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Utilizing the Space‐Charge Region of the FeNi‐LDH/CoP p‐n Junction to Promote Performance in Oxygen Evolution Electrocatalysis
Authors:Kai He  Tsegaye Tadesse&#x;Tsega  Xi Liu  Jiantao Zai  Xin‐Hao Li  Xuejiao Liu  Wenhao Li  Nazakat Ali  Xuefeng Qian
Institution:Kai He,Tsegaye Tadesse?Tsega,Xi Liu,Jiantao Zai,Xin‐Hao Li,Xuejiao Liu,Wenhao Li,Nazakat Ali,Xuefeng Qian
Abstract:The modulation of electron density is an effective option for efficient alternative electrocatalysts. Here, p‐n junctions are constructed in 3D free‐standing FeNi‐LDH/CoP/carbon cloth (CC) electrode (LDH=layered double hydroxide). The positively charged FeNi‐LDH in the space‐charge region can significantly boost oxygen evolution reaction. Therefore, the j at 1.485 V (vs. RHE) of FeNi‐LDH/CoP/CC achieves ca. 10‐fold and ca. 100‐fold increases compared to those of FeNi‐LDH/CC and CoP/CC, respectively. Density functional theory calculation reveals OH? has a stronger trend to adsorb on the surface of FeNi‐LDH side in the p‐n junction compared to individual FeNi‐LDH further verifying the synergistic effect in the p‐n junction. Additionally, it represents excellent activity toward water splitting. The utilization of heterojunctions would open up an entirely new possibility to purposefully regulate the electronic structure of active sites and promote their catalytic activities.
Keywords:Freistehende Elektroden  Geschichtete Doppelhydroxide  Sauerstoffentwicklungsreaktion  p-n-Kontakte  Wasserspaltung
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