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  4. Development of pressure control technique of an arc-submerged nanoparticle synthesis system (ASNSS) for copper nanoparticle fabrication
 
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Development of pressure control technique of an arc-submerged nanoparticle synthesis system (ASNSS) for copper nanoparticle fabrication

Journal
Materials Transactions
Journal Volume
44
Journal Issue
6
Pages
1138-1142
Date Issued
2003
Author(s)
Tsung, T.-T.
Chang, H.
Chen, L.-C.
Han, L.-L.
Lo, C.-H.
Liu, M.-K.
LIANG-CHIA CHEN  
DOI
10.2320/matertrans.44.1138
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/447916
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-0043199360&doi=10.2320%2fmatertrans.44.1138&partnerID=40&md5=e6e948d3e9dd129ce47d0cb487d3ca70
Abstract
The synthesis of nano-materials is one of the crucial techniques towards product and process innovation. In this article, low-pressure control methods for an arc-submerged nanoparticle synthesis system (ASNSS) was proposed and developed for copper nanoparticle fabrication. Two technical advances associated with nanoparticle synthesis were achieved. One is the novel pressure control technique developed for nanoparticle fabrication. The other is the verification that the constant low-operating pressure plays an important role in determining the characteristics of the prepared nanoparticles. From the experimental results, pressure control of the ASNSS was identified as crucial to success of metal nanoparticle synthesis. To achieve the desired pressure control, a vacuum chamber was developed as a nanoparticle accumulator and low-pressure reservoir. The chamber was controlled by the proposed flow-valve feedback control system and integrated with the ASNSS. In this study, the pressure control equipment of the ASNSS was effectively developed to prepare desired copper nanocrystalline particles with well-controlled size.
SDGs

[SDGs]SDG9

Type
journal article

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