【学术论文】孟苏刚教授及合作者在Applied Catalysis B: Environment and Energy上发表论文

来源: 发布时间:2024-10-24 10:03:10 浏览次数: 【字体:

题目:Chemically bonded nonmetallic LSPRS-schemehollowheterostructurefor boosting photocatalytic performance

作者:Yu Che, Bo Weng, Kejian Li*, Zhilong He, Shifu Chen, Sugang Meng*

单位:Key Laboratory of Green and Precise Synthetic Chemistry and Applications, Ministry of Education; Anhui Provincial Key Laboratory of Synthetic Chemistry and Applications; College of Chemistry and Materials Science, Huaibei Normal University, Huaibei, 235000, China.

摘要:The light absorption, mass transfer, and charges separation are essential to the efficiency of photocatalytic reaction, but constructing photocatalyst with the three excellent properties is still challenging.Herein, the interfacial Mo-S bonds and oxygen vacancysynchronously decorated MoO3-x/Zn3In2S6(MoO3-x/ZIS) heterostructure was rationally designed and synthesized. The oxygen-defective MoO3-xnanotubes showedhollow structure and local surface plasmonic resonance (LSPR) effect, which improved mass transfer and solar light absorption. Besides, the built-in electric field and interfacial Mo-S bond provided endogenetic impetus and channels for rapidphotoexcited charge carriers transfer and separation. The photocatalytic hydrogen (H2) evolution and hydrogen peroxide (H2O2) production on optimal MoO3-x/ZIS composite were 17.34 and 4.47mmol g−1h−1, respectively. The apparent quantum efficiency of MoO3-x/ZIS for H2evolution at 400 nm was about 13.92%, which was 8.09times higher than that of ZIS. Moreover, the MoO3-x/ZIS also displayed excellent activities on the selective 5-hydroxymethylfurfural dehydrogenation. Thein-situX-ray photoelectron spectroscopy, electron paramagnetic resonance,in-situselective photodeposition, and density functional theory calculation confirmed the S-scheme charge transfer pathway between MoO3-xand ZIS. This study provides an effective avenue for designing multifunctional photocatalysts based on the synergistic effects of chemically bonded S-scheme heterostructure and nonmetallic LSPR effect.

影响因子:20.2

分区情况:一区

链接:https://authors.elsevier.com/a/1jsNH3Id%7Et8yZg

https://doi.org/10.1016/j.apcatb.2024.124656

(文:孟苏刚/审核:韩满意/审校:曹静/终审:杨振兴)


终审:化学与化工学院
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