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Quantum chemical calculations of pristine and modified crystalline cellulose surfaces: benchmarking interactions and adsorption of water and electrolyte

机译:原始和改性结晶纤维素表面的量子化学计算:基准相互作用和水和电解质的吸附

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摘要

In this study, we investigate the hydration of three different functional groups present on cellulose nanocrystal (CNC) surfaces: hydroxyls, carboxylates and sulphates by means of quantum chemical calculation. The performance of several density functional theory (DFT) functionals in reproducing, against higher level MP2 benchmark calculations, relevant non-covalent CNC interactions is also assessed. The effect of a sodium ion on the hydration of the surface functional groups was also investigated. Major restructuring of the hydrogen-bonding network within cellulose was found in the presence of a sodium ion. The calculated binding energy of water with a surface group ion pair was also greater, which indicates a greater hydrophilicity of CNC surfaces in the presence of adsorbed sodium. Cellulose hydrophilic surfaces (1 1 0) and (1 -1 0) were also calculated using DFT methods. The results indicate that the surfaces possess different electrostatic potential maps. Hydrogen bond restructuring is found on the chemically modified surfaces. The adsorption energy of water and electrolyte is also found to be different on each surface.
机译:在这项研究中,我们通过量子化学计算研究了纤维素纳米晶体(CNC)表面上存在的三种不同官能团的水合:羟基,羧酸根和硫酸根。相对于更高级别的MP2基准计算,还评估了几种密度泛函理论(DFT)泛函在再现中的性能,以及相关的非共价CNC相互作用。还研究了钠离子对表面官能团水合的影响。在钠离子的存在下,发现纤维素内氢键网络的主要重组。水与表面基团离子对的计算结合能也更大,这表明在存在吸附钠的情况下CNC表面的亲水性更高。纤维素亲水表面(1 1 0)和(1 -1 0)也使用DFT方法计算。结果表明表面具有不同的静电势图。在化学改性的表面上发现了氢键的重组。还发现水和电解质的吸附能在每个表面上都不同。

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