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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Stepwise Hydration of 2-Aminooxazole: Theoretical Insight into the Structure, Finite Temperature Behavior and Proton-Induced Charge Transfer
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Stepwise Hydration of 2-Aminooxazole: Theoretical Insight into the Structure, Finite Temperature Behavior and Proton-Induced Charge Transfer

机译:2-氨基恶唑的逐步水合:结构,有限温度行为和质子诱导的电荷转移的理论见解

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It was recently suggested that 2-aminooxazole (AO) could contribute to the formation of RNA nucleotides on primitive earth. In this article we have considered by means of computational modeling the influence of microhydration on the structural and spectral properties of this potential prebiotic molecule. The stable structures of AO(H2O)(n) were obtained first by sampling the potential energy landscapes of clusters containing up to n = 20 water molecules, using a simple but reasonably accurate force field and replica-exchange molecular dynamics simulations. Through reoptimization using an explicit description of electronic structure at the level of density functional theory with the M06-2X functional, the formation energies, ionization energies and electron affinities were determined in the vertical and adiabatic treatments, as well as vibrational and optical spectra covering the far-IR, mid-IR, and lower part of the UV ranges. The results generally show a clear segregation between the aminooxazole solute and the water molecules, a water cluster being formed near the nitrogen and amino group side leaving the hydrocarbon side dry even at temperatures corresponding to the liquid state. The spectral signatures generally concur and show distinct contributions of the solute and solvent, spectral shifts to lower energies being in agreement with earlier calculations in bulk solvent. We have also investigated the importance of microhydration on the charge transfer cross section upon collision with a proton, thereby extending an earlier investigation on the bare AO molecule. The presence of water molecules generally reduces the propensity for charge transfer at small sizes, but the influence of the solvent steadily decreases in larger droplets.
机译:最近有人提出2-氨基恶唑(AO)可能有助于原始地球上RNA核苷酸的形成。在本文中,我们已经通过计算建模的方式考虑了微水合作用对这种潜在的益生元分子的结构和光谱性质的影响。通过使用简单但合理准确的力场和复制-交换分子动力学模拟,首先对包含多达n = 20个水分子的簇的势能图进行采样,从而获得AO(H2O)(n)的稳定结构。通过在具有M06-2X功能的密度泛函理论水平上使用电子结构的显式描述进行重新优化,确定了垂直和绝热处理中的形成能,电离能和电子亲和力,以及覆盖了该结构的振动和光谱远红外,中红外和较低的紫外线范围。结果通常显示出氨基恶唑溶质与水分子之间明显的偏析,在氮和氨基侧附近形成水簇,即使在对应于液态的温度下,烃侧也干燥。光谱特征通常一致,并显示出溶质和溶剂的不同贡献,向较低能量的光谱位移与本体溶剂中的较早计算相符。我们还研究了质子碰撞时电荷转移截面上微水化的重要性,从而扩展了对裸AO分子的早期研究。水分子的存在通常会减小小尺寸电荷转移的趋势,但是在较大的液滴中,溶剂的影响会稳定降低。

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