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Factors Governing Adsorption property and Surface Reactivity of Float Glass

机译:管玻璃吸附性能和表面反应性的因素

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Adsorption property and surface reactivity on the top and the bottom faces of float glass were compared, and factors governing these properties were investigated. It was found that both the adsorption property with organic substances and the reactivity with silane coupling reagents were higher on the bottom face compared with the top face. It was also revealed by time-of-flight secondary ion mass spectrometry (TOF- SIMS) measurements that the difference in these properties was attributed to the density of surface OH group as adsorptive and reactive sites. The high density of surface OH group on the bottom face was explained in terms of the large surface concentration of tin penetrated into the glass during float process. The reason for the surface OH group density dependence on the tin concentration can be explained by X-ray photoelectron spectroscopy (XPS) O1s peak analysis: the SnOH group easily forms as compared with the SiOH group because of the high reactivity with water due to high Lewis basicity. Furthermore, it was found that the surface reactivity of various metal oxide materials was also explainable on the basis of Lewis basicity governing the formation of surface OH group. The analytical results leading to the successful control of the adsorption property and surface reactivity were discussed in detail.
机译:比较了浮法玻璃顶部和底面的吸附性和表面反应性,研究了控制这些性质的因子。结果发现,与顶面相比,底面均具有有机物质和与硅烷偶联试剂的反应性的吸附性能较高。它还通过飞行时间二次离子质谱(TOF-SIMS)测量来揭示,这些性质的差异归因于表面OH基团的密度作为吸附和反应性位点。在浮法过程中渗透到玻璃中的大表面浓度方面,解释了底面上的高密度OH基团。表面OH基团密度对锡浓度的原因可以通过X射线光电子能谱(XPS)O1S峰值分析来解释:SnOH基团与SiOH组相比,由于高反应性,由于高电平,因此与SiOH集团相比。刘易斯的基础。此外,发现各种金属氧化物材料的表面反应性也是在控制表面OH基团形成的lewis碱度的基础上算出的。详细讨论了导致成功控制吸附性和表面反应性的分析结果。

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