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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Electron Donor-Acceptor Interactions in Ethanol-CO_2 Mixtures: An Ab Initio Molecular Dynamics Study of Supercritical Carbon Dioxide
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Electron Donor-Acceptor Interactions in Ethanol-CO_2 Mixtures: An Ab Initio Molecular Dynamics Study of Supercritical Carbon Dioxide

机译:乙醇-CO_2混合物中电子给体与受体的相互作用:超临界二氧化碳的从头算分子动力学研究

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摘要

The nature of interactions between ethanol and carbon dioxide has been characterized using simulations via the Car-Parrinello molecular dynamics (CPMD) method.Optimized geometries and energetics of free-standing ethanol-CO_2 clusters exhibit evidence for a relatively more stable electron donor-acceptor (EDA) complex between these two species rather than a hydrogen-bonded configuration.This fact has also been confirmed by the higher formation rate of the EDA complex in supercritical carbon dioxide-ethanol mixtures.The probability density distribution of CO_2 molecules around ethanol in the supercritical state shows two high probability regions along the direction of the lone pairs on the oxygen atom of ethanol.The EDA interaction between ethanol and CO_2 as well as that between CO_2 molecules themselves leads to significant deviations from linearity in the geometry of the CO_2 molecule.The vibrational spectra of carbon dioxide obtained from the atomic velocity correlation functions in the bulk system as well as from isolated complexes show splitting of the v_2 bending mode that arises largely from CO_2-CO_2 interactions,with ethanol contributing only marginally because of its low concentration in the present study.The stretching frequency of the hydroxyl group of ethanol is shifted to lower frequencies in the bulk mixture when compared to its gas-phase value,in agreement with experiments.
机译:乙醇和二氧化碳之间相互作用的性质已通过Car-Parrinello分子动力学(CPMD)方法进行了模拟表征。独立的乙醇-CO_2团簇的优化几何结构和能量学表现出相对较稳定的电子供体-受体的证据(这两个物种之间的EDA)络合物而不是氢键构型。这一事实也已被超临界二氧化碳-乙醇混合物中EDA络合物的形成速率更高证实。超临界中乙醇周围CO_2分子的概率密度分布状态显示沿乙醇氧原子上孤对的方向有两个高概率区域。乙醇与CO_2之间的EDA相互作用以及CO_2分子本身之间的EDA相互作用导致CO_2分子的几何结构线性度显着偏离。从t原子速度相关函数获得的二氧化碳振动光谱本体系统以及分离的复合物显示v_2弯曲模式的分裂主要是由CO_2-CO_2相互作用引起的,由于本研究中乙醇的浓度较低,因此乙醇的贡献很小。乙醇羟基的拉伸频率为与实验相比较,与气相值相比,在大体积混合物中移至较低的频率。

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