首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Theoretical Study on the Gas-Phase Acidity of Multiple Sites of Cu~+ -Adenine and Cu~(2+)-Adenine Complexes
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Theoretical Study on the Gas-Phase Acidity of Multiple Sites of Cu~+ -Adenine and Cu~(2+)-Adenine Complexes

机译:Cu〜+-腺嘌呤和Cu〜(2 +)-腺嘌呤配合物多个位点气相酸度的理论研究

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The acidities of multiple sites in Cu~+-adenine and Cu~(2+)-adenine complexes have been investigated theoretically. To compare, the acidities of adenine (A) and adenine radical cation (A~(·+)) have also been included. The results clearly indicate that the acidities of C-H and N-H groups in Cu~(+/2+)-adenine are significantly enhanced relative to the neutral adenine. The acidic order for a given site on adenine and adenine derivatives is as follows: Cu~(2+)-adenine>AA~(·+)>Cu~+-adenine>A. For Cu~+-adenine and Cu~(2+)-adenine, N3-coordination exhibits N9-H acid, and N1- and N7-coordination exhibits N6-Ha and N6-Hb acid, respectively. Additionally, it is found that C2-H group is surprisingly acidic in the coordination complexes. Calculations in aqueous solution reveal that our results can be extrapolated to aqueous solution. Analyses of the electronic properties interpret the highest acidity of Cu~(2+)-adenine among the adenine derivatives studied. Also, Electrostatic potential calculations of [A(-H+)]~- and [A(-H+)]~' indicate that the removal of Ha or Hb from the amino group favors the bidentate coordination, which provides a dative bond from the deprotonated N and the original coordination ligand to copper ion besides the electrostatic interaction between them and thereby stabilizes the [A(-H+)]~- [A(-H+)]~.. NBO analysis confirms the electrostatic potential result.
机译:从理论上研究了Cu〜+-腺嘌呤和Cu〜(2 +)-腺嘌呤配合物中多个位点的酸度。为了比较,还包括腺嘌呤(A)和腺嘌呤自由基阳离子(A〜(·+))的酸度。结果清楚地表明,Cu〜(+ / 2 +)-腺嘌呤中C-H和N-H基团的酸度相对于中性腺嘌呤显着提高。腺嘌呤和腺嘌呤衍生物上给定位点的酸性顺序如下:Cu〜(2 +)-腺嘌呤> AA〜(·+)> Cu〜+-腺嘌呤> A。对于Cu +-腺嘌呤和Cu 2-(2 +)-腺嘌呤,N 3-配位显示N9-H酸,N 1-和N7配位显示N 6-Ha和N 6-Hb酸。另外,发现C2-H基团在配位络合物中令人惊讶地是酸性的。在水溶液中的计算表明,我们的结果可以外推到水溶液中。电子性质的分析解释了所研究的腺嘌呤衍生物中Cu〜(2 +)-腺嘌呤的最高酸度。同样,[A(-H +)]〜-和[A(-H +)]〜'的静电势计算结果表明,从氨基中除去Ha或Hb有利于双齿配位,这为去质子化提供了一个键。 N和铜离子的原始配位配体之间除了具有静电相互作用外,还使[A(-H +)]〜-[A(-H +)]〜稳定。.NBO分析证实了静电势的结果。

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