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设计无贵金属的 CoTiO/ZnCdS 异质结构光催化剂,用于结合 H 2 生产选择性合成糠醛。

Design of noble metal-free CoTiO/ZnCdS heterostructure photocatalyst for selective synthesis offurfuraldehyde combined withHproduction.

机构信息

Department of Chemistry, Indian Institute of Technology Ropar, Rupnagar, Punjab 140001, India.

School of Basic Sciences, Indian Institute of Technology Mandi, Kamand, Mandi, Himachal Pradesh 175 075, India.

出版信息

J Colloid Interface Sci. 2022 Feb 15;608(Pt 1):1040-1050. doi: 10.1016/j.jcis.2021.10.031. Epub 2021 Oct 9.

Abstract

The development of photocatalytic systems composed of earth-abundant metal-based catalysts for efficient production of clean fuel, H as well as value-added chemicals is of significant importance towards sustainable generation of energy resources. Consequently, herein we report rational construction of Z-scheme CoTiO/xZnCdS (x = 5 (S1), 10 (S2), 15 (S3) and 20 wt% (S4)) heterostructures featuring suitable band structure for efficient photocatalytic reduction of protons of water to H combined with selective oxidation of furfuryl alcohol (biomass derivative) to a value-added product, furfuraldehyde. Electron microscopy analysis of heterostructure S2 revealed that ZnCdS nanoparticles are decorated over the surface of CoTiO microrods. The photocatalytic studies showed higher catalytic performance by S2, for selective oxidation of furfuryl alcohol to furfuraldehyde with 95% yield coupled with a H generation rate of 1929 μmol gh which is about 4-fold higher than that of pristine ZnCdS. The enhanced catalytic performance of heterostructure S2 has been ascribed to synergistic interaction aided by the Z-scheme heterojunction formation between CoTiO and ZnCdS. Overall, this work demonstrates the application of noble metal-free photocatalyst for simultaneous production of H and value-added chemical under mild and environment-friendly conditions.

摘要

用于高效生产清洁燃料 H 和增值化学品的基于丰富金属的光催化系统的发展对于可持续能源资源的产生具有重要意义。因此,在此我们报告了合理构建 Z 型 CoTiO/xZnCdS(x=5(S1)、10(S2)、15(S3)和 20wt%(S4))异质结构的情况,其具有适合的能带结构,可用于高效光催化还原水中的质子生成 H,并选择性氧化糠醇(生物质衍生物)为增值产物糠醛。对异质结构 S2 的电子显微镜分析表明,ZnCdS 纳米颗粒装饰在 CoTiO 微棒的表面上。光催化研究表明,S2 具有更高的催化性能,可将糠醇选择性氧化为糠醛,产率为 95%,同时 H 的生成速率为 1929μmolgh,比原始 ZnCdS 高 4 倍。S2 异质结构增强的催化性能归因于 CoTiO 和 ZnCdS 之间形成 Z 型异质结所辅助的协同相互作用。总的来说,这项工作展示了在温和和环保条件下,无贵金属光催化剂在同时生产 H 和增值化学品方面的应用。

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