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Poster Theory and modeling at multiple scales for understanding supramolecular self-assembly, solvation effects, and gelation

机译:海报理论和多尺度建模,用于理解超分子自组装,溶剂化作用和凝胶化

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We will present an overview of the multiscale modeling methods developed and employed in the Theory and Modeling Group at NINT, in particular, these attractive to the prediction of supramolecular interaction and solvation effects. Computational methodology based on a combination of the Koopmans' theorem and the multiconfigurational self-consistent field (MCSCF) method that we are developing [1] can be extended to enable calculation of Fukui functions for large systems. The statistical-mechanical three-dimensional reference interaction site model (3D-RISM) theory of solvation [2] is employed for prediction of the effect of nanocrystalline cellulose surface modification on its dispersion in non-polar solvents and ionic liquids [3].
机译:我们将概述在NINT的理论和建模小组开发和采用的多尺度建模方法,尤其是这些对超分子相互作用和溶剂化作用的预测具有吸引力的方法。基于库普曼定理和我们正在开发的多配置自洽场(MCSCF)方法的组合的计算方法可以扩展以支持大型系统的Fukui函数计算。统计-机械三维参考相互作用位点模型(3D-RISM)的溶剂化理论[2]用于预测纳米晶纤维素表面改性对其在非极性溶剂和离子液体中的分散性的影响[3​​]。

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