plotted against the inverse of the square root of the angular frequency (ω −1/2 ) to obtain the value of the slope called the Warburg coefficient, σ W [Ω s −1/2 ] (see Figure S16 for the plot of each sample). Then, D Li+ [cm 2 s −1 ] was estimated using the following equation: [80][81][82][83][84][85][86] RT…”
Section: Resultsmentioning
confidence: 99%
“…The real part of impedance (Z') was plotted against the inverse of the square root of the angular frequency (ω −1/2 ) to obtain the value of the slope called the Warburg coefficient, σ W [Ω s −1/2 ] (see Figure S16 for the plot of each sample). Then, D Li+ [cm 2 s −1 ] was estimated using the following equation: [80][81][82][83][84][85][86] RT…”
Section: Resultsmentioning
confidence: 99%