Tuning of Bandstructure of Single—Walled Carbon Nanotube Functionalized with ssDNA Oligonucleotide Sequence

S. Sinha, K. Biswas, A. Sarkar, Siddharth Shaw, J. Bandyopadhyay, S. Mitra, D. De
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Abstract

In the present work, a bare (6,0) single-walled carbon nanotube (SWCNT)is chosen to be surface functionalized with a single-stranded DNA (ssDNA)oligomer in order to facilitate a transition in the intrinsic electronic property of the former entity i.e. shift from a metallic to semiconducting nature. The coupled system has been designed with the help of ATK-VNL simulation tool. Induction of a bandgap in SWCNT on account of ssDNA functionalization is observed. The bandgap value is obtained to be 0.016 eV, Transmission spectra and Eigenstate analyses support relevant changes in the bandstructure. I-V characteristic plots also elucidate the semiconducting behaviour of the SWCNT-ssDNA hybrid model. This study could be helpful for opening newer avenues for designing Nano Electromechanical Systems (NEMS)for biomedical and healthcare applications.
ssDNA寡核苷酸功能化单壁碳纳米管的波段结构调整
在本研究中,选择一种裸(6,0)单壁碳纳米管(SWCNT)与单链DNA (ssDNA)低聚物进行表面功能化,以促进前者实体的内在电子性质的转变,即从金属性质转变为半导体性质。利用ATK-VNL仿真工具对耦合系统进行了设计。由于ssDNA功能化,在swcnts中诱导了带隙。得到带隙值为0.016 eV,透射光谱和本征态分析支持了带结构的相关变化。I-V特征图也阐明了swcnts - ssdna杂交模型的半导体行为。本研究为生物医学和医疗保健领域纳米机电系统的设计开辟了新的途径。
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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