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Tip-sample interaction force mediated by water molecules for AFM in water: Three-dimensional reference interaction site model theory

机译:水分子对水中AFM介导的尖端-样品相互作用力:三维参考相互作用位点模型理论

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摘要

Force curves and force maps of atomic force microscopy measurements for hypothetical nanostrucutres in aqueous environment have been simulated using the three-dimensional reference interaction site model (3D-RISM) theory. Various unexpected features of water mediated force are found including the directions of forces opposite to those in vacuum with local charges on both the tip and the sample. From those features and the density distributions of water around the peripheral of nanostructures obtained by the 3D-RISM theory, a close correlation has been found between the free energy of the system and the intactness of water density distributions around the tip and the sample surface. Moreover, it is shown that the 3D-RISM theory is much more precise for APM simulations in water than the RISM theory from the fact that some of the important features cannot be described by the RISM theory.
机译:使用三维参考相互作用位点模型(3D-RISM)理论模拟了假设的纳米结构在水环境中的原子力显微镜测量的力曲线和力图。发现了水介导的力的各种出乎意料的特征,包括与真空中相反的力的方向,在尖端和样品上均带有局部电荷。根据这些特征和通过3D-RISM理论获得的纳米结构外围周围水的密度分布,发现系统的自由能与尖端和样品表面周围水密度分布的完好性之间存在密切的相关性。此外,由于某些重要特征无法用RISM理论描述,因此表明3D-RISM理论在水中进行APM模拟要比RISM理论更为精确。

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