Facile fabrication of patterned Si film electrodes containing trench-structured Cu current collectors for thin-film batteries

•Trench-structured Cu current collector was fabricated using facile method.•Wholly covered Si film electrode exhibited an increase in capacity.•Selectively covered Si film electrode exhibited good efficiency and cycleability. In this study, two types of patterned (wholly and selectively covered) Si...

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Veröffentlicht in:Electrochimica acta 2017-01, Vol.224, p.649-659
Hauptverfasser: Cho, Gyu-bong, Kim, Jae-kwang, Lee, Sang-hoon, Kim, Guk-tae, Noh, Jung-pil, Cho, Kwon-koo, Kim, Ki-won, Nam, Tae-hyun, Ahn, Hyo-jun
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container_start_page 649
container_title Electrochimica acta
container_volume 224
creator Cho, Gyu-bong
Kim, Jae-kwang
Lee, Sang-hoon
Kim, Guk-tae
Noh, Jung-pil
Cho, Kwon-koo
Kim, Ki-won
Nam, Tae-hyun
Ahn, Hyo-jun
description •Trench-structured Cu current collector was fabricated using facile method.•Wholly covered Si film electrode exhibited an increase in capacity.•Selectively covered Si film electrode exhibited good efficiency and cycleability. In this study, two types of patterned (wholly and selectively covered) Si film electrodes containing trench-structured Cu current collectors are proposed for use in thin-film Li-ion batteries. The proposed electrodes are fabricated using a standard laser printer and electrochemical etching. The formation of the trench structure in the Si film electrodes results in improved electrochemical performance compared to conventional continuous Si film electrodes. The wholly covered Si film (WCS) electrode exhibits an 18.5% increase in capacity compared to the continuous Si film electrode. The selectively covered Si film (SCS) electrode, which is covered by Si film only at the bottom of the trenches, exhibits better electrochemical performance than the WCS electrode. An SCS electrode with a trench width of 45μm and trench height of 14.3μm exhibits the best electrochemical properties in terms of efficiency (85% in the first cycle) and cycle performance (60% capacity retention after 100 cycles).
doi_str_mv 10.1016/j.electacta.2016.12.067
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source Elsevier ScienceDirect Journals
subjects Accumulators
Batteries
Capacity
Collectors
Current collector
Electrochemical analysis
Electrochemical etching
Electrodes
Lithium-ion batteries
Patterned Si
Rechargeable batteries
Studies
Thin film battery
Thin films
Trench
Trenches
title Facile fabrication of patterned Si film electrodes containing trench-structured Cu current collectors for thin-film batteries
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