Black phosphorene as a hole extraction layer boosting solar water splitting of oxygen evolution catalysts

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作者
Kan Zhang
Bingjun Jin
Cheolwoo Park
Yoonjun Cho
Xiufeng Song
Xinjian Shi
Shengli Zhang
Wooyul Kim
Haibo Zeng
Jong Hyeok Park
机构
[1] Nanjing University of Science and Technology,MIIT Key Laboratory of Advanced Display Material and Devices, School of Materials Science and Engineering
[2] Yonsei University,Department of Chemical and Biomolecular Engineering
[3] Sookmyung Women’s University,Department of Chemical and Biological Engineering
[4] Stanford University,Department of Mechanical Engineering
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As the development of oxygen evolution co-catalysts (OECs) is being actively undertaken, the tailored integration of those OECs with photoanodes is expected to be a plausible avenue for achieving highly efficient solar-assisted water splitting. Here, we demonstrate that a black phosphorene (BP) layer, inserted between the OEC and BiVO4 can improve the photoelectrochemical performance of pre-optimized OEC/BiVO4 (OEC: NiOOH, MnOx, and CoOOH) systems by 1.2∼1.6-fold, while the OEC overlayer, in turn, can suppress BP self-oxidation to achieve a high durability. A photocurrent density of 4.48 mA·cm−2 at 1.23 V vs reversible hydrogen electrode (RHE) is achieved by the NiOOH/BP/BiVO4 photoanode. It is found that the intrinsic p-type BP can boost hole extraction from BiVO4 and prolong holes trapping lifetime on BiVO4 surface. This work sheds light on the design of BP-based devices for application in solar to fuel conversion, and also suggests a promising nexus between semiconductor and electrocatalyst.
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