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Enhancing BiVO_(4)photoanode performance by insertion of an epitaxial BiFeO_(3)ferroelectric layer
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作者 Haejin Jang Yejoon Kim +6 位作者 Hojoong choi Jiwoong Yang Yoonsung Jung sungkyun choi Donghyeon Lee Ho Won Jang Sanghan Lee 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第2期71-78,I0003,共9页
BiVO_(4)(BVO)is a promising material as the photoanode for use in photoelectrochemical applications.However,the high charge recombination and slow charge transfer of the BVO have been obstacles to achieving satisfacto... BiVO_(4)(BVO)is a promising material as the photoanode for use in photoelectrochemical applications.However,the high charge recombination and slow charge transfer of the BVO have been obstacles to achieving satisfactory photoelectrochemical performance.To address this,various modifications have been attempted,including the use of ferroelectric materials.Ferroelectric materials can form a permanent polarization within the layer,enhancing the separation and transport of photo-excited electron-hole pairs.In this study,we propose a novel approach by depositing an epitaxial BiFeO_(3)(BFO)thin film underneath the BVO thin film(BVO/BFO)to harness the ferroelectric property of BFO.The self-polarization of the inserted BFO thin film simultaneously functions as a buffer layer to enhance charge transport and a hole-blocking layer to reduce charge recombination.As a result,the BVO/BFO photoanodes showed more than 3.5 times higher photocurrent density(0.65 mA cm^(-2))at 1.23 V_(RHE)under the illumination compared to the bare BVO photoanodes(0.18 m A cm^(-2)),which is consistent with the increase of the applied bias photon-to-current conversion efficiencies(ABPE)and the result of electrochemical impedance spectroscopy(EIS)analysis.These results can be attributed to the self-polarization exhibited by the inserted BFO thin film,which promoted the charge separation and transfer efficiency of the BVO photoanodes. 展开更多
关键词 PHOTOELECTROCHEMICAL PHOTOANODE BiVO_(4) Ferroelectric materials BiFeO_(3)
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用于电化学能量转换反应的非贵金属单原子催化剂
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作者 Sang Eon Jun sungkyun choi +3 位作者 Jaehyun Kim Ki Chang Kwon Sun Hwa Park Ho Won Jang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2023年第7期195-214,共20页
非贵金属单原子催化剂(NNMSAC)被认为是贵金属单原子催化剂的经济替代品,同时保留了源自单原子位点独特电子结构的高催化活性.通过金属-载体充分的相互作用,NNMSAC可以在各种电催化反应中发挥关键作用,具有与贵金属单原子催化剂相当的... 非贵金属单原子催化剂(NNMSAC)被认为是贵金属单原子催化剂的经济替代品,同时保留了源自单原子位点独特电子结构的高催化活性.通过金属-载体充分的相互作用,NNMSAC可以在各种电催化反应中发挥关键作用,具有与贵金属单原子催化剂相当的高原子利用效率和选择性.为此,本文首先综述了NNMSAC在调节反应选择性、金属-载体相互作用和催化活性中心方面的特点.随后,详细介绍了用于析氢反应、析氧反应、氧还原反应、二氧化碳还原反应和氮还原反应的代表性NNMSAC(Co,Ni,Fe,Cu和双金属SAC)催化剂.最后,展望了NNMSAC在几何、电子和电化学性能方面进一步发展所面临的挑战. 展开更多
关键词 单原子催化剂 非贵金属 电催化 水裂解 CO_(2)还原
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