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Control over Alignment and Growth Kinetics of Si Nanowires through Surface Fluctuation of Liquid Precursor

Authors
Park, Yi-SeulJung, Da HeeLee, Jin Seok
Issue Date
Dec-2016
Publisher
AMER CHEMICAL SOC
Citation
CRYSTAL GROWTH & DESIGN, v.16, no.12, pp 6700 - 6704
Pages
5
Journal Title
CRYSTAL GROWTH & DESIGN
Volume
16
Number
12
Start Page
6700
End Page
6704
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/9325
DOI
10.1021/acs.cgd.6b01120
ISSN
1528-7483
1528-7505
Abstract
Control over alignment and growth kinetics of vertically aligned Si nanowire (v-SiNW) arrays, which were grown using chemical vapor deposition (CVD) via a metal catalyst-assisted vapor liquid solid (VLS) mechanism, was demonstrated by introducing a homemade bubbler system containing a SiCl4 solution as the Si precursor. Careful control over the bubbler afforded different amounts of SiCl4 supplied to the reactor. By varying the dipping depth (Dd) and tilting angle (Ta) of the bubbler, the SiCl4 precursor concentration would fluctuate to different degrees. The different SiCl4 concentrations afforded the fine-tuning of v-SiNW array properties like alignment and growth kinetics. The degree of alignment of v-SiNWs could be increased with large amounts of SiCl4, which was caused by slight shallow depth or gentle tilting of the SiCl4 solution in the bubbler due to an increasing degree of fluctuation and fluctuation area. The ability to control alignment and growth kinetics of v-SiNW arrays could be employed in advanced nanoelectronic devices.
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