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  4. Experimental Study on Sodiation of Amorphous Silicon for Use as Sodium-Ion Battery Anode
 
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Experimental Study on Sodiation of Amorphous Silicon for Use as Sodium-Ion Battery Anode

Journal
Electrochimica Acta
Journal Volume
211
Pages
265-272
Date Issued
2016
Author(s)
Lim C.-H.
Huang T.-Y.
Shao P.-S.
Chien J.-H.
Weng Y.-T.
Huang H.-F.
Hwang B.J.
Wu N.-L.  
DOI
10.1016/j.electacta.2016.06.031
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/409032
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84975887133&doi=10.1016%2fj.electacta.2016.06.031&partnerID=40&md5=15db6e6f5dd9dec35faa4ffce6c4320f
Abstract
Amorphous Si (a-Si) powders have been synthesized using various synthetic methods, and their electrochemical sodiation behaviours have been studied in detail. These methods include (1) a chemical delithiation method where Si is first lithiated and then delithiated either in an aqueous or organic solution, (2) a mechanical method where crystalline Si is subjected to high-energy ball milling, and (3) a mechanical fusion method where a Si-Sn composite with a Si-Sn atomic ratio of 0.94:0.06 is synthesized through high-energy ball milling. Commercial silicon monoxide (SiO) has also been examined for comparison. It is shown that facile oxidation of a-Si encountered in the methods (1) and (2) has led to low sodiation capacity and huge first-cycle irreversible capacity, similar to those of SiO. By contrast, the mechanically fused Si-Sn composite, which contains a Sn shell that prevents the oxidation of the partially amorphized Si core, exhibits a maximum sodiation capacity of 161 mAh g-1 based on active material. This is translated to an estimated sodiation capacity of no more than 230 mAh g-1 for the a-Si component in the composite. The presence of the Sn shell considerably reduces the first-cycle irreversible capacity and charge-transfer resistance, resulting in improved rate and cycle performance. This suggests a new material design strategy that may enable the use of the a-Si for Na-ion battery anode applications. ? 2016 Elsevier Ltd.
Subjects
amorphous Si
anode
sodium ion battery
SDGs

[SDGs]SDG7

Type
journal article

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