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The Water Hexamer: Cage, Prism, or Both. Full Dimensional Quantum Simulations Say Both

机译:水六边形:笼子,棱镜或两者兼而有之。全尺寸量子仿真可以同时做到

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摘要

State-of-the-art quantum simulations on a full-dimensional ab initio potential energy surface are used to characterize the properties of the water hexamer. The relative populations of the different isomers are determined over a wide range of temperatures. While the prism isomer is identified as the global minimum-energy structure, the quantum simulations, which explicitly include zero-point energy and quantum thermal motion, predict that both the cage and prism isomers are present at low temperature down to almost 0 K. This is largely consistent with the available experimental data and, in particular, with very recent measurements of broadband rotational spectra of the water hexamer recorded in supersonic expansions.
机译:在全尺寸从头算势能面上进行的最新量子模拟用于表征水六聚体的特性。在较宽的温度范围内测定不同异构体的相对种群。虽然将棱镜异构体确定为全局最小能量结构,但明确包含零点能量和量子热运动的量子模拟预测,笼型和棱镜异构体均在低至接近0 K的低温下存在。在很大程度上与现有的实验数据一致,特别是与超音速膨胀中记录的水六聚体的宽带旋转光谱的最新测量结果一致。

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  • 来源
    《Journal of the American Chemical Society》 |2012年第27期|p.11116-11119|共4页
  • 作者单位

    Department of Chemistry and Cherry L. Emerson Center for Scientific Computation, Emory University, Atlanta, Georgia 30322, United States,Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, California 92093, United States;

    Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, California 92093, United States;

    Department of Chemistry and Cherry L. Emerson Center for Scientific Computation, Emory University, Atlanta, Georgia 30322, United States;

    Department of Chemistry and Cherry L. Emerson Center for Scientific Computation, Emory University, Atlanta, Georgia 30322, United States;

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  • 原文格式 PDF
  • 正文语种 eng
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