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原子工程材料科学与技术简介
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作者 何宇亮 《物理通报》 1996年第5期1-2,共2页
原子工程材料是指近年迅速发展起来的团簇、超微粒子、薄膜及半导体量子点阵新型低维功能材料。这些材料具有许多新奇物理性质,如强量子尺寸效应,巨磁阻效应,高电导率,强敏感性以及光致发光特性等。采用各种工艺技术制备这些材料,并采... 原子工程材料是指近年迅速发展起来的团簇、超微粒子、薄膜及半导体量子点阵新型低维功能材料。这些材料具有许多新奇物理性质,如强量子尺寸效应,巨磁阻效应,高电导率,强敏感性以及光致发光特性等。采用各种工艺技术制备这些材料,并采用扫描隧道显微镜(STM)等新型检测手段对其进行广泛研究。 展开更多
关键词 原子工程材料 团簇 超微粒 半导体量子点阵
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Construction of CdSe/ZnS quantum dot microarray in a microfluidic chip 被引量:2
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作者 LIU HongWei JING YingYing +2 位作者 YU Xu PANG DaiWen ZHANG ZhiLing 《Science China Chemistry》 SCIE EI CAS 2012年第4期543-549,共7页
Microarray technology has been proved to be greatly helpful for biomedical and biological diagnosis. And the evaluation of its biological applications lies in the detection sensitivity, which requires high intensity a... Microarray technology has been proved to be greatly helpful for biomedical and biological diagnosis. And the evaluation of its biological applications lies in the detection sensitivity, which requires high intensity and stability of the signal. Recently, several nanomaterials, especially semiconductor nanomaterials, due to their excellent fluorescence properties, have been widely used to construct microarrays for biosensors. Here, we presented an approach for constructing CdSe/ZnS quantum dot (QD) microarray in microfluidic channels on a glass slide by photolithography. The conditions for immobilizing stable and uniform QD microarray on the glass slide were optimized. Several types of QD microarrays with different emission wavelengths and modified groups were constructed using silanization and lithography technology. Based on the fluorescence quenching effect of Cu2+ on QDs, the microfluidic chip with QD microarray was applied for the determination of Cu2+. 1 nmol/L Cu2+ could be detected by this method. 展开更多
关键词 MICROARRAY quantum dots microfluidic CU2+
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