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基于自组装单分子层技术的单晶硅表面化学镀镍工艺优化 被引量:3
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作者 胡睿 熊晓玲 +3 位作者 王关全 魏洪源 张华明 杨玉青 《材料保护》 CAS CSCD 北大核心 2010年第9期32-34,共3页
传统的化学镀镍前处理会对单晶硅造成严重影响,进而影响两者的结合。以单因素条件设计并结合4因素3水平正交试验,对单晶硅表面进行改性活化处理,优选出化学镀镍的处理条件为:羟基化处理15h,偶联处理48h,再在化学镀液中于90℃下施镀1h,... 传统的化学镀镍前处理会对单晶硅造成严重影响,进而影响两者的结合。以单因素条件设计并结合4因素3水平正交试验,对单晶硅表面进行改性活化处理,优选出化学镀镍的处理条件为:羟基化处理15h,偶联处理48h,再在化学镀液中于90℃下施镀1h,在此条件下对单晶硅化学镀镍可以获得的沉积速度高达6.137mg/(cm2.h),且镀层与硅片结合牢固,颗粒品质优良。 展开更多
关键词 化学镀镍 自组装单分子层技术 单晶硅 正交试验
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自组装单分子层技术在细胞生物学中的应用
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作者 沙赟颖 李岩 +1 位作者 胡婧 张玉莹 《农村科学实验》 2019年第24期131-132,共2页
本篇综述简单总结了自组装单分子层技术在研究蛋白吸附、生物识别、细胞粘附以及制备图案化和动力学表面等方面的进展.
关键词 自组装单分子层技术 细胞生物学
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A review of self-assembled monolayers as potential terahertz frequency tunnel diodes
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作者 Michael Celestin Subramanian Krishnan +2 位作者 Shekhar Bhansali Elias Stefanakos D. Yogi Goswami 《Nano Research》 SCIE EI CAS CSCD 2014年第5期589-625,共37页
In this review, we describe the principles of the tunnel junction, self-assembled monolayer (SAM) application techniques, experimental testbed fabrication, and characterization of the films and devices. In addition,... In this review, we describe the principles of the tunnel junction, self-assembled monolayer (SAM) application techniques, experimental testbed fabrication, and characterization of the films and devices. In addition, techniques for directed application, removal, and functionalization of the monolayers are discussed. Bottom-up fabrication techniques have seen increased attention because of their versatility and ease of use. These films see mechanical uses as surface modifiers and micro-scale lubricants. Advances in nanowatt electronics and ultra-low power sensors have opened up an energy harvesting niche for solutions which would have proven ineffective just some years ago. The focus of this study is the two- terminal junction which has potential applications in THz rectification for energy harvesting, medical imaging, and defense sensing. The quantum theory of operation behind these devices is touched on briefly---describing tunneling through the organic monolayers. Commentary on trends in research and potential future work are presented as well. 展开更多
关键词 SAM/self-assembly quantum tunneling molecular rectification IR detection RECTENNA
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