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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >One-step hydrothermal synthesis and photocatalytic performance of ZnWO4/Bi2WO6 composite photocatalysts for efficient degradation of acetaldehyde under UV light irradiation
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One-step hydrothermal synthesis and photocatalytic performance of ZnWO4/Bi2WO6 composite photocatalysts for efficient degradation of acetaldehyde under UV light irradiation

机译:一步法水热合成ZnWO4 / Bi2WO6复合光催化剂在紫外光下有效降解乙醛

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摘要

Bi2 WO6 with different Bi~(3+) ion concentrations (0-30 mol%) is incorporated with the ZnWO4 photocatalyst to improve the photocatalytic efficiency by forming a ZnWO4/Bi2WO6 composite photocatalyst with hierarchical heterostructure via a one-step hydrothermal method. X-ray diffraction and Raman spectroscopy analyses confirm the presence of ZnWO4 and Bi2WO6 as main phases in the composite photocatalyst. Scanning electron microscopy and transmission electron microscopy observations reveal that the rice-and plate-like Bi2WO6 nanoparticles were either separate or attached to the surface of quasi-spherical ZnWO4 particles. A gradual increase in the Bi2WO6 content of the composite photocatalyst results in a monotonic shift of the absorption edge from ca. 355 nm to longer wavelengths up to ca. 450 nra. The photocatalytic performance of the ZnWO4/Bi2WO6 composite photocatalyst was evaluated by investigating the degradation of gaseous acetaldehyde (AcH) under UV light irradiation. Only the composite photocatalyst synthesized with 30 mol% Bi~(3+) exhibits higher photocatalytic activity under UV light irradiation compared with both individual ZnWO4 and Bi2WO6, and with a mechanically mixed ZnWO4/Bi2WO6 composite photocatalyst. The enhanced photocatalytic activity is attributed to the n-n isotype junction formed between the two semiconductors and the charge separation of each semiconductor.
机译:将具有不同Bi〜(3+)离子浓度(0-30 mol%)的Bi2 WO6与ZnWO4光催化剂结合,通过一步水热法形成具有分层异质结构的ZnWO4 / Bi2WO6复合光催化剂,从而提高光催化效率。 X射线衍射和拉曼光谱分析证实了复合光催化剂中以ZnWO4和Bi2WO6为主要相的存在。扫描电子显微镜和透射电子显微镜观察表明,米和板状的Bi2WO6纳米粒子是分开的或附着在准球形ZnWO4粒子的表面上。复合光催化剂中Bi2WO6含量的逐渐增加导致吸收边从ca开始单调偏移。 355 nm至更长的波长,直至450纳拉。 ZnWO4 / Bi2WO6复合光催化剂的光催化性能通过研究紫外光照射下气态乙醛(AcH)的降解来评估。与单独的ZnWO4和Bi2WO6以及机械混合的ZnWO4 / Bi2WO6复合光催化剂相比,只有具有30 mol%Bi〜(3+)合成的复合光催化剂在紫外线照射下表现出更高的光催化活性。增强的光催化活性归因于在两个半导体之间形成的n-n同型结以及每个半导体的电荷分离。

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