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首页> 外文期刊>Catalysis Today >Two-dimensional g-C3N4/TiO2 nanocomposites as vertical Z-scheme heterojunction for improved photocatalytic water disinfection
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Two-dimensional g-C3N4/TiO2 nanocomposites as vertical Z-scheme heterojunction for improved photocatalytic water disinfection

机译:二维G-C3N4 / TiO2纳米复合材料作为垂直Z方案异质结,改善光催化水消毒

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Developing highly active photocatalysts towards effective microorganism inactivation is a green and energy-smart strategy in response to the growing demands to water quality under the background of the water crisis. Here, a vertical face-to-face heterojunction is fabricated by horizontally assembling TiO2 nanosheets with {001} facets exposed on graphitic carbon nitride (g-C3N4) sheets through a facile hydrothermal driving coupling. The vertical heterojunction could almost completely disinfect 103 CFU/mL E. coli within 30 min under solar light, which is more efficient than the physically mixed composite and pure g-C3N4 and TiO2. The two-dimensional (2D) morphology provides ample surface area in forming the vertical heterojunction and enables intimate contact which is advantageous to charge transfer between g-C3N4 and TiO2. A Z-scheme charge transportation mechanism is confirmed through band structure analysis and reactive species (RSs) probing and trapping experiments. In comparison with physically mixed composite and the single-phase counterparts, the nanocomposite based on a Z-scheme electron transfer mode effectively prompts charge pair dissociation and subsequently encourages bacterial inactivation by boosting the generation of RSs. The constructing vertical Z-scheme heterojunction highlights the potential of 2D nanomaterials for accelerated water sterilization.
机译:为有效的微生物灭活发展高度活跃的光催化剂是一种绿色和能源智能战略,以应对水危机的背景下对水质的需求不断增长。这里,通过在石墨氮化物(G-C3N4)片上的{001}小平面通过容易的水热驱动联接器水平组装TiO2纳米片来制造垂直面对面异质结。垂直异质结在太阳光下几乎在30分钟内完全消毒103 CFU / ml大肠杆菌,其比物理混合复合材料和纯G-C3N4和TiO 2更有效。二维(2D)形态在形成垂直异质结方面提供充足的表面积,并且能够实现温和的接触,这有利于G-C3N4和TiO2之间的电荷转移。通过带结构分析和反应性物种(RSS)探测和诱捕实验来确认Z方案电荷运输机理。与物理混合复合材料和单相对应物相比,基于Z形方向电子转移模式的纳米复合材料有效地提示荷对解离,随后通过提高RSS的产生来促进细菌失活。构造垂直Z形方案异质结突出了2D纳米材料用于加速水灭菌的电位。

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