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Title: TUNING SILICON NANORODS FOR ANODES OF LI-ION RECHARGEABLE BATTERIES

Journal Article · · Electrochemical Society Transactions
OSTI ID:1006406

Silicon is a promising anode material for Li-ion batteries in regarding of high capacity, low cost and safety, but it suffers poor cycling stability due to the pulverization induced by severe volume expansion/shrinkage (297%) during lithium insertion/extraction. In our previous investigation on aluminum nanorods anodes, it is found the selection of substrates in which Al nanorods grown plays the role in prevention of pulverization resulting in the increase of cycling life. Adapting this knowledge, we investigated the Si based nanorods anodes by tuning its composition and element distribution. Our results show that although the Si nanorods demonstrated higher initial anodic capacity of 1500 mAh/g, it diminished after 50 cycles due to morphology change and pulverization. By codepositing Cu, the Si-Cu composite nanorods demonstrated sustainable capacity of 500 mAh/g in 100 cycles attributing to its flexible and less brittle nature.

Research Organization:
Savannah River Site (SRS), Aiken, SC (United States)
Sponsoring Organization:
USDOE
DOE Contract Number:
DE-AC09-08SR22470
OSTI ID:
1006406
Report Number(s):
SRNL-STI-2010-00747; TRN: US201105%%1041
Journal Information:
Electrochemical Society Transactions, Journal Name: Electrochemical Society Transactions
Country of Publication:
United States
Language:
English

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