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Electrostatics of DNA nucleotide-carbon nanotube hybrids evaluated from QM:MM simulations

机译:静电学的DNA nucleotide-carbon纳米管混合动力车从QM评估:毫米模拟

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摘要

Biomolecule-functionalized carbon nanotubes (CNTs) have been studied vastly in recent years due to their potential applications for instance in cancer detection, purification and separation of CNTs, and nanoelectronics. Studying the electrostatic potential generated by a biomolecule-CNT hybrid is important in predicting its interactions with the surrounding environment such as charged particles and surfaces. In this paper, we performed atomistic simulations using a QM: MM approach to evaluate the electrostatic potential and charge transfer for a hybrid structure formed by a DNA nucleotide and a CNT in solution. Four types of DNA nucleotides and two CNTs with chiralities of (4,4) and (7,0) were considered. The types of nucleotides and CNTs were both found to play important roles in the electrostatic potential and charge transfer of the hybrid. At the same distance from the CNT axis, the electrostatic potential for the nucleotide-(4,4) CNT hybrids was found to be stronger compared with that for the nucleotide-(7,0) CNT hybrids. Higher electric charge was also shown to be transferred from the DNA nucleotides to the (7,0) CNT compared with the (4,4) CNT. These results correlate with the previous finding that the nucleotides bound more tightly to the (7,0) CNT compared with the (4,4) CNT.
机译:Biomolecule-functionalized碳纳米管(碳纳米管)研究了近年来大大由于他们的潜在的应用实例癌症检测、净化和分离碳纳米管和纳米电子学。静电势产生的biomolecule-CNT混合在预测是很重要的它与周围环境的相互作用如带电粒子和表面。纸,我们单纯执行模拟使用QM: MM方法评估静电混合动力的潜力和电荷转移结构由DNA核苷酸和问解决方案。碳纳米管的手性(4,4)和(7,0)考虑。都发现中扮演重要的角色静电势和电荷转移混合。轴的静电势(核苷酸)- 4 4问混合动力车被发现更强的价格相比核苷酸(7,0)问混合动力车。费用也被转移的DNA核苷酸(7,0)问相比(4, 4)问。之前发现绑定更多的核苷酸严格的(7,0)问比(4,4)问。

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