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首页> 外文期刊>Energy & fuels >Cd_(0.5)Zn_(0.5)S Quantum Dot-Modified Cdln_2S_4 Nano-octahedron as the 0D/3D Hybrid Heterojunction for CO_2 Photoreduction
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Cd_(0.5)Zn_(0.5)S Quantum Dot-Modified Cdln_2S_4 Nano-octahedron as the 0D/3D Hybrid Heterojunction for CO_2 Photoreduction

机译:CD_(0.5)Zn_(0.5)S量子点改性CDLN_2S_4纳米八面体作为CO_2光电的0d / 3D混合异质结

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摘要

Constructing heterostructures and designing excellent structures to simulate natural photosynthesis are effective ways to efficiently and selectively convert CO2 into products with high energy. Herein, a novel 0D/3D heterostructure composed of Cd0.5Zn0.5S quantum dots and CdIn2S4 nano-octahedron was resoundingly fabricated via a simple solvothermal-coprecipitation method. The optimal yields of CO2 photoreduction to CO and CH4 over the Cd0.5Zn0.5S/CdIn2S4 composite material could reach up to 14.07 and 4.23 mu mol/g/h, respectively, which was primarily due to the synergistic effect of the 0D/3D heterostructure and unique morphology, thus accelerating the transfer of light-induced carriers. In addition, the asfabricated composite exhibited excellent stability and weaker photocorrosion. Hence, this work could provide a simple and efficient route for the design and construction of photocatalysts with superior activity for CO2 photoreduction.
机译:构建异质结构和设计优异结构以模拟天然光合作用是有效和选择性地将CO2的有效方法,以高能量。 这里,由CD0.5ZN0.5S量子点和CDIN2S4纳米 - 八面型组成的新型0D / 3D异质结构通过简单的溶剂热共沉淀法粗压地制造。 CD0.5ZN0.5S / CDIN2S4复合材料中CO 2光电的最佳产率和CH4和CH4分别达到高达14.07和4.23μmmol/ g / h,主要是由于0d / 3d的协同效应 异质结构和独特的形态,从而加速光诱导载体的转移。 此外,ASFabricated复合材料表现出优异的稳定性和较弱的光腐蚀。 因此,这项工作可以为光催化剂的设计和构建提供一种简单而有效的途径,具有优异的CO 2光电活动。

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  • 来源
    《Energy & fuels》 |2021年第16期|13291-13303|共13页
  • 作者单位

    Shanghai Univ Elect Power Coll Energy & Mech Engn Shanghai 200090 Peoples R China;

    Shanghai Univ Elect Power Coll Energy & Mech Engn Shanghai 200090 Peoples R China;

    Shanghai Univ Elect Power Coll Energy & Mech Engn Shanghai 200090 Peoples R China;

    Shanghai Univ Elect Power Coll Energy & Mech Engn Shanghai 200090 Peoples R China;

    Shanghai Univ Elect Power Coll Energy & Mech Engn Shanghai 200090 Peoples R China;

    Shanghai Univ Elect Power Coll Energy & Mech Engn Shanghai 200090 Peoples R China;

    Shanghai Univ Elect Power Coll Energy & Mech Engn Shanghai 200090 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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