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ZnxCd1-xS nanoparticles dispersed on CoAl-layered double hydroxide in 2D heterostructure for enhanced photocatalytic hydrogen evolution

机译:ZnXCD1-XS纳米粒子分散在2D异质结构中的煤层双氢氧化物,以增强光催化氢气进化

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摘要

CoAl-LDH and ZnxCd1-xS (ZCS) were successfully assembled. By studying the microstructure of the catalysts, it was found that the agglomerated ZCS nanoparticles were equably dispersed on the hexagonal plate-like CoAl-LDH surface. The increase of the specific surface area of the composite catalyst further proves that the agglomeration state of ZCS nanoparticles has been improved. When the mass of the introduced CoAl-LDH is 20% of the ZCS, the maximum hydrogen production after the optimization is 1516 mu mol/5h, which is about 6.9 times that of pure ZCS. UV-vis DRS in the range of 250-800 nm proved that the visible light absorption intensity of the composite is enhanced compared to pure materials. Electrochemical and photoluminescence experiments proved that the heterostructure formed between ZCS and CoAl-LDH accelerates photoelectron transfer and inhibits the recombination of electrons and holes. In addition, possible mechanisms of the sample were explored by UV-vis DRS and Mott-Schottcky. (C) 2020 Elsevier Inc. All rights reserved.
机译:煤LDH和ZNXCD1-XS(ZCS)已成功地组装。通过研究催化剂的微观结构,发现附聚的ZCS纳米颗粒可公同分散在六边形板状煤LDH表面上。复合催化剂的比表面积的增加进一步证明了ZCS纳米颗粒的附聚态得到改善。当引入的煤LDH的质量为ZCS的20%时,优化后的最大氢气产生为1516μmol/ 5h,这是纯ZC的约6.9倍。 UV-VIS DRS在250-800nm的范围内证明了与纯材料相比,复合材料的可见光吸收强度增强。电化学和光致发光实验证明,ZCS和煤LDH之间形成的异质结构加速了光电子传递并抑制电子和孔的重组。此外,通过UV-Vis和Mott-Schottcky探索了样品的可能机制。 (c)2020 Elsevier Inc.保留所有权利。

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