光催化
糠醇
材料科学
化学工程
复合数
产量(工程)
酒精氧化
空白
量子产额
能量转换
纳米技术
工作(物理)
工艺工程
化学
热液循环
酒
分解
分解水
载流子
能量转换效率
光催化
氢
作者
Chang‐Long Tan,Ming‐Yu Qi,Zi‐Rong Tang,Yi‐Jun Xu
标识
DOI:10.1016/j.apcatb.2021.120541
摘要
Highly efficient photodriven conversion from biomass-derived platform chemicals to value-added chemical feedstocks and clean fuel hydrogen (H2) possesses immense potential to cope with the existing energy and environmental problems. We herein report a facile approach combining hydrothermal method and photodeposition method for fabricating diverse sulfide-based cocatalysts (MoS2, NiS and WS2) decorated ZnIn2S4 (ZIS) for simultaneous exploitation of photogenerated electrons and holes, effectively achieving the oxidation of furfuryl alcohol (FOL) cooperative with H2 evolution in one photoredox cycle. The results show the optimal binary MoS2-ZIS composites can obtain almost 7 times yield of products (furfural and H2) as high as that of blank ZIS. Notably, compared with previous reports in literatures, our present MoS2-ZIS shows the best performance in this photoredox dual reaction. As a relay station for electrons, cocatalysts facilitate the separation and transfer of photogenerated charge carriers in the composites, therefore prominently improving the photocatalytic performance. We anticipate that the present work can offer insights to guide the design of photoredox reaction systems for efficient valorization of biomass-derived platform chemicals.
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