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Dopamine sensing by boron and nitrogen co-doped single-walled carbon nanotubes: A first-principles study

机译:硼和氮共掺杂单壁碳纳米管对多巴胺的传感:第一性原理研究

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Dopamine (DA) is a catecholamine neurotransmitter that can cause some nervous system disorders, leading to Parkinson's disease. Thus, the development of a dopamine sensor is important for the diagnosis of these disorders. Here, we studied the adsorption of DA on semiconducting single-walled carbon nanotubes (SWNTs), including pure, and B,N co-doped (6,5) SWNTs, via DFT calculations. Our results indicated that DA can form multiple molecular interactions with pure (6,5) SWNT. However, these interactions have limited effects on the electronic properties; therefore, the band gap and conductivity of pure (6,5) SWNT did not change significantly after DA adsorption. On the other hand, regarding the adsorption of DA on a B,N co-doped (6,5) SWNT, we found that not only stronger molecular interactions such as C-H center dot center dot center dot pi interactions were established but also an N-DA-B dative bond between DA and the SWNT was formed, altering the electronic properties of this SWNT. These cooperative interactions after DA adsorption caused much more pronounced changes in the band gaps and conductivities of B,N co-doped (6,5) SWNTs than in those of pure (6,5) SWNT. Our results demonstrated that the sensitivity of a pure (6,5) SWNT to detect dopamine was enhanced in the B,N co-doped (6,5) SWNT.
机译:多巴胺(DA)是一种儿茶酚胺神经递质,可引起某些神经系统疾病,导致帕金森氏病。因此,多巴胺传感器的开发对于这些疾病的诊断很重要。在这里,我们通过DFT计算研究了DA在半导电单壁碳纳米管(SWNT)上的吸附,包括纯的和B,N共掺杂(6,5)的SWNT。我们的结果表明DA可以与纯(6,5)SWNT形成多种分子相互作用。但是,这些相互作用对电子性能的影响有限。因此,纯的(6,5)SWNT的带隙和电导率在DA吸附后没有明显变化。另一方面,关于DA在B,N共掺杂(6,5)SWNT上的吸附,我们发现不仅建立了更强的分子相互作用,例如CH中心点中心点中心点pi相互作用,而且还建立了N在DA和SWNT之间形成了-DA-B亲合键,从而改变了该SWNT的电子特性。与纯(6,5)SWNT相比,DA吸附后的这些协同相互作用导致B,N共掺杂(6,5)SWNT的带隙和电导率变化更为明显。我们的结果表明,在B,N共掺杂(6,5)SWNT中,纯(6,5)SWNT检测多巴胺的敏感性得到了提高。

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