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Broadband characterization of charge carrier transfer of hybrid graphene-deoxyribonucleic acid junctions

机译:杂交石墨烯 - 脱氧核糖核酸结的电荷载体转移的宽带特征

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摘要

The charge transfer dynamics regarding an intimate contact between graphene and single-stranded deoxyribonucleic acid (ssDNA) is investigated from DC to the THz-regime. A graphene field-effect transistor (G-FET) is immersed in ssDNA solutions where the adsorption of ssDNA is controlled in terms of absolute coverage. DC-response of the G-FET is recorded and cross-validated by observing changes in Raman spectroscopy and further investigating THz-time domain spectroscopy using a nano-slot antenna. We find very good agreement between electrical and optical approaches where the Fermi level of the ssDNA-adsorbed graphene depends on the coverage nonlinearly. The results point towards a new doping method with sub-nanoscale patterning precision on graphene and its electronic applications based on electronic junction properties. (c) 2018 Elsevier Ltd. All rights reserved.
机译:研究了关于石墨烯和单链脱氧核糖核酸(SSDNA)之间的紧密接触的电荷转移动力学从DC到THz-engime研究。 将石墨烯场效应晶体管(G-FET)浸入SSDNA溶液中,其中SSDNA的吸附是在绝对覆盖范围内控制的。 通过观察拉曼光谱的变化以及使用纳米槽天线进行RAMAN光谱的变化来记录和交叉验证G-FET的DC响应。 我们在电气和光学方法之间发现非常良好的一致性,其中SSDNA吸附的石墨烯的费米水平取决于非线性的覆盖范围。 基于电子结石特性的石墨烯亚纳米级图案化精度的新掺杂方法的结果点。 (c)2018年elestvier有限公司保留所有权利。

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