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BiOBr的形貌调控及其光催化CO2还原性能的研究
Morphology regulation of BiOBr and study on its performance of photocatalytic CO2 reduction
【摘要】 利用光催化技术将大气中的CO2转化为高附加值的化学原料,是缓解能源和环境问题的有效方法。通过水热法制备了BiOBr,并采用聚乙烯吡咯烷酮(PVP)调控BiOBr的形貌。分析催化剂表征结果可知,引入PVP可成功制备得到纳米球状的BiOBr-x P(x表示引入PVP的量),相比于BiOBr,BiOBr-x P具有更大的比表面积,提高了活性位点的暴露概率。同时,PVP的引入改善了BiOBr的能带结构,BiOBr-x P的导带电势更负,有效提高了BiOBr的还原能力。光催化CO2还原测试结果表明,BiOBr-2P具有最佳的光催化CO2还原活性,CO的生成速率为2.74μmol g-1 h-1,是未引入PVP制备的BiOBr(0.81μmol g-1 h-1)的3.38倍。
【Abstract】 The use of photocatalytic technology to convert atmospheric CO2 into high-value-added chemical raw materials is an effective way to alleviate energy and environmental problems. In this work, BiOBr was synthesized via a hydrothermal method, and polyvinylpyrrolidone(PVP) was used to regulate the morphology of BiOBr. The catalyst characterization results show that nano-spherical BiOBr-x P(x represents the amount of PVP introduced) was successfully prepared by introducing PVP. Compared with BiOBr, BiOBr-x P has a larger specific surface area and increases the exposure probability of active sites. Meanwhile, the use of PVP improved the band structure of BiOBr, resulting in a more negative conduction band potential for BiOBr-x P, effectively improving its reduction capacity. Photocatalytic CO2 reduction tests indicate that BiOBr-2P exhibits optimal photocatalytic activity, achieving a CO generation rate of 2.74 μmol g-1 h-1, which is 3.38 times greater than that of BiOBr without PVP(0.81 μmol g-1 h-1).
【Key words】 photocatalysis; carbon dioxide; carbon monoxide; morphology; BiOBr;
- 【文献出处】 化工学报 ,CIESC Journal , 编辑部邮箱 ,2025年06期
- 【分类号】O644.1;O643.36;X701
- 【下载频次】534