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Stability and Metastability of Bromine Clathrate Polymorphs

机译:溴包合物多晶型物的稳定性和亚稳定性

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摘要

Clathrate hydrates are crystals in which water forms a network of fully hydrogen-bonded polyhedral cages that contain small guests. Clathrate hydrates occur mostly in two cubic crystal polymorphs, sI and sII. Bromine is one of two guests that yield a hydrate with the tetragonal structure (TS), the topological dual of the Frank—Kasper a phase. There has been a long-standing disagreement on whether bromine hydrate also forms metastable sI and sII crystals. To date there are no data on the thermodynamic range of stability (e.g., the melting temperatures) of the metastable polymorphs. Here we use molecular dynamics simulations with the coarse-grained model of water mW to (i) investigate the thermodynamic stability of the empty and guest-filled the si, sII, TS, and HS-I hydrate polymorphs, (ii) develop a coarse-grained model of bromine compatible with mW water, and (iii) evaluate the stability of the bromine hydrate polymorphs. The mW model predicts the same relative energy of the empty clathrate polymorphs and the same phase diagram as a function of water—guest interaction than the fully atomistic TIP4P water model. There is a narrow region in water-guest parameter space for which TS is marginally more stable than sI or sII. We parametrize a coarse-grained model of bromine compatible with mW water and use it to determine the order of stability of the bromine hydrate polymorphs. The melting temperatures of the bromine hydrate polymorphs predicted by the coarse-grained model are 281 ± 1 K for TS, 279 ± 1 K for sII, and 276 ± 1 K for si. The closeness of the melting temperatures supports the plausibility of formation of metastable sII and sI bromine hydrates.
机译:笼形水合物是晶体,其中水形成一个由氢键结合的多面体笼状网络,其中包含小客体。笼形水合物主要出现在两个立方晶体多晶型物sI和sII中。溴是产生四方结构(TS)(Frank-Kasper a相的拓扑对偶)的水合物的两种宾体之一。关于溴水合物是否也形成亚稳态的sI和sII晶体,存在长期的分歧。迄今为止,还没有关于亚稳态多晶型物的热力学稳定性范围(例如,熔化温度)的数据。在这里,我们使用分子动力学模拟和水的粗颗粒模型mW(i)研究空的和客体填充的si,sII,TS和HS-1水合物多晶型物的热力学稳定性,(ii)形成粗粒-与mW水相容的溴的颗粒模型,以及(iii)评估溴水合物多晶型物的稳定性。与完全原子化的TIP4P水模型相比,mW模型预测的空包合物多晶型的相对能量和水-客体相互作用的相图相同。来宾参数空间中存在一个狭窄的区域,对于该区域,TS比sI或sII稍微稳定一些。我们对与mW水兼容的溴的粗粒度模型进行参数化,并使用它确定溴水合物多晶型物的稳定性顺序。通过粗粒度模型预测的溴水合物多晶型物的熔融温度对于TS为281±1 K,对于sII为279±1 K,对于si为276±1K。熔化温度的接近性支持了亚稳的sII和sI溴水合物形成的合理性。

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