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Understanding surface interactions in aqueous miscible organic solvent treated layered double hydroxides.

机译:了解可与水混溶的有机溶剂处理的层状双氢氧化物的表面相互作用。

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摘要

Layered materials are of interest for use in a wealth of technological applications, many of which require a high surface area for optimal properties and performance. Recently, an industrially scalable method to create high surface area layered double hydroxide (LDH) materials, which may be readily dispersed in non-polar solvents, has been developed. This method involves treatment of LDHs with aqueous miscible organic (AMO) solvents. Here, molecular modeling is exploited to elucidate the AMO solvent–LDH interactions, in order to understand how the dispersion process is facilitated by the AMO treatment. The simulations show how hydrogen-bond networks within the LDH interlayer are disrupted by AMO solvents, leading to delamination.
机译:对于许多技术应用而言,层状材料是令人感兴趣的,其中许多都需要高表面积才能获得最佳性能和性能。近来,已经开发了一种工业上可扩展的方法以产生高表面积的层状双氢氧化物(LDH)材料,其可以容易地分散在非极性溶剂中。该方法涉及用水溶性有机溶剂(AMO)处理LDH。在这里,利用分子建模来阐明AMO溶剂与LDH的相互作用,以便了解AMO处理如何促进分散过程。仿真表明,LDH中间层内的氢键网络如何被AMO溶剂破坏,导致分层。

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