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AFM Slip Length Measurements for Water at Selected Phyllosilicate Surfaces

机译:AFM在所选字节硅酸盐表面的水的滑动长度测量

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Most reported slip length measurements have been made at the surfaces of synthetic materials and modified synthetic materials. In contrast, few slip length measurements at the surface of unmodified natural mineral surfaces have been reported. In this regard, flow at the silica face surfaces of the phyllosilicate minerals, talc and mica, was considered. A slip boundary condition was expected at the nonpolar hydrophobic silica surface of talc leading to enhanced flow, and a no-slip boundary condition was expected at the hydrophilic silica surface of mica. Atomic force microscopy (AFM) slip length measurements were made at the talc and mica surfaces. The slip length results for the hydrophobic silica surface of talc were contrasted to the results for the hydrophilic silica surface of mica (no-slip flow). The results are discussed based on molecular dynamics simulations (MDS), as reported in the literature, and AFM images of surface nanobubbles. For nonpolar hydrophobic surfaces (such as talc), it is doubtful that the MDS interfacial water structure and the water exclusion zone (3.2 ?) account for the AFM slip flow with slip lengths as great as 95 nm. Rather, a better explanation for the AFM slip flow condition is based on reduced interfacial viscosity due to the presence of dissolved gas and the accommodation of pancake nanobubbles at the talc surface having a height dimension of magnitude similar to the slip length.
机译:已经在合成材料的表面和改性合成材料的表面上进行了大多数报道的滑动长度测量。相反,已经报道了未修饰的天然矿物表面表面的少量滑动长度测量。在这方面,考虑了在碱基矿物质,滑石和云母的二氧化硅面表面的流动。在滑石的非极性疏水二氧化硅表面预期滑动边界条件,其导致流动增强,并且在云母的亲水性二氧化硅表面处期望无滑动边界条件。在滑石和云母表面上制作原子力显微镜(AFM)滑动长度测量。滑石的疏水性二氧化硅表面的滑动长度结果与云母亲水性二氧化硅表面的结果对比(无滑移流动)。基于分子动力学模拟(MDS)讨论的结果,如文献中所报告的,和表面纳米泡的AFM图像。对于非极性疏水性表面(如滑石),符合MDS界面水结构和水禁区(3.2?)占AFM滑动流量,滑动长度与95nm一样。相反,由于存在溶解气体的存在和在滑石表面上的滑石表面上的阳极块的存在,更好地解释AFM滑动流动条件的界面粘度降低。

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