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Supported Transition Metal Phosphides: Activity Survey for HER, ORR, OER, and Corrosion Resistance in Acid and Alkaline Electrolytes

机译:支持的过渡金属磷化物:酸和碱性电解质中的耐腐蚀性,ORR,OER和耐腐蚀性的活动调查

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Carbon-supported MxPy (M = Ni, Co, W, Cr, and Mo) were prepared via pyrolysis using a very simple and scalable method utilizing nontoxic metal and phosphorus precursors. The electrochemical hydrogen evolution (HER), oxygen reduction (ORR), and oxygen evolution (OER) reactions and corrosion resistance under both acidic and alkaline conditions were examined for all these catalysts and compared to those for the benchmark catalysts Pt/C (HER/ORR) and IrO2 (OER). The highest activities were found in alkaline solutions for Co2P for HER and ORR and Ni2P for OER Good activity was also found in acid for some of these reactions, although the catalysts suffered from susceptibility to corrosion. Co2P was further studied in an alkaline environment, as it shows high catalytic activity toward the oxygen reduction reaction (ORR) without significant hysteresis. The onset potential (at 0.5 mA cm(-2)) obtained was 0.8 V vs RHE, and a Tafel slope value of 38 mV dec(-1) was found with a maximum kinetic mass activity of 2870 A g(Co)(-1) at 0.7 V vs RHE. Utilizing high-resolution transmission electron microscopy, it is possible to observe high-surface-area needle-like single-crystal cobalt oxide structures on the surface of the Co2P particles at the beginning of the ORR Hence the high rates of initial corrosion of the Co2P appear to be associated with the dissolution and precipitation of cobalt oxide on the particle surface. The as -synthesized Co2P/C also shows good performance in an 8-h stability test for the OER, carried out at 1.6 V vs RHE in alkaline conditions, with negligible drop in current density over time. Interestingly, in an acidic environment the catalyst is very active toward two-electron oxygen reduction, leading to H2O2 with high selectivity (85%). It is intriguing that the pH dependence of this catalyst toward the ORR is similar to that seen for gold.
机译:通过使用无毒金属和磷前体的非常简单和可伸缩的方法,通过热解制备碳支持的MxPy(M = Ni,Co,W,Cr和Mo)。电化学氢进化(她),氧还原(ORR)和氧气进化(OER)反应(OER)反应和酸性和碱性条件下的耐腐蚀性,并与基准催化剂PT / C(她/)相比ORR)和IRO2(OER)。在碱性溶液中发现最高的活性,并且ORR和NI2P对于OER的良好活性也发现了一些这些反应中的一些反应,尽管催化剂遭受腐蚀的敏感性。进一步研究CO 2P在碱性环境中,因为它显示出氧还原反应(ORR)的高催化活性而无需显着滞后。得到的发病电位(0.5 mA cm(-2))为0.8V Vs rHe,发现38mV Dec(-1)的Tafel斜率值,最大动力学质量活性为2870Ag(CO)( - 1)在0.7V VS RHE时。利用高分辨率透射电子显微镜检查,可以在ORR的开始时观察CO2P颗粒表面上的高表面积针状单晶钴氧化物结构,因此CO 2P的初始腐蚀的高速率似乎与颗粒表面上氧化钴的溶解和沉淀有关。作为-Synthesized的CO 2P / C也显示出oer的8小时稳定性试验中的良好性能,在碱性条件下为1.6V Vs rHe进行,随着时间的推移可以忽略不计。有趣的是,在酸性环境中,催化剂对双电子氧还原非常活跃,导致具有高选择性的H 2 O 2(85%)。它很有趣的是,该催化剂朝向ORR的pH依赖性类似于用于金的金。

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