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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Structure of Hydrated Crystal (L-c), Tilted Gel (L-beta '), and Liquid Crystal (L-alpha) Phases of Linear Alkylbenzene Sulfonate (LAS) Studied by X-ray Diffraction and Molecular Dynamics Simulation
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Structure of Hydrated Crystal (L-c), Tilted Gel (L-beta '), and Liquid Crystal (L-alpha) Phases of Linear Alkylbenzene Sulfonate (LAS) Studied by X-ray Diffraction and Molecular Dynamics Simulation

机译:通过X射线衍射和分子动力学模拟研究的水合晶体(L-C),倾斜凝胶(L-β')和线性烷基苯磺酸酯(LAS)的液晶(L-α)相

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Precipitation of crystals in aqueous surfactant solutions hampers their use as liquid detergents. Understanding the molecular structure that causes the crystal formation is of key importance in designing a new surfactant. In this study, we first identified the hydrated crystal (L-c) structure of linear alkylbenzene sulfonate (LAS) at ambient temperature by combining X-ray diffraction (XRD) with all atom molecular dynamics (MD) simulation. It is known that the L-c domain involves only a stoichiometrically small number of water molecules, and the water number of existing interlamellar layers may change when the system shows the thermally induced phase transition. Therefore, we explored possible crystal structures with five different hydration levels of 0, 0.5, 1, 2, and 4 water per LAS using MD simulations with the d-spacing measured by XRD. Among them, only the diffraction pattern calculated for the monohydrate LAS well coincided with the experimental diffraction pattern at 300 K. A structural change of the monohydrate from the L-c phase to the tilted gel (L-beta') phase was also observed by heating from 300 to 360 K in the MD simulations, where a cross-sectional structure of the alkyl groups of LAS molecules changed from a face-centered rectangular lattice to a hexagonal one. Further heating to 400 K resulted in a disordered liquid crystal (L-alpha) phase. Thus, configurational changes of the detergent during thermally induced phase transitions were well explored and characterized by MD simulations with the aid of XRD data. This approach can be broadly applied where we explore the phase behavior of hydrated crystals of any surfactant species.
机译:在水性表面活性剂溶液中晶体的沉淀喷管它们用作液体洗涤剂。理解导致晶体形成的分子结构在设计新的表面活性剂方面具有重要性。在本研究中,首先通过将X射线衍射(XRD)与所有原子分子动力学(MD)模拟组合,在环境温度下鉴定了线性烷基苯磺酸盐(LAS)的水合晶体(LAS)。众所周知,L-C结构域仅涉及化学计量少量的水分子,并且当系统显示热诱导的相变时,现有层面层的水数可能会改变。因此,我们使用MD模拟具有通过XRD测量的D-间距的MD仿真,每次LA探讨具有0,0.5,1,2和4个水的五种不同的水合水平的可能晶体结构。其中,只有为单水合物Las的衍射图谱孔均匀地与300k的实验衍射图一致。通过加热,还观察到从LC相到倾斜凝胶(L-β')相的一水合物的结构变化在MD模拟中300至360 k,其中LAS分子的烷基的横截面结构从面心为中心的矩形晶格变为六边形。进一步加热至400k导致无序液晶(L-α)相。因此,在热诱导的相变期间的洗涤剂的配置变化是良好的探索和特征在于MD仿真,借助于XRD数据。这种方法可以广泛地应用,在我们探索任何表面活性剂物种的水合晶体的相行为。

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