丙氨酸与碳纳米管相互作用的DFT研究

None Baliram Lone
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引用次数: 0

摘要

生物分子与纳米材料的相互作用对于设计具有广泛实际应用的新材料起着至关重要的作用。应用DFT方法计算了丙氨酸(Ala)分子在单壁碳纳米管(SWNTs)表面的物理吸附机理。热力学提取数据表明l -丙氨酸- swnt(8,0)配合物有利于结合机制。它取决于l -丙氨酸分子的取向,即观察到弱结合。我们计算了SWNT表面吸附能、HOMO-LUMO间隙和态密度(DOS)等参数。氨基酸l -丙氨酸由于其CH3, -COOH和-NH2官能团负责释放能量。Ala-SWNT(8,0)生物分子复合物之间不存在键合相互作用。我们的研究结果对于l -丙氨酸靶向给药的生物医学应用非常有用,除此之外,生物传感器[1]还可以用于检查患者体内丙氨酸的浓度水平,以避免延误治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DFT Study of Alanine Interactions with Carbon Nanotubes
The biomolecule interactions with nanomaterials play crucial role for designing new material in wide range of practical applications. The physical adsorption mechanism of Alanine (Ala) molecules on surface of single walled carbon nanotubes (8,0) (SWNTs) were quantum chemically computed by applying DFT method. Thermodynamical extracted data indicates the complex of L-alanine-SWNT (8,0) favours binging mechanism. It depends on orientation of L-alanine molecules i.e., the weak binding is observed. We calculated various parameters including adsorption energy, HOMO-LUMO gap and density of states (DOS) on surface of SWNT. The amino acids L-alanine is responsible to release energy owing to its CH3, -COOH and -NH2 functional groups. There are no bonded interactions between Ala-SWNT (8,0) biomolecular complex system. Our results are useful in biomedical applications specifically for targeted drug delivery of L-Alanine, besides to this, the biosensors[1] can be used to check concentration level of alanine in patients to avoid delay in treatment as well.
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