论文标题

乙炔的分子结构,动力学和振动光谱:氨(1:1)在泰坦条件下塑料共晶

Molecular Structure, Dynamics, and Vibrational Spectroscopy of the Acetylene:Ammonia (1:1) Plastic Co-Crystal at Titan Conditions

论文作者

Thakur, Atul C., Remsing, Richard C.

论文摘要

土星月亮泰坦具有厚实的有机气氛,预计小有机分子的凝结相位在其表面上是稳定的。特别重要的是有机物的结晶阶段,即冷冻剂,它们可以在泰坦的地面化学和地质过程中起重要作用。这些冷冻剂中的许多可以表现出丰富的相行为,尤其是多组分的冷冻剂,其组分分子具有多个固体相。这样的冷冻矿物是乙炔:氨(1:1)共晶,在这里我们使用基于密度的基于功能理论的依从性分子动力学模拟来量化其在泰坦条件下的结构和动力学。我们表明,乙炔:氨(1:1)共晶体是在泰坦条件下的塑料共晶(或旋转阶段),因为氨分子在定向上无序。此外,该共晶体中的氨分子在皮秒时尺度上旋转,并且这种旋转伴随着氨水和乙炔π系统之间氢键的破裂和改革。通过比较不同理论水平的两个密度函数近似值的预测以及通过与实验测量非常吻合的红外和拉曼光谱的预测来支持我们的预测的鲁棒性。我们预计这些结果将有助于理解泰坦表面的地球化学。

The Saturnian moon Titan has a thick, organic-rich atmosphere, and condensed phases of small organic molecules are anticipated to be stable on its surface. Of particular importance are crystalline phases of organics, known as cryominerals, which can play important roles in surface chemistry and geological processes on Titan. Many of these cryominerals could exhibit rich phase behavior, especially multicomponent cryominerals whose component molecules have multiple solid phases. One such cryomineral is the acetylene:ammonia (1:1) co-crystal, and here we use density functional theory-based ab initio molecular dynamics simulations to quantify its structure and dynamics at Titan conditions. We show that the acetylene:ammonia (1:1) co-crystal is a plastic co-crystal (or rotator phase) at Titan conditions because the ammonia molecules are orientationally disordered. Moreover, the ammonia molecules within this co-crystal rotate on picosecond timescales, and this rotation is accompanied by the breakage and reformation of hydrogen bonds between the ammonia hydrogens and the π-system of acetylene. The robustness of our predictions is supported by comparing the predictions of two density functional approximations at different levels of theory, as well as through the prediction of infrared and Raman spectra that agree well with experimental measurements. We anticipate that these results will aid in understanding geochemistry on the surface of Titan.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源