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A high-activity bimetallic OER cocatalyst for efficient photoelectrochemical water splitting of BiVO4

机译:一个双金属OER助催化剂高效的光电化学分解水

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摘要

BiVO(4)has been widely used as a photoanode material, while the slow surface oxygen evolution reaction (OER) kinetics still severely hinders its performance. Here, an efficient bimetallic cocatalyst (named FeSnOS) was obtained by post-annealing a Fe/Sn-containing metal chalcogenide coordination compound to enhance the OER activity of BiVO4. The synergistic effect of Fe and Sn species in the amorphous FeSnOS cocatalyst efficiently lowers the interface impedance of the photoanode, reduces the electrochemical reaction overpotential, and promotes the surface OER dynamics. At the same time, a type-II heterojunction was constructed due to the process of post-annealing, which efficiently improves the bulk phase charge separation efficiency of the photoanode. The obtained optimal photoanode (named FeSnOS-BiVO4) shows a photocurrent density of 3.1 mA cm(-2)at 1.23 Vvs.the reversible hydrogen electrode, which is 3.4 times higher than that of the pristine BiVO(4)photoanode, and its onset potential shifts negatively from 0.44 V to 0.25 V. This work presents a simple and effective method to build a bimetallic cocatalyst for improved photoelectrochemical performance, which extends the application of polymetallic metal chalcogenide complexes.
机译:BiVO(4)被广泛用作光电阳极材料,表面氧缓慢进化反应(OER)动力学仍严重阻碍它的性能。助催化剂(名为FeSnOS)获得的气割后退火铁/ Sn-containing金属提高硫族化物配位化合物OER BiVO4的活动。铁和无定形FeSnOS Sn物种助催化剂有效地降低了界面光电阳极的阻抗,减少了电化学反应过电位促进表面OER动力学。一次,二型异质结了由于气割后退火的过程,有效地提高了体相光电阳极的分离效率。获得最优的光电阳极(名为FeSnOS-BiVO4)显示了一个马光电流密度为3.1厘米(2)1.23 Vvs。3.4倍的原始吗BiVO(4)光电阳极,其发病可能转变消极的从0.44 V至0.25 V。提出了一种简单而有效的方法来构建一个双金属助催化剂的改进光电化学性能、延伸多金属金属的应用硫族化物复合物。

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