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首页> 外文期刊>Journal of nanoscience and nanotechnology >Detection of Charged Proteins with a Bio-Sensor Device Using a Semiconductor-on-Insulator Structure
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Detection of Charged Proteins with a Bio-Sensor Device Using a Semiconductor-on-Insulator Structure

机译:使用半导体on-on-on-on-on-on-on-on-on-on-on-constulator结构检测带电荷蛋白质的带电蛋白

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摘要

A bio-sensor device with a germanium-on-insulator (GOI) structure is successfully modelled and its theoretical results are demonstrated using a self-consistent numerical approach. The impact of quantum effects on charge density in the semiconductor are fully taken into account. The potential changes at the binding sites are determined as a function of the protein charge and ionic strength for the GOI bio-sensor. The simulation data demonstrate calculations of the sensitivity of the GOI structure with respect to specific charge distributions in the electrolyte solution. The results obtained by the quantum and classical charge density modelsare also compared.
机译:具有锗 - 绝缘体(GOI)结构的生物传感器装置是成功建模的,并且使用自我一致的数值方法来证明其理论结果。 量子效应对半导体中的电荷密度的影响得到完全考虑。 结合位点的电位变化是针对GOI生物传感器的蛋白质电荷和离子强度的函数。 模拟数据示出了GOI结构相对于电解质溶液中的特定电荷分布的敏感性的计算。 通过量子和经典电荷密度模型获得的结果也比较了。

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