Vlasic Thomas M, Servio Phillip D, Rey Alejandro D
Department of Chemical Engineering , McGill University , Montréal , QC , H3A 0C5 , Canada.
J Phys Chem B. 2019 Jan 31;123(4):936-947. doi: 10.1021/acs.jpcb.8b10223. Epub 2019 Jan 17.
The infrared spectra of sII gas hydrates have been computed using density functional theory for the first time, at equilibrium, and under pressure. It is also the first account of a full vibrational analysis (both guest and host vibrations) for gas hydrates with hydrocarbon guest molecules. Five hydrate structures were investigated: empty, propane, isobutane, ethane-methane, and propane-methane sII hydrates. The computed IR spectra are in good agreement with available experimental and theoretical results. The OH stretching frequencies were found to increase, while the H-bond stretching and HO libration frequencies decreased with an increase in guest size and cage occupancy and with a decrease in pressure. The HO bending vibrations are relatively independent of guest size, cage occupancy, pressure, temperature, and crystal structure. The guest vibrational modes, especially the bending modes, also have minimal pressure dependence. We have also provided more quantitative evidence that gas hydrate material properties are defined by their hydrogen bond properties, by linking H-bond strength to Young's modulus. The results and ensuing vibrational analysis presented in this paper are a valuable contribution to the ongoing efforts into developing more accurate gas hydrate identification and characterization methods in the laboratory, in industry/nature, and even in outer space.
首次使用密度泛函理论在平衡状态及压力条件下计算了sII型气体水合物的红外光谱。这也是对含有烃类客体分子的气体水合物进行全面振动分析(包括客体和主体振动)的首次报道。研究了五种水合物结构:空穴型、丙烷型、异丁烷型、乙烷 - 甲烷型和丙烷 - 甲烷型sII水合物。计算得到的红外光谱与现有的实验和理论结果吻合良好。研究发现,随着客体尺寸、笼占有率的增加以及压力的降低,OH伸缩频率升高,而氢键伸缩频率和HO摆动频率降低。HO弯曲振动相对独立于客体尺寸、笼占有率、压力、温度和晶体结构。客体振动模式,尤其是弯曲模式,对压力的依赖性也很小。我们还通过将氢键强度与杨氏模量联系起来,提供了更多定量证据,证明气体水合物的材料特性由其氢键特性决定。本文给出的结果及后续的振动分析,对在实验室、工业/自然环境甚至外层空间开发更精确的气体水合物识别和表征方法的持续努力做出了宝贵贡献。