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Molecular dynamics modelling of tethered organics in confined spaces

机译:密闭空间中拴系有机物的分子动力学建模

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A computational method for constructing and evaluating the dynamic behaviour of functionalised hexagonal mesoporous silica (HMS) MCM-41 models is reported. HMS with three pore diameters (1.7, 2.2 and 2.9 nm) were prepared, and, from these, two series of derivative structures were constructed - one with 1,3-diphenylpropyl (DPP) tethers and the other with smaller dimethylsilyl (DMS) tethers attached to the mesopores' internal surfaces. Comparison with experimental data shows that simulation results correctly predict the maximum tether density that can be achieved for each tether and each pore diameter. For the smaller pore models, the extent of DPP functionalisation that can be achieved is limited by the available pore volume. However, for the larger pore model, the extent of functionalisation is limited by access to potentially reactive sites on the pore surface. The dynamic behaviour of the models was investigated over a range of temperatures (240-648 K). At lower temperatures (<400 K), the mobility of DPP tethers in the 2.9 nm model is actually less than that observed in either the 2.2 nm model or the 1.7 nm model due to the extensive non-bonded interactions that are able to develop between tethers and the silica surface at this diameter. At higher temperatures, the free ends of these tethers break away from the surface, extend further into the pore space and the DPP mobility in the 2.9 nm model is higher than in the smaller pore systems.
机译:报告了一种用于构建和评估功能化六角形介孔二氧化硅(HMS)MCM-41模型的动力学行为的计算方法。制备了具有三个孔径(1.7、2.2和2.9 nm)的HMS,并从中构建了两个系列的衍生结构-一个带有1,3-二苯丙基(DPP)系链,另一个带有较小的二甲基甲硅烷基(DMS)系链附着在中孔的内表面。与实验数据的比较表明,模拟结果正确地预测了每个绳索和每个孔径可以实现的最大绳索密度。对于较小的孔模型,可以实现的DPP功能化程度受到可用孔体积的限制。但是,对于较大的孔隙模型,功能化程度受到接近孔隙表面潜在的反应位点的限制。在一定温度范围(240-648 K)上研究了模型的动态行为。在较低的温度(<400 K)下,由于能够在两纳米之间形成广泛的非键相互作用,因此2.9 nm模型中DPP系链的迁移率实际上低于2.2 nm模型或1.7 nm模型中的迁移率。系绳和二氧化硅表面处于该直径。在较高的温度下,这些系链的自由端会脱离表面,进一步延伸到孔隙空间中,并且2.9 nm模型中的DPP迁移率高于较小的孔隙系统。

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