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Hydrothermal Processing Of Dye-adsorbing One-dimensional Hydrogen Titanate

机译:染料吸附一维钛酸氢盐的水热加工

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One-dimensional hydrogen titanate consisting of mixed nanobelts, nanotubes, and nanorods have been processed via hydrothermal followed by high temperature calcination. The processed products have been characterized via transmission electron microscope, X-ray diffraction, spectrophotometer, spectrofluorom-eter, and Brunauer-Emmett-Teller surface-area measurement techniques for analyzing their morphology, structure, specific surface-area, band-gap, and photoluminescence. The dye-adsorption (in the dark) and photocatalytic activity (under ultraviolet-radiation exposure) of hydrothermally processed one-dimensional hydrogen titanate have been examined using methylene blue as a model catalytic dye agent. Under the present processing and test conditions, it is demonstrated that one-dimensional hydrogen titanate is a better dye-adsorbent than a photocatalyst due to its higher specific surface-area and relatively lower crystallinity.
机译:一维钛酸氢盐由混合的纳米带,纳米管和纳米棒组成,已通过水热处理,然后进行高温煅烧。通过透射电子显微镜,X射线衍射,分光光度计,分光光度计和Brunauer-Emmett-Teller表面积测量技术对加工产品进行了表征,以分析其形态,结构,比表面积,带隙和光致发光。使用亚甲基蓝作为模型催化染料,研究了水热处理的一维钛酸氢盐的染料吸附(在黑暗中)和光催化活性(在紫外线辐射下)。在目前的加工和测试条件下,已证明一维钛酸氢盐由于其较高的比表面积和相对较低的结晶度而比光催化剂是更好的染料吸附剂。

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