Open Access
Versatilely tuned vertical silicon nanowire arrays by cryogenic reactive ion etching as a lithium-ion battery anode
Andam Deatama Refino
1, 2, 3
,
Nursidik Yulianto
1, 2, 4
,
Iqbal Syamsu
1, 2, 5
,
Andika Pandu Nugroho
6
,
Naufal Hanif Hawari
6
,
Alina Syring
1, 2
,
Evvy Kartini
7
,
Ferry Iskandar
8
,
Tobias Voss
1, 2
,
Afriyanti Sumboja
6
,
Erwin Peiner
1, 2
,
Hutomo Suryo Wasisto
1, 2, 9
3
Engineering Physics Program, Institut Teknologi Sumatera (ITERA), Lampung, Indonesia
|
7
Center for Science and Technology of Advanced Materials, National Nuclear Energy Agency (BATAN), South Tangerang, Indonesia
|
9
PT Nanosense Instrument Indonesia, Umbulharjo, Indonesia
|
Publication type: Journal Article
Publication date: 2021-10-05
scimago Q1
wos Q1
SJR: 0.874
CiteScore: 6.7
Impact factor: 3.9
ISSN: 20452322
PubMed ID:
34611222
Multidisciplinary
Abstract
Production of high-aspect-ratio silicon (Si) nanowire-based anode for lithium ion batteries is challenging particularly in terms of controlling wire property and geometry to improve the battery performance. This report demonstrates tunable optimization of inductively coupled plasma reactive ion etching (ICP-RIE) at cryogenic temperature to fabricate vertically-aligned silicon nanowire array anodes with high verticality, controllable morphology, and good homogeneity. Three different materials [i.e., photoresist, chromium (Cr), and silicon dioxide (SiO2)] were employed as masks during the subsequent photolithography and cryogenic ICP-RIE processes to investigate their effects on the resulting nanowire structures. Silicon nanowire arrays with a high aspect ratio of up to 22 can be achieved by tuning several etching parameters [i.e., temperature, oxygen/sulfur hexafluoride (O2/SF6) gas mixture ratio, chamber pressure, plasma density, and ion energy]. Higher compressive stress was revealed for longer Si wires by means of Raman spectroscopy. Moreover, an anisotropy of lattice stress was found at the top and sidewall of Si nanowire, indicating compressive and tensile stresses, respectively. From electrochemical characterization, half-cell battery integrating ICP-RIE-based silicon nanowire anode exhibits a capacity of 0.25 mAh cm−2 with 16.67% capacity fading until 20 cycles, which has to be improved for application in future energy storage devices.
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60
Total citations:
60
Citations from 2024:
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(48.34%)
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Refino A. D. et al. Versatilely tuned vertical silicon nanowire arrays by cryogenic reactive ion etching as a lithium-ion battery anode // Scientific Reports. 2021. Vol. 11. No. 1. 19779
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Refino A. D., Yulianto N., Syamsu I., Nugroho A. P., Hawari N. H., Syring A., Kartini E., Iskandar F., Voss T., Sumboja A., Peiner E., Wasisto H. S. Versatilely tuned vertical silicon nanowire arrays by cryogenic reactive ion etching as a lithium-ion battery anode // Scientific Reports. 2021. Vol. 11. No. 1. 19779
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TY - JOUR
DO - 10.1038/s41598-021-99173-4
UR - https://doi.org/10.1038/s41598-021-99173-4
TI - Versatilely tuned vertical silicon nanowire arrays by cryogenic reactive ion etching as a lithium-ion battery anode
T2 - Scientific Reports
AU - Refino, Andam Deatama
AU - Yulianto, Nursidik
AU - Syamsu, Iqbal
AU - Nugroho, Andika Pandu
AU - Hawari, Naufal Hanif
AU - Syring, Alina
AU - Kartini, Evvy
AU - Iskandar, Ferry
AU - Voss, Tobias
AU - Sumboja, Afriyanti
AU - Peiner, Erwin
AU - Wasisto, Hutomo Suryo
PY - 2021
DA - 2021/10/05
PB - Springer Nature
IS - 1
VL - 11
PMID - 34611222
SN - 2045-2322
ER -
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BibTex (up to 50 authors)
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@article{2021_Refino,
author = {Andam Deatama Refino and Nursidik Yulianto and Iqbal Syamsu and Andika Pandu Nugroho and Naufal Hanif Hawari and Alina Syring and Evvy Kartini and Ferry Iskandar and Tobias Voss and Afriyanti Sumboja and Erwin Peiner and Hutomo Suryo Wasisto},
title = {Versatilely tuned vertical silicon nanowire arrays by cryogenic reactive ion etching as a lithium-ion battery anode},
journal = {Scientific Reports},
year = {2021},
volume = {11},
publisher = {Springer Nature},
month = {oct},
url = {https://doi.org/10.1038/s41598-021-99173-4},
number = {1},
pages = {19779},
doi = {10.1038/s41598-021-99173-4}
}