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Weakly bound complexes of N2O: An ab initio theoretical analysis toward the design of N2O receptors

机译:N2O的弱结合复合物:从头开始对N2O受体设计的理论分析

摘要

Ab initio calculations at MP2/6-311++G(2d,2p) and MP2/6-311++G(3df,3pd) computational levels have been used to analyze the interactions between nitrous oxide and a series of small and large molecules that act simultaneously as hydrogen bond donors and electron donors. The basis set superposition error (BSSE) and zero point energy (ZPE) corrected binding energies of small N 2O complexes (H2O, NH3, HOOH, HOO dot;, HONH2, HCO2H, H2CO, HCONH 2, H2CNH, HC(NH)NH2, SH2, H 2CS, HCSOH, HCSNH2) vary between -0.93 and -2.90 kcal/mol at MP2/6-311++G(3df,3pd) level, and for eight large complexes of N2O they vary between -2.98 and -3.37 kcal/mol at the MP2/6-311++G(2d,2p) level. The most strongly bound among small N2O complexes (HCSNH 2-N2O) contains a NH··N bond, along with.S → N interactions, and the most unstable (H2S-N2O) contains just S → N interactions. The electron density properties have been analyzed within the atoms in molecules (AIM) methodology. Results of the present study open a window into the nature of the interactions between N 2O with other molecular moieties and open the possibility to design N2O abiotic receptors. © 2007 American Chemical Society.
机译:已使用MP2 / 6-311 ++ G(2d,2p)和MP2 / 6-311 ++ G(3df,3pd)计算级别的从头算计算来分析一氧化二氮与一系列大小不一的相互作用同时充当氢键供体和电子供体的分子。基集叠加误差(BSSE)和零点能量(ZPE)校正了小的N 2O配合物(H2O,NH3,HOOH,HOO点;,HONH2,HCO2H,H2CO,HCONH 2,H2CNH,HC(NH)NH2 ,SH2,H 2CS,HCSOH,HCSNH2)在MP2 / 6-311 ++ G(3df,3pd)水平上在-0.93和-2.90 kcal / mol之间变化,对于N2O的八种大型配合物,它们在-2.98和-之间变化在MP2 / 6-311 ++ G(2d,2p)浓度下为3.37 kcal / mol。在小的N2O络合物中最牢固结合的(HCSNH 2-N2O)具有NH··N键,以及S→N相互作用,而最不稳定的(H2S-N2O)仅具有S→N相互作用。已经在分子内原子(AIM)方法中分析了电子密度特性。本研究的结果为了解N 2O与其他分子部分之间相互作用的性质打开了一个窗口,并为设计N2O非生物受体提供了可能性。 ©2007美国化学学会。

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