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High-level theoretical study of the evolution of abundances and interconversion of glycine conformers

High-level theoretical study of the evolution of abundances and interconversion of glycine conformers
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摘要 The relative conformer energies of glycine are evaluated by using a focal point analysis expressed as(HF→MP2→MP3→CCSD→CCSD(T)).The conformer abundances at various temperatures(298–500 K) are calculated based on the relative energies and Boltzmann statistical thermostatistical analysis with and without considering internal hindered rotations.A comparison between the available Raman spectrum and the electron momentum spectrum confirms that the influence of rigid-rotor hindered rotation on the conformational proportions of glycine is considerable,especially for the IIIp structure.The conformational interconversions are discussed.It is found that with increasing temperature,the mole fraction of IIn keeps constant and Ip structure can convert into IVn and IIIp,leading to the decrease in the weight of Ip and the increase in the weights of IVn and IIIp conformers,which is in accordance with experimental observations. The relative conformer energies of glycine are evaluated by using a focal point analysis expressed as(HF→MP2→MP3→CCSD→CCSD(T)).The conformer abundances at various temperatures(298–500 K) are calculated based on the relative energies and Boltzmann statistical thermostatistical analysis with and without considering internal hindered rotations.A comparison between the available Raman spectrum and the electron momentum spectrum confirms that the influence of rigid-rotor hindered rotation on the conformational proportions of glycine is considerable,especially for the IIIp structure.The conformational interconversions are discussed.It is found that with increasing temperature,the mole fraction of IIn keeps constant and Ip structure can convert into IVn and IIIp,leading to the decrease in the weight of Ip and the increase in the weights of IVn and IIIp conformers,which is in accordance with experimental observations.
作者 刘凡 于静 黄艳茹 Fan Liu;Jing Yu;Yan-Ru Huang(College of Science, Liaoning Shihua University, Fushun 113001, China)
机构地区 College of Science
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第4期264-271,共8页 中国物理B(英文版)
基金 Project supported by the Young Scientists Funds of the National Natural Science Foundation of China(Grant Nos.11404154 and 11304136)
关键词 GLYCINE CONFORMATION ABUNDANCE INTERCONVERSION glycine, conformation, abundance, interconversion
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