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离子液体辅助化学策略制备具有表面氟化和氮化以及高能晶面暴露的TiO₂空心纳米立方体组装体以增强光催化性能。

Ionic liquid assisted chemical strategy to TiO2 hollow nanocube assemblies with surface-fluorination and nitridation and high energy crystal facet exposure for enhanced photocatalysis.

作者信息

Yu Shengli, Liu Baocang, Wang Qin, Gao Yuxi, Shi Ying, Feng Xue, An Xiaoting, Liu Lixia, Zhang Jun

机构信息

College of Chemistry and Chemical Engineering & Inner Mongolia Key Lab of Nanoscience and Nanotechnology, Inner Mongolia University , Hohhot 010021, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2014 Jul 9;6(13):10283-95. doi: 10.1021/am5016809. Epub 2014 Jun 19.

Abstract

Realization of anionic nonmetal doping and high energy crystal facet exposure in TiO2 photocatalysts has been proven to be an effective approach for significantly improving their photocatalytic performance. A facile strategy of ionic liquid assisted etching chemistry by simply hydrothermally etching hollow TiO2 spheres composed of TiO2 nanoparticles with an ionic liquid of 1-butyl-3-methylimidazolium tetrafluoroborate without any other additives is developed to create highly active anatase TiO2 nanocubes and TiO2 nanocube assemblies. With this one-pot ionic liquid assisted etching process, the surface-fluorination and nitridation and high energy {001} crystal facets exposure can be readily realized simultaneously. Compared with the benchmark materials of P25 and TiO2 nanostructures with other hierarchical architectures of hollow spheres, flaky spheres, and spindles synthesized by hydrothermally etching hollow TiO2 spheres with nonionic liquid of NH4F, the TiO2 nanocubes and TiO2 nanocube assemblies used as efficient photocatalysts show super high photocatalytic activity for degradation of methylene blue, methyl orange, and rhodamine B, due to their surface-fluorination and nitridation and high energy crystal facet exposure. The ionic liquid assisted etching chemistry is facile and robust and may be a general strategy for synthesizing other metal oxides with high energy crystal facets and surface doping for improving photocatalytic activity.

摘要

在TiO₂光催化剂中实现阴离子非金属掺杂和高能晶面暴露已被证明是显著提高其光催化性能的有效方法。本文开发了一种简便的离子液体辅助蚀刻化学策略,通过简单地用1-丁基-3-甲基咪唑四氟硼酸盐离子液体对由TiO₂纳米颗粒组成的空心TiO₂球进行水热蚀刻,无需任何其他添加剂,从而制备出高活性的锐钛矿型TiO₂纳米立方体和TiO₂纳米立方体组装体。通过这种一锅法离子液体辅助蚀刻工艺,可以很容易地同时实现表面氟化和氮化以及高能{001}晶面暴露。与通过用NH₄F非离子液体水热蚀刻空心TiO₂球合成的具有空心球、片状球和纺锤体等其他分级结构的P25和TiO₂纳米结构基准材料相比,用作高效光催化剂的TiO₂纳米立方体和TiO₂纳米立方体组装体由于其表面氟化和氮化以及高能晶面暴露,对亚甲基蓝、甲基橙和罗丹明B的降解表现出超高的光催化活性。这种离子液体辅助蚀刻化学方法简便且可靠,可能是合成其他具有高能晶面和表面掺杂以提高光催化活性的金属氧化物的通用策略。

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