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首页> 外文期刊>Catalysis science & technology >Unique 1D/3D K2Ti6O13/TiO2 micro-nano heteroarchitectures: controlled hydrothermal crystal growth and enhanced photocatalytic performance for water purification
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Unique 1D/3D K2Ti6O13/TiO2 micro-nano heteroarchitectures: controlled hydrothermal crystal growth and enhanced photocatalytic performance for water purification

机译:独特的1 d / 3 d K2Ti6O13 /二氧化钛微纳heteroarchitectures:控制的热液晶体生长和增强光催化性能的水净化

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摘要

Semiconductor photocatalysis towards pollutant degradation driven by solar energy is regarded as a promising technology to solve global energy and environmental problems. In this work, three-dimensional (3D) TiO2 microflowers (MFs) were hybridized with one-dimensional (1D) K2Ti6O13 nanobelts (NBs) to construct novel hierarchical Ti-O-based micro-nano heteroarchitectures (HAs) using a controlled hydrothermal route. The well-developed TiO2 MFs were featured with their petals consisting of several 1D nanostructures with the width of around 100-200 nm. Particularly, the crystal growth mechanism of the unique 1D/3D K2Ti6O13/TiO2 HAs was proposed based on the time-dependent experiments combined with structural and morphological characterizations. Unexpectedly, the optimized K2Ti6O13/TiO2 composites exhibited much higher photocatalytic performance for the degradation of organic dyes and antibiotics under simulated sunlight irradiation, which was more than 2-folds higher than that of single K2Ti6O13 and TiO2 catalysts. Moreover, the photocatalytic activity of K2Ti6O13/TiO2 composites for dye degradation was higher than that of commercial P25 under visible light irradiation (lambda > 400 nm). Apart from the advantages of hierarchical micro-nano HAs in improving light adsorption and surface area, the enhanced photocatalytic properties could be particularly attributed to the formation of K2Ti6O13/TiO2 heterojunctions that offered available interfacial channels for charge transfer and separation, as proved by the photoluminescence and photoelectrochemical measurements. Furthermore, good stability and long-term durability of the composite photocatalysts were also determined by cycling tests, mainly resulting from the tightly combined K2Ti6O13/TiO2 heterostructures. This work can be extended to design other hierarchical TiO2-based micro-nano hybrids with superior photocatalytic properties for environmental purification and solar energy conversion.
机译:半导体光催化对污染物降解被认为是由太阳能一种有希望的技术来解决全球能源和环境问题。三维(3 d)二氧化钛microflowers (MFs)与一维(1 d)杂化K2Ti6O13纳米(国家统计局)构建小说分层Ti-O-based微纳heteroarchitectures()使用的控制热液的路线。特色与花瓣组成的吗几个一维纳米结构的宽度100 - 200 nm左右。生长机理独特的1 d / 3 d提出了基于K2Ti6O13 /二氧化钛时间实验结合结构和形态特征。出乎意料,优化K2Ti6O13 /二氧化钛复合材料表现出更高的光催化对有机染料的降解性能和抗生素在模拟太阳光辐照,高出2倍以上比单一K2Ti6O13和二氧化钛催化剂。此外,光催化活性K2Ti6O13 /二氧化钛复合材料对染料降解高于商业P25下可见光照射(λ> 400海里)。分层微纳的优势提高光吸附表面积,提高光催化性能尤其是归因于的形成K2Ti6O13 /二氧化钛垂直界面提供渠道转移和分离,证明的光致发光、光电化学测量。长期耐久性的综合论文也由骑自行车测试,主要源于紧密结合K2Ti6O13 /二氧化钛异质结构。扩展到其他层次TiO2-based设计微纳与优越的光催化混合动力车环境净化和属性太阳能能量转换。

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