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首页> 外文期刊>Analytica chimica acta >Bimetallic gold-silver nanoplate array as a highly active SERS substrate for detection of streptavidin/biotin assemblies
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Bimetallic gold-silver nanoplate array as a highly active SERS substrate for detection of streptavidin/biotin assemblies

机译:双金属金银纳米板阵列作为高活性SERS底物,可检测链霉亲和素/生物素组装体

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The silver-modified gold nanoplate arrays as bimetallic surface-enhanced Raman scattering (SERS) substrates were optimized for the surface-enhanced Raman detection of streptavidin/biotin monolayer assemblies. The bimetallic gold-silver nanoplate arrays were fabricated by coating silver nanoparticles uniformly on the gold nanoplate arrays. Depending on silver nanoparticle coating, the localized surface plasmon resonance (LSPR) peak of the bimetallic gold-silver nanoplate arrays blue-shifted and broadened significantly. The common probe molecule, Niel Blue A sulfate (NBA) was used for testing the SERS activity of the bimetallic gold-silver nanoplate arrays. The SERS intensity increased with the silver nanoparticle coating, due to a large number of hot spots and nanoparticle interfaces. The platforms were tested against a monolayer of streptavidin functionalized over the bimetallic gold-silver nanoplate arrays showing that good quality spectra could be acquired with a short acquisition time. The supramolecular interaction between streptavidin (strep) and biotin showed subsequent modification of Raman spectra that implied a change of the secondary structure of the host biomolecule. And the detection concentration for biotin by this method was as low as 1.0 nM. The enhanced SERS performance of such bimetallic gold-silver nanoplate arrays could spur further interest in the integration of highly sensitive biosensors for rapid, nondestructive, and quantitative bioanalysis, particularly in microfluidics.
机译:银修饰的金纳米板阵列作为双金属表面增强拉曼散射(SERS)衬底进行了优化,以用于链霉亲和素/生物素单层组件的表面增强拉曼检测。通过将银纳米颗粒均匀地涂覆在金纳米板阵列上来制造双金属金银纳米板阵列。取决于银纳米颗粒涂层,双金属金-银纳米板阵列的局部表面等离子体共振(LSPR)峰蓝移并显着变宽。常用的探针分子尼尔蓝A硫酸盐(NBA)用于测试双金属金银纳米板阵列的SERS活性。由于大量的热点和纳米粒子界面,SERS强度随银纳米粒子涂层的增加而增加。该平台针对在双金属金-银纳米板阵列上功能化的抗生蛋白链菌素单层进行了测试,显示可以在短时间内获得高质量的光谱。链霉亲和素(strep)和生物素之间的超分子相互作用显示拉曼光谱的后续修饰,这意味着宿主生物分子的二级结构发生了变化。该方法对生物素的检测浓度低至1.0 nM。这种双金属金银纳米板阵列增强的SERS性能可以激发人们对集成用于快速,无损和定量生物分析的高灵敏度生物传感器的兴趣,尤其是在微流体领域。

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