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国家自然科学基金(s20873050)

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基于SERS和磁性分子印迹联用的药物小分子检测
<正>目前已经有众多方法可以达到对药物分子的定性以及定量分析,如光谱法、质谱法、色谱法、热重法等等。但是单纯的对纯品的分析已不能满足人们对实际样品分析检测的要求,所以在混合样品中对药物分子的快速分离检测成为了,分析科学领...
郭志男陈雷王旭阮伟东宋薇赵冰
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Fabrication Alternative Regions of Ordered Protein Patterns for Immunoglobulin Surface Enhanced Resonance Raman Scattering Sensing
<正>Two-dimensional ordered monolayer was nowadays an efficient mask for nanostructured patterns preparation.Na...
Zhi-Shi LiHui-Juan MaoZhi-Nan GuoBing Zhao
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Semiconductor Materials as SERS-active Substrates
Surface-enhanced Raman scattering(SERS)has attracted considerable attention in various fields,such as electroc...
Xiangxin XueWei JiZhu MaoZhishi LiBing ZhaoJohn R.Lombardi
Controllable Silver Plating on Silica for Surface-enhanced Raman Scattering被引量:2
2011年
We proposed a facile and rapid method for preparing silica-silver core-shell(SSCS) substrates to use Ag electroless plating on SiO2@Au-seed particles.UV-Vis-NIR absorption spectrometer and SEM were employed to monitor the reaction process of the formation of Ag on the surfaces of silica beads,and the optical resonance of the substrate could shift from visible to NIR region.It has been found that surface-enhanced Raman scattering(SERS) enhancement changes with the electroless plating time and the SSCS substrate with the plating time of 90 s(90SSCS) shows the strongest SERS response under the laser excitation at 514.5 nm.Signals collected over multiple spots and substrate of rhodamine 6G(R6G) resulted in a relative standard deviation(RSD) of 9.75%.The calculated enhancement factor(EF) was approximately 105 "106.SSCS substrate exhibits high SERS performance,which is due to electromagnetic SERS enhancement with additional localization field within closely packed Ag nanoparticles decorated on the SiO2 nanoparticles.And this substrate presents tunable and broad localized surface plasmon resonance(LSPR),so this method may open a new way for SERS studies with other laser excitation.
CHEN LeiHAN Xiao-xiaYANG Jing-xiuZHOU JiLU Zhi-chengSONG WeiZHAO BingXU Wei-qingOZAKI Yukihiro
关键词:表面增强拉曼散射表面等离子体共振纳米SIO2SERS
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