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Wavelength Selective a-SiC:H p-i-n/p-i-n Heterostructure for Fluorescent Proteins Detection

机译:波长选择性a-SiC:H p-i-n / p-i-n异质结构用于荧光蛋白检测

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摘要

In this paper we present results on the optimization of multilayered a-SiC:H heterostructures that can be used as optical transducers for fluorescent proteins detection using the Fluorescence Resonance Energy Transfer approach. Double structures composed by pin based aSiC:H cells are analyzed. The color discrimination is achieved by ac photocurrent measurement under different externally applied bias. Experimental data on spectral response analysis, current-voltage characteristics and color and transmission rate discrimination are reported. An electrical model, supported by a numerical simulation gives insight into the device operation. Results show that the optimized a-SiC:H heterostructures act as voltage controlled optical filters in the visible spectrum. When the applied voltages are chosen appropriately those optical transducers can detect not only the selective excitation of specimen fluorophores, but also the subsequent weak acceptor fluorescent channel emission.
机译:在本文中,我们介绍了多层a-SiC:H异质结构的优化结果,这些结构可用作使用荧光共振能量转移方法检测荧光蛋白的光学传感器。分析了基于针的aSiC:H电池组成的双重结构。通过在不同的外部偏置下进行交流光电流测量可以实现颜色识别。报告了有关光谱响应分析,电流-电压特性以及颜色和传输速率识别的实验数据。数值模拟支持的电气模型可以深入了解设备的运行情况。结果表明,优化的α-SiC:H异质结构在可见光谱中充当电压控制的滤光片。当适当选择施加的电压时,这些光学传感器不仅可以检测样品荧光团的选择性激发,还可以检测随后的弱受体荧光通道发射。

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