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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Preparation of conductive polypyrrole/TiO _2 nanocomposite via surface molecular imprinting technique and its photocatalytic activity under simulated solar light irradiation
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Preparation of conductive polypyrrole/TiO _2 nanocomposite via surface molecular imprinting technique and its photocatalytic activity under simulated solar light irradiation

机译:表面分子印迹技术制备导电聚吡咯/ TiO _2纳米复合材料及其在模拟太阳光下的光催化活性

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摘要

Conductive polypyrrole/TiO _2 nanocomposites were successfully prepared by surface molecular imprinting technique (MIP-PPy/TiO _2) using methyl orange as template molecule. The samples were characterized by means of SEM, XRD, BET and UV-vis diffuse reflectance spectroscopy. Compared with conductive polypyrrole/TiO _2 nanocomposites which were prepared by in situ method (Control-PPy/TiO _2), the absorption edge of MIP-PPy/TiO _2 red-shifts 10nm, indicating that the band gap energy of MIP-PPy/TiO _2 is narrower than Control-PPy/TiO _2. Moreover, MIP-PPy/TiO _2 nanocomposites show higher adsorption capacity and selectivity for template molecule than Control-PPy/TiO _2 nanocomposites, and the photocatalytic activity of MIP-PPy/TiO _2 is two times of Control-PPy/TiO _2, which is attributed to the introduction of the imprinted cavities on the surface of MIP-PPy/TiO _2 nanocomposites. Therefore, surface molecular imprinting method may be considered as a novel technology for the preparation of PPy/TiO _2.
机译:以甲基橙为模板分子,通过表面分子印迹技术(MIP-PPy / TiO _2)成功制备了导电的聚吡咯/ TiO _2纳米复合材料。通过SEM,XRD,BET和UV-vis漫反射光谱对样品进行表征。与原位制备的导电聚吡咯/ TiO _2纳米复合材料(Control-PPy / TiO _2)相比,MIP-PPy / TiO _2的吸收边红移了10nm,表明MIP-PPy /的带隙能量TiO _2比Control-PPy / TiO _2窄。此外,MIP-PPy / TiO _2纳米复合材料对模板分子的吸附能力和选择性均高于Control-PPy / TiO _2纳米复合材料,并且MIP-PPy / TiO _2的光催化活性是Control-PPy / TiO _2的两倍。这归因于在MIP-PPy / TiO _2纳米复合材料表面引入了压印腔。因此,表面分子印迹法可被认为是制备PPy / TiO _2的新技术。

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