Nanowire conductance biosensor by spacer patterning lithography technique for DNA hybridization detection: Design and fabrication method

U. Hashim, S. Salleh, Emi Azri Shohini, Siti Fatimah Abd Rahman
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引用次数: 7

Abstract

The use of Silicon nanowires has allowed the introduction of many new signal transduction technologies in biosensors. The sensitivity and performance of biosensors is being improved by using doping process for their construction. This research presents the design and fabrication of a Silicon nanowire for deoxyribonucleic acid (DNA) hybridization detection using electrodes made of nanowires whose width is comparable to the size of a DNA molecule. During hybridization, DNA change from single stranded DNA (ssDNA) to double stranded DNA (dsDNA) cause the change of charge density of molecules structure. Fabrication of a Silicon nanowire (NW) using spacer patterning lithography (SPL) techniques is addressed and characterization of its conductivity altogether with capacitance effect is discussed in this research.
用于DNA杂交检测的间隔图光刻纳米线导生物传感器:设计与制造方法
硅纳米线的使用为生物传感器引入了许多新的信号转导技术。采用掺杂法制备生物传感器,提高了传感器的灵敏度和性能。本研究提出了一种用于脱氧核糖核酸(DNA)杂交检测的硅纳米线的设计和制造,该纳米线的宽度与DNA分子的大小相当。在杂交过程中,DNA从单链DNA (ssDNA)变为双链DNA (dsDNA),导致分子结构的电荷密度发生变化。本文研究了利用间隔图像化光刻技术制备硅纳米线的方法,并讨论了其电导率和电容效应的表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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