Powers Anna, Marsalek Ondrej, Xu Minzhong, Ulivi Lorenzo, Colognesi Daniele, Tuckerman Mark E, Bačić Zlatko
Department of Chemistry, New York University , New York, New York 10003, United States.
Consiglio Nazionale delle Ricerche, Istituto dei Sistemi Complessi , Via Madonna del Piano 10, I-50019, Sesto Fiorentino, Italy.
J Phys Chem Lett. 2016 Jan 21;7(2):308-13. doi: 10.1021/acs.jpclett.5b02611. Epub 2016 Jan 7.
We systematically investigate the manifestations of the condensed-phase environment of the structure II clathrate hydrate in the translation-rotation (TR) dynamics and the inelastic neutron scattering (INS) spectra of an H2 molecule confined in the small dodecahedral cage of the hydrate. The aim is to elucidate the extent to which these properties are affected by the clathrate water molecules beyond the confining cage and the proton disorder of the water framework. For this purpose, quantum calculations of the TR eigenstates and INS spectra are performed for H2 inside spherical clathrate domains of gradually increasing radius and the number of water molecules ranging from 20 for the isolated small cage to more than 1800. For each domain size, several hundred distinct hydrogen-bonding topologies are constructed in order to simulate the effects of the proton disorder. Our study reveals that the clathrate-induced splittings of the j = 1 rotational level and the translational fundamental of the guest H2 are influenced by the condensed-phase environment to a dramatically different degree, the former very strongly and the latter only weakly.
我们系统地研究了结构II笼形水合物的凝聚相环境在被困于水合物小十二面体笼中的H2分子的平动-转动(TR)动力学和非弹性中子散射(INS)光谱中的表现。目的是阐明这些性质在多大程度上受到笼形水分子的影响,这些水分子超出了限制笼以及水框架的质子无序性。为此,对半径逐渐增加且水分子数量从孤立小笼子的20个到超过1800个的球形笼形域内的H2进行了TR本征态和INS光谱的量子计算。对于每个域大小,构建了数百种不同的氢键拓扑结构,以模拟质子无序的影响。我们的研究表明,笼形物诱导的j = 1转动能级分裂和客体H2的平动基频受凝聚相环境的影响程度截然不同,前者影响非常强烈,而后者影响较弱。