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Enhanced visible light photocatalytic activity of polyaniline-crystalline TiO2-halloysite composite nanotubes by tuning the acid dopant in the preparation

机译:通过在制备过程中调节酸掺杂剂来增强聚苯胺-晶体TiO2-卤化物复合纳米管的可见光光催化活性

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Tubular halloysite minerals are used as support for the fabrication of one-dimensional polyaniline-crystalline TiO2-halloysite composite nanotubes in the presence of different acid dopant at low temperature. By simply adjusting the acidity of the reaction system, PANI-crystalline TiO2-HA composite nanotubes composed of anatase, a mixed phase TiO2 and different PANI redox state are obtained. The acidity of reaction system is tuned by HNO3, HCl, H2SO4 and H3PO4, respectively. The traditional thermal treatment for crystalline transformation is not required, thus intact halloysite structure can be guaranteed. The XRD and UV-vis results show that the surface polyaniline sensitization has no effect on the crystalline structure of halloysite and the light response of TiO2 is extended to visible-light regions, respectively. The visible light photocatalytic activity of polyaniline-crystalline TiO2-halloysite with HCl tuning the acidity (pH 0.5) and 1% volume ratio of aniline to titanium isopropoxide in the preparation (P-TH/0.5/1%-HCl) is superior to those of samples with H2SO4, HNO3 and H3PO4 tuning the acidity in the preparation at the same acidity and volume ratio of aniline to titanium isopropoxide. Such superior photocatalytic activity of P-TH/0.5/1%-HCl is mainly due to the enhanced visible light adsorption and electrical conductivity. Furthermore, redoping P-TH/0.5/1%-HCl with H2SO4 and H3PO4 demonstrates its photocatalytic activity decreases, indicating the acid dopants in the preparation and redoping process play a important role to the photocatalytic activity of the polyaniline-crystalline TiO2-halloysite composite nanotubes. Moreover, the supported catalyst allows them to be easily separated from the solution.
机译:管状埃洛石矿物被用作在低温下存在不同酸掺杂剂的情况下制造一维聚苯胺-晶体TiO2-卤化物复合纳米管的载体。通过简单调节反应体系的酸度,可以得到由锐钛矿,混合相TiO2和不同的PANI氧化还原态组成的PANI-结晶TiO2-HA复合纳米管。反应体系的酸度分别用HNO3,HCl,H2SO4和H3PO4调节。不需要传统的用于结晶转变的热处理,因此可以保证完整的埃洛石结构。 XRD和UV-vis结果表明,表面聚苯胺敏化对埃洛石的晶体结构没有影响,TiO2的光响应分别扩展到可见光区域。 HCl调节酸度(pH 0.5)和制剂中苯胺与异丙醇钛的体积比为1%(P-TH / 0.5 / 1%-HCl)的聚苯胺晶体TiO2-卤化物的可见光催化活性优于那些在相同的酸度和苯胺与异丙醇钛的体积比相同的条件下,用H2SO4,HNO3和H3PO4调整样品中的酸度。 P-TH / 0.5 / 1%-HCl如此优异的光催化活性主要是由于增强的可见光吸附性和导电性。此外,用H2SO4和H3PO4重整P-TH / 0.5 / 1%-HCl表明其光催化活性降低,这表明酸掺杂剂在制备和重整过程中对聚苯胺-结晶TiO2-卤化铝石复合材料的光催化活性起重要作用。纳米管。而且,负载的催化剂使它们易于从溶液中分离。

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