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Direct evidence for modified solvent structure within the hydration shell of a hydrophobic amino acid.

机译:在疏水性氨基酸的水合壳内改性溶剂结构的直接证据。

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摘要

Neutron scattering experiments are used to determine scattering profiles for aqueous solutions of hydrophobic and hydrophilic amino acid analogs. Solutions of hydrophobic solutes show a shift in the main diffraction peak to smaller angle as compared with pure water, whereas solutions of hydrophilic solutes do not. The same difference for solutions of hydrophobic and hydrophilic side chains is also predicted by molecular dynamics simulations. The neutron scattering curves of aqueous solutions of hydrophobic amino acids at room temperature are qualitatively similar to differences between the liquid molecular structure functions measured for ambient and supercooled water. The nonpolar solute-induced expansion of water structure reported here is also complementary to recent neutron experiments where compression of aqueous solvent structure has been observed at high salt concentration.
机译:中子散射实验用于确定疏水和亲水氨基酸类似物水溶液的散射曲线。与纯水相比,疏水性溶质的溶液显示出主衍射峰向较小角度的偏移,而亲水性溶质的溶液则没有。疏水性和亲水性侧链溶液的相同差异也通过分子动力学模拟预测。疏水性氨基酸水溶液在室温下的中子散射曲线在质量上类似于为环境和过冷水测得的液体分子结构功能之间的差异。本文报道的非极性溶质诱导的水结构膨胀也与最近的中子实验相辅相成,在中子实验中,在高盐浓度下已观察到含水溶剂结构的压缩。

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