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Controlling the Sensing Properties of Silicon Nanowires via the Bonds Nearest to the Silicon Nanowire Surface

机译:通过最接近硅纳米线表面的键控制硅纳米线的传感特性

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摘要

Controlling the sensing properties of a silicon nanowire field effect transistor is dependent on the surface chemistry of the silicon nanowire. A standard silicon nanowire has a passive oxide layer (native oxide), which has trap states that cause sensing inaccuracies and desensitize the surface to nonpolar molecules. In this paper, we successfully modified the silicon nanowire surface with different nonoxide C-3 alkyl groups, specifically, propyl (Si-CH2-CH2-CH3), propenyl (Si-CH-CH-CH3), and propynyl (Si-C=C-CH3) modifications. The effect of the near surface bond on the sensor sensitivity and stability was explored by comparing three C-3 surface modifications. A reduction of trap-states led to greater sensor stability and accuracy. The propenyl-modified sensor was consistently the most stable and sensitive sensor, among the applied sensors. The propenyl- and propynyl-modified sensors consistently performed with the best accuracy in identifying specific analytes with similar polarity or similar molecular weights. A combination of features from different sensing surfaces led to the best rubric for specific analytes identification. These results indicate that nonoxide sensor surfaces are useful in identifying specific analytes and that a combination of sensors with different surfaces in a cross-reactive array can lead to specific analytes detection.
机译:控制硅纳米线场效应晶体管的感测特性取决于硅纳米线的表面化学性质。标准的硅纳米线具有无源氧化物层(天然氧化物),该层具有陷阱状态,这些陷阱状态会导致感应不准确并使表面对非极性分子不敏感。在本文中,我们成功地用不同的非氧化物C-3烷基修饰了硅纳米线表面,具体来说是丙基(Si-CH2-CH2-CH3),丙烯基(Si-CH-CH-CH3)和丙炔基(Si-C = C-CH3)修改。通过比较三种C-3表面修饰,探索了近表面键合对传感器灵敏度和稳定性的影响。陷阱态的减少导致更高的传感器稳定性和准确性。在应用的传感器中,丙烯基修饰的传感器始终是最稳定,最灵敏的传感器。丙烯基和丙炔基修饰的传感器在识别具有相似极性或相似分子量的特定分析物时始终以最高精度运行。来自不同感应表面的特征的组合导致了针对特定分析物鉴定的最佳标准。这些结果表明,非氧化物传感器表面可用于识别特定的分析物,并且交叉反应阵列中具有不同表面的传感器的组合可导致特定的分析物检测。

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