Baek Minki, Kim Guan-Woo, Park Taiho, Yong Kijung
Surface Chemistry Laboratory of Electronic Materials, Department of Chemical Engineering, Pohang University of Science and Technology (POSTECH), 77 Cheongam-Ro, Nam-gu, Pohang, Gyeongbuk, 37673, South Korea.
Polymer Chemistry and Electronics Lab, Department of Chemical Engineering, Pohang University of Science and Technology (POSTECH), 77 Cheongam-Ro, Nam-gu, Pohang, Gyeongbuk, 37673, South Korea.
Small. 2019 Dec;15(49):e1905501. doi: 10.1002/smll.201905501. Epub 2019 Nov 4.
Complementary water splitting electrocatalysts used simultaneously in the hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) can simplify water splitting systems. Herein, earth-abundant NiMoFe (NMF) and phosphorized NiMoFeP (NMFP) are synthesized as complementary overall water splitting (OWS) catalysts. First, NMF is tested as both the HER and OER promoter, which exhibits low overpotentials of 68 (HER) and 337 mV (OER). A quaternary NMFP is then prepared by simple phosphorization of NMF, which shows a much lower OER overpotential of 286 mV. The enhanced OER activity is attributed to the unique surface/core structure of NMFP. The surface phosphate acts as a proton transport mediator and expedites the rate-determining step. With the application of OER potential, the NMFP surface is composed of Ni(OH) and FeOOH, active sites for OER, but the inner core consists of Ni, Mo, and Fe metals, serving as a conductive electron pathway. OWS with NMF-NMFP requires an applied voltage of 1.452 V to generate 10 mA cm , which is one of the lowest values among OWS results with transition-metal-based electrocatalysts. Furthermore, the catalysts are combined with tandem perovskite solar cells for photovoltaic (PV)-electrolysis, producing a high solar-to-hydrogen (STH) conversion efficiency of 12.3%.
同时用于析氢反应(HER)和析氧反应(OER)的互补型水分解电催化剂能够简化水分解系统。在此,合成了储量丰富的镍钼铁(NMF)和磷化镍钼铁(NMFP)作为互补型全水分解(OWS)催化剂。首先,测试了NMF作为HER和OER促进剂的性能,其HER过电位低至68 mV,OER过电位为337 mV。然后通过对NMF进行简单磷化制备了四元NMFP,其OER过电位低得多,为286 mV。OER活性的增强归因于NMFP独特的表面/核心结构。表面磷酸盐充当质子传输介质,加快了速率决定步骤。在施加OER电位时,NMFP表面由Ni(OH)和FeOOH组成,这是OER的活性位点,但内核由Ni、Mo和Fe金属组成,作为导电电子通道。使用NMF-NMFP的OWS产生10 mA cm 的电流需要施加1.452 V的电压,这是基于过渡金属的电催化剂在OWS结果中的最低值之一。此外,这些催化剂与串联钙钛矿太阳能电池相结合用于光伏(PV)电解,产生了12.3%的高太阳能到氢能(STH)转换效率。