首页> 外文期刊>ACS Omega >In Situ Growth of MoS2 Nanosheet Arrays and TS2 (T = Fe, Co, and Ni) Nanocubes onto Molybdate for Efficient Oxygen Evolution Reaction and Improved Hydrogen Evolution Reaction
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In Situ Growth of MoS2 Nanosheet Arrays and TS2 (T = Fe, Co, and Ni) Nanocubes onto Molybdate for Efficient Oxygen Evolution Reaction and Improved Hydrogen Evolution Reaction

机译:MoS 2 纳米片阵列和TS 2 (T = Fe,Co和Ni)纳米立方体在钼酸盐上的原位生长,用于高效氧释放反应和改进的氢释放反应

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Rationally designing efficient and low-price bifunctional electrocatalysts for oxygen evolution reaction (OER) and hydrogen evolution reaction (HER) are vitally important to bring solar/electrical-to-hydrogen energy conversion processes into reality. Herein, we report on a synthetic method that leads to an in situ growth of ultrathin MoS_(2) nanosheets and transition metal disulfide nanocubes onto the surface of Fe_(1/3)Co_(1/3)Ni_(1/3)MoO_(4) nanorods for the first time. Such hybrids are found to serve as a bifunctional electrocatalyst with high activities for OER and HER, as represented by an impressive anodic and cathodic current density of 10 mA cm~(–2) at 1.53 and ?0.25 V, respectively. More importantly, the performance for OER is even better than that of IrO_(2), the conventional noble metal electrocatalyst. These striking observations were interpreted in terms of the combination of strongly synergistic effect of multimetal components, large amount of exposed active site, and superaerophobia. The present methodology has been confirmed universal for synthesizing other molybdate solid solutions, which would open up new possibilities for designing novel non-noble bifunctional electrocatalysts for OER and HER.
机译:合理设计用于氧气析出反应(OER)和氢气析出反应(HER)的高效且价格低廉的双功能电催化剂,对于实现太阳能/电到氢能源转化过程至关重要。在这里,我们报告了一种合成方法,该方法可导致原位生长MoS_(2)超薄MoS_(2)纳米片和过渡金属二硫化物纳米晶到Fe_(1 / 3Co_(1/3)Ni_(1/3)MoO_ (4)首次纳米棒。发现这些杂化物可作为双功能电催化剂,对OER和HER具有较高的活性,在1.53 V和±0.25 V时分别具有令人印象深刻的10 mA cm〜(-2)的阳极和阴极电流密度代表。更重要的是,OER的性能甚至优于传统的贵金属电催化剂IrO_(2)。这些惊人的观察结果是根据多金属成分的强协同作用,大量暴露的活性位点和超级厌氧症的组合来解释的。已经证实本方法学可用于合成其他钼酸盐固溶体,这将为设计用于OER和HER的新型非贵金属双功能电催化剂开辟新的可能性。

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