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首页> 外文期刊>Toxicological and Environmental Chemistry >Synthesis of Li-doped bismuth oxide nanoplates, Co nanoparticles modification, and good photocatalytic activity toward organic pollutants
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Synthesis of Li-doped bismuth oxide nanoplates, Co nanoparticles modification, and good photocatalytic activity toward organic pollutants

机译:锂掺杂氧化铋纳米层,Co纳米粒子改性和良好的光催化活性对有机污染物的合成

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摘要

Lithium-doped bismuth oxide nanoplates with the thickness of 50-150nm and tetragonal bismuth oxide, monoclinic lithium bismuthate phases have been synthesized via a simple hydrothermal process using lithium acetate and sodium bismuthate as the raw materials. Cobalt nanoparticles modified lithium-doped bismuth oxide nanoplates hybrids were obtained by an in situ photo-deposition route. The cobalt nanoparticles-modified nanoplates hybrids display significantly enhanced photocatalytic activity toward gentian violet compared with the nanoplates. Gentian violet solution can be totally degraded by the hybrids within 60 min under ultraviolet-visible light irradiation. The superior photocatalytic activity of the cobalt nanoparticles modified nanoplates hybrids originates from the superior charge transfer capacity and the energy band structure of the hybrids. The excellent photocatalytic performance makes the cobalt nanoparticles modified nanoplates hybrids a promising candidate as the photocatalyst for waste-water treatment.
机译:锂掺杂型氧化物纳米型厚度为50-150nm和四方铋氧化物,通过使用锂乙酸锂和铋作为原料,通过简单的水热法合成单斜锂铋阶段。通过原位光沉积途径获得钴纳米颗粒改性锂掺杂的氧化物纳米液相生杂交物。钴纳米颗粒改性纳米液相传酶杂交种显示器与纳米孔板相比,龙眼紫色的光催化活性显着增强。在紫外线可见光照射下60分钟内,恒生紫紫罗兰溶液可以完全降解杂交物。钴纳米粒子的卓越光催化活性改性纳米液体杂交物源自杂交种的优异电荷传递能力和能带结构。优异的光催化性能使得钴纳米粒子改性纳米液体杂交物具有含有储存水处理的光催化剂的有希望的候选者。

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