首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Photocatalytic degradation and electricity generation in a rotating disk photoelectrochemical cell over hierarchical structured BiOBr film
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Photocatalytic degradation and electricity generation in a rotating disk photoelectrochemical cell over hierarchical structured BiOBr film

机译:分层结构化BiOBr薄膜在转盘光电化学电池中的光催化降解和电产生

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摘要

A double hierarchical structured BiOBr film was prepared on Ti substrate through hydrolysis of Bi2O3 film in the presence of Br~- and H~+. The prepared BiOBr film exhibited much better photocatalytic (PC) activity on Rhodamine B (RhB) degradation than Bi2O3 film in a rotating disk PC reactor. The double hierarchical structure could not only enhance the surface area, but also exhibited strong RhB adsorption capacity and high light utilization efficiency due to multiple reflections of incident light. Due to similar hierarchical structure, BiOCl film was also used to compare the PC activity of BiOBr film. Because the band gap energy of BiOBr (2.5 eV) was narrower than that of BiOCl (3.2 eV), weaker PC activity was obtained for BiOBr film under UV light. However, besides RhB photosensitization degradation, BiOBr could also be excited by part of visible light to generate ~·OH, resulting in a better RhB removal under visible light. A Pt cathode was further connected to BiOBr/Ti photoanode to establish a rotating disk BiOBr/Ti-Pt photoelectrochemical cell to generate electricity with the degradation of pollutants simultaneously. 0.77 and 0.74 V open-circuit voltage, 0.019 and 0.010 mA cm~(-2) short-circuit current density were obtained under UV and visible light irradiation, respectively, with 50 mL5 mg L~(-1) RhB as "fuel". The PC activity was also improved due to the efficient separation of electrons and holes. The total current generated was stable but gradually decreased with treatment time due to the consumption of "fuel".
机译:在Br〜-和H〜+的存在下,通过Bi2O3薄膜的水解,在Ti衬底上制备了双层BiBir薄膜。制备的BiOBr膜对罗丹明B(RhB)的降解表现出比在旋转圆盘PC反应器中的Bi2O3膜更好的光催化(PC)活性。双层结构不仅可以增加表面积,而且由于入射光的多次反射而具有较强的RhB吸附能力和较高的光利用效率。由于相似的层次结构,BiOCl膜还用于比较BiOBr膜的PC活性。因为BiOBr(2.5 eV)的带隙能比BiOCl(3.2 eV)的带隙能窄,所以BiOBr膜在紫外光下的PC活性较弱。但是,除了RhB光敏性降解外,BiOBr还可以被部分可见光激发而生成〜·OH,从而在可见光下能更好地去除RhB。将Pt阴极进一步连接到BiOBr / Ti光阳极,以建立旋转盘BiOBr / Ti-Pt光电化学电池,以同时产生污染物降解的电能。以50 mL5 mg L〜(-1)RhB作为“燃料”,分别在UV和可见光照射下获得0.77 V和0.74 V的开路电压,0.019 mA和0.010 mA cm〜(-2)的短路电流密度。 。由于电子和空穴的有效分离,PC活性也得到了改善。产生的总电流是稳定的,但是由于消耗“燃料”而随着治疗时间逐渐减少。

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