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首页> 外文期刊>Journal of Catalysis >Highly dispersed PdS preferably anchored on In2S3 of MnS/In2S3 composite for effective and stable hydrogen production from H2S
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Highly dispersed PdS preferably anchored on In2S3 of MnS/In2S3 composite for effective and stable hydrogen production from H2S

机译:高度分散的PD优选锚定MNS / IN2S3复合材料的IN2S3,用于从H2S获得有效且稳定的氢气产生

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摘要

As an important byproduct during natural gas exploitation, green utilization of hydrogen sulfide (H2S) by photocatalysis has offered us the possibility for production of clean hydrogen (H-2) from H2S with low energy consumption. In this work, we have successfully introduced well-dispersed palladium sulfide (PdS) which is preferably loaded on In2S3 of MnS/In2S3 composite for improved photocatalytic hydrogen evolution from H 2 S aqueous solution. In contrast to binary MnS/In2S3, ternary MnS/In2S3/PdS has exhibited a remarkable and stable hydrogen production rate of 22.7 mmol g(-1) h(-1) with an apparent quantum yield of 34% at around 395 nm. A comprehensive structure characterization of the ternary composite including scanning transmission electron microscopy (STEM) and X-ray absorption spectroscopy (XAS) in combination with theoretical calculations confirm the good dispersion of PdS in the composite. Moreover, we discovered that PdS preferably interact with In2S3 rather than MnS in the composite through Pd-S-In bond on the interface of the two. Photoluminescence (PL) spectra, surface photovoltage (SPV) spectra together with transient photocurrent and electrochemical impedance spectra (EIS) demonstrate the advantage of PdS for promoting the charge separation. This work sheds light on the positive effect on the enhanced activity of the corresponding system resulting from the preferable anchoring of highly dispersed PdS on In2S3 in the composite by chemical Pd-S-In bond. Not only the high dispersion but also the preferable anchoring of the co-catalyst in the composite could hence inspire people for more rational designs of ternary composite in future. (C) 2019 Elsevier Inc. All rights reserved.
机译:作为在天然气剥削期间的重要副产物,光催化的硫化氢(H2S)的绿色利用已经为我们提供了从能量消耗低的H2S生产清洁氢气(H-2)的可能性。在这项工作中,我们已经成功地引入了分散的钯硫化物(Pds),该硫化物(Pds)优选为MNS / In2S3复合材料的IN23上,用于改善H 2 S水溶液的光催化氢进化。与二元MNS / IN2S3相反,三元MNS / IN2S3 / PDS表现出22.7mmol G(-1)H(-1)的显着且稳定的氢气产生速率,表观量子产率为34%在约395nm。三元复合材料的综合结构表征,包括扫描透射电子显微镜(茎)和X射线吸收光谱(XAs)与理论计算结合地确认了PD在复合材料中的良好分散。此外,我们发现PDS优选地通过在两者的界面上通过PD-S-IN键合与复合材料中的IN23而不是MN。光致发光(PL)光谱,表面光伏(SPV)光谱与瞬态光电流和电化学阻抗谱(EIS)一起证明了用于促进电荷分离的PD的优点。这项工作揭示了对通过化学PD-S-IN键在复合材料中的高度分散的PDS上的高度分散的PDS上的相应系统的增强活性的积极影响。不仅高分子,而且还可以在复合材料中的助催化剂的优选锚固可以让人们在将来的三元复合材料的更合理设计。 (c)2019 Elsevier Inc.保留所有权利。

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  • 来源
    《Journal of Catalysis》 |2019年第2019期|共10页
  • 作者单位

    Southwest Petr Univ State Key Lab Oil &

    Gas Reservoir Geol &

    Exploita Chengdu 610500 Sichuan Peoples R China;

    Southwest Petr Univ State Key Lab Oil &

    Gas Reservoir Geol &

    Exploita Chengdu 610500 Sichuan Peoples R China;

    Karlsruhe Inst Technol Inst Chem Technol &

    Polymer Chem D-76131 Karlsruhe Germany;

    Southwest Petr Univ State Key Lab Oil &

    Gas Reservoir Geol &

    Exploita Chengdu 610500 Sichuan Peoples R China;

    Southwest Petr Univ State Key Lab Oil &

    Gas Reservoir Geol &

    Exploita Chengdu 610500 Sichuan Peoples R China;

    Southwest Petr Univ State Key Lab Oil &

    Gas Reservoir Geol &

    Exploita Chengdu 610500 Sichuan Peoples R China;

    Nanyang Normal Univ Engn Technol Res Ctr Henan Prov Solar Catalysis Collaborat Innovat Ctr Water Secur Water Source R Nanyang 473061 Peoples R China;

    Karlsruhe Inst Technol Inst Chem Technol &

    Polymer Chem D-76131 Karlsruhe Germany;

    Southwest Petr Univ State Key Lab Oil &

    Gas Reservoir Geol &

    Exploita Chengdu 610500 Sichuan Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 催化;
  • 关键词

    Photocatalysis; Hydrogen production; Metal sulfide; Preferable deposition; High dispersity;

    机译:光催化;氢气生产;金属硫化物;优选的沉积;高分散性;

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