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A superior photocatalytic performance of a novel Bi2SiO5 flower-like microsphere via a phase junction

机译:优越的光催化性能的一部小说通过一个阶段Bi2SiO5如花似玉微球结

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摘要

A phase junction over a Bi2SiO5 photocatalyst with the orthorhombic Bi2SiO5 and the tetragonal Bi2SiO5 structure was successfully synthesized via an ion exchange method using BiOBr solid microspheres as the sacrificial template. In the meantime, the as-prepared Bi2SiO5 phase junction possesses a novel morphology of a flower-like microsphere with nanoparticles evenly embedded in its nano-petals. It was found that the Bi2SiO5 phase junction not only showed a highly enhanced photocatalytic activity and excellent durability under UV or simulated solar irradiation, but also showed a remarkable visible-light activity for photo-degradation of phenol. Experimental results reveal that the tetragonal Bi2SiO5 phase in this phase junction possesses a narrower band gap, thus leading to its extended light absorption. The efficient charge separation via a phase junction would make a great contribution to its highly enhanced photocatalytic activity under UV or simulated solar irradiation. The high efficiency in the degradation of organic pollutants makes the as-prepared photocatalyst a promising candidate for photocatalytic environmental purification.
机译:一个阶段结在Bi2SiO5光催化剂的斜方晶系的Bi2SiO5正方Bi2SiO5结构成功地合成通过使用BiOBr固体离子交换方法微球作为牺牲模板。同时,做好准备Bi2SiO5相连接拥有一本小说形态的枯萎微球和纳米粒子均匀地嵌入其nano-petals。相结不仅显示出高度增强的光催化活性和良好的耐久性在紫外线或模拟太阳辐射,但也显示出非凡的可见光活动;降解苯酚。显示,正方Bi2SiO5阶段相结具有带隙较窄,从而导致其扩展光吸收。通过一个阶段的有效电荷分离结会对其做出了巨大的贡献高度增强的紫外光光催化活性或模拟太阳能照射。降解效率的有机食品污染物使好了光催化剂有前途的候选人为光催化环境净化。

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