Author Affiliations
Abstract
1 Surface Engineering and Nanotechnology Institute, School of Aerospace, Transport and Manufacturing, Cranfield University, Milton Keynes, Bedfordshire, MK43 0AL, UK
2 Target Fabrication Group, AWE, Aldermaston, Reading, Berkshire, RG7 4PR, UK
Aerogel materials manufactured from metal oxides have been used as components in numerous high-energy density physics targets. These aerogels have been identified to be used as a future target material in the AWE fielded campaigns at the US National Ignition Facility. A wide variety of metal oxide aerogels are required for future campaigns and therefore a versatile manufacturing route is sought; as such, an epoxide-assisted sol–gel route was investigated. Under the European Union Registration, Evaluation, Authorization and Restriction of Chemicals legislation, the most commonly used epoxide, propylene oxide, is recognized as a substance of very high concern (SVHC). This work sought to investigate suitable alternative epoxides for use in target manufacture. The outcome was the identification of synthesis routes for stable metal oxide aerogel monoliths using epoxides not subject to the above restrictions.
aerogel epoxide metal oxide sol–gel SVHC 
High Power Laser Science and Engineering
2017, 5(4): 04000e24
作者单位
摘要
南京邮电大学光电工程学院,江苏 南京 210046
用一片ITO玻璃作为场效应管的源极,在此玻璃上分别粘贴两块相同厚度塑料薄铝片作为栅极和漏极,在两块铝片之间留下很小的平行缝隙,再分别在源极、漏极、栅极的玻璃板上涂上聚四氟乙烯(Teflon)薄膜作为亲油疏水层,采用环氧树脂作为围堰材料,这样就制备了基于电润湿效应的新型液态场效应管。通过改变栅极的电压,能够调节有色油滴的位移,从而控制源极和漏极的电流变化。完成了液态场效应管的制作,并给出了初步的测试结果。
电润湿 晶体管 疏水亲油层 环氧树脂 electrowetting transistor hydrophobic layer epoxide resin 
光电技术应用
2013, 28(1): 25

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