新型纳米分子ASi、CSi、TSi和Gsi的红外光谱研究

R. Gobato
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引用次数: 4

摘要

生物学摘要这项工作的核心是基于DNA的四个标准碱基:A、C、G和T(腺嘌呤、胞嘧啶、鸟嘌呤、胸腺嘧啶),用硅原子取代碳原子。用最小计算方法通过从头算Hartree-Fock方法测定红外光谱及其峰值吸收频率。硅简单替代碳的选择是由于两者之间的特殊特性。研究了在无碳条件下,CNTP中只有氢、硅、氮和氧原子与DNA、A、C、G和T这四个标准碱基的原子相互作用,从而通过量子化学获得了四种新化合物,在此命名为:ASi、CSi、GSi和TSi。计算计算承认了这种分子形成的可能性,它们的存在是通过量子化学实现的。在从头算无限制和限制Hartree-Fock方法中获得的计算,(UHF和RHF)在使用有效核势(ECP)最小基、UHF CEP-31G(ECP分裂价)和UHF CEP-121G(ECP三分裂基)、CC pVTZ(相关一致价纯基集三重ζ)和6-311G**(3df,3pd)(高斯函数四重ζ基集)的基集中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Infrared Spectrum for the New Nanomolecules ASi, CSi, TSi and Gsi
biolog-Abstract The core of the work is based on the replacement of carbon atoms by silicon atoms, on the basis of four standard bases of DNA: A, C, G and T (adenine, cytosine, guanine, thymine). Determining with minimum computational methods via ab initio Hartree-Fock methods, infrared spectrum and their peak absorbance frequencies. The option for simple replacement of carbon by silicon is due to the peculiar characteristics between both. Atomic interactions under non-carbon conditions were studied, with only the Hydrogen, Silicon, Nitrogen and Oxygen atoms, in CNTP, for the four standard bases of DNA, A, C, G and T, thus obtaining by quantum chemistry four new compounds, named here as: ASi, CSi, GSi and TSi. Computational calculations admit the possibility of the formation of such molecules, their existence being possible via quantum chemistry. Calculations obtained in the ab initio Unrestricted and Restrict Hartree-Fock method, (UHF and RHF) in the set of bases used Effective core potential (ECP) minimal basis, UHF CEP-31G (ECP split valance) and UHF CEP-121G (ECP triple-split basis), CC-pVTZ (Correlation-consistent valence-only basis sets triple-zeta) and 6-311G**(3df, 3pd) (Gaussian functions quadruple-zeta basis sets).
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