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首页> 外文期刊>Sensors and Actuators >Synthesis of Co_3O_4/ZnO nano-heterojunctions by one-off processing ZIF-8@ZIF-67 and their gas-sensing performances for trimethylamine
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Synthesis of Co_3O_4/ZnO nano-heterojunctions by one-off processing ZIF-8@ZIF-67 and their gas-sensing performances for trimethylamine

机译:通过一次性加工ZIF-8 ZIF-67的CO_3O_4 / ZnO纳米异质条件的合成及其对三甲胺的气体传​​感性能

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摘要

The formation of p-n junctions is an effective method to improve the gas sensing performances of materials. Herein, the Co_3O_4 quantum dots/ZnO nanocages p-n nano-heterojunctions (Co_3O_4/ZnO NHs) were successfully synthesized by one-off processing ZIF-8@ZIF-67 at an appropriate heat treatment condition. The prepared Co_3O_4/ZnO NHs containing numerous heterojunctions were demonstrated as a promising sensing material for trimethylamine (TMA) gas and show high performances with fast response, high response, low detection limit, good stability and high selectivity. Moreover, based on quasi-in-situ XPS characterization and density functional theory calculations, we found that the surface of ZnO transformed to metallic Zn in the presence of TMA gas with high adsorption energy (-3.31 eV) on ZnO. In addition, the band structure of Co_3O_4 and ZnO also expounded that the charge transfer from ZnO to Co_3O_4 and contributed to form more surface adsorbed oxygen on the surface of Co_3O_4/ZnO NHs. Overall, the high sensing response of Co_3O_4/ZnO NHs was due to both the increase of the thickness in the depletion layer induced by the p-n heterojunction and the TMA-induced surface metallization of ZnO, while the high selectivity for TMA may only come from the surface metallization induced higher response compared to other reference gases, but not the formation of heterojunctions.
机译:P-N交界处的形成是改善材料的气体感测性能的有效方法。在此,通过在适当的热处理条件下通过一次性加工ZIF-8 ZIF-67成功地合成CO_3O_4量子点/ ZnO纳米缺陷P-N纳米杂核酸液(CO_3O_4 / ZnO NHS)。含有许多异质结的制备的CO_3O_4 / ZnO NHS作为三甲胺(TMA)气体的有希望的感测材料,并以快速响应,高响应,低检测限,良好稳定性和高选择性显示出高性能。此外,基于准原位XPS表征和密度函数理论计算,我们发现ZnO的表面在TMA气体存在下转化为金属Zn,在ZnO上具有高吸附能量(-3.31eV)。另外,CO_3O_4和ZnO的带结构也阐述了从ZnO到CO_3O_4的电荷转移,并有助于在CO_3O_4 / ZnO NHS的表面上形成更多表面吸附的氧。总的来说,CO_3O_4 / ZnO NHS的高感测响应是由于PN异质结诱导的耗竭层中的厚度的增加和ZnO的TMA诱导的表面金属化,而TMA的高选择性可能仅来自于此与其他参考气体相比,表面金属化诱导较高的响应,但不是杂交的形成。

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  • 来源
    《Sensors and Actuators 》 |2020年第4期| 127657.1-127657.9| 共9页
  • 作者单位

    Wuhan National Laboratory for Optoelectronics School of Optical and Electronic Information Huazhong University of Science and Technology Wuhan 430074 PR China;

    Key Lab of Materials Physics Anhui Key Lab of Nanomaterials and Nanotechnology Institute of Solid State Physics Chinese Academy of Science Hefei 230031 PR China University of Science and Technology of China Heifei 230026 PR China;

    Key Lab of Materials Physics Anhui Key Lab of Nanomaterials and Nanotechnology Institute of Solid State Physics Chinese Academy of Science Hefei 230031 PR China;

    Wuhan National Laboratory for Optoelectronics School of Optical and Electronic Information Huazhong University of Science and Technology Wuhan 430074 PR China;

    Key Lab of Materials Physics Anhui Key Lab of Nanomaterials and Nanotechnology Institute of Solid State Physics Chinese Academy of Science Hefei 230031 PR China University of Science and Technology of China Heifei 230026 PR China;

    Key Lab of Materials Physics Anhui Key Lab of Nanomaterials and Nanotechnology Institute of Solid State Physics Chinese Academy of Science Hefei 230031 PR China;

    Wuhan National Laboratory for Optoelectronics School of Optical and Electronic Information Huazhong University of Science and Technology Wuhan 430074 PR China;

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

    Co_3O_4/ZnO nano-heterojunctions; Gas sensing performances; DFT calculations; Surface metallization;

    机译:CO_3O_4 / ZNO纳米异质官能;气体传感表演;DFT计算;表面金属化;

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