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首页> 外文期刊>Nanoscale >Sulfur defect rich Mo-Ni3S2 QDs assisted by O-C=O chemical bonding for an efficient electrocatalytic overall water splitting
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Sulfur defect rich Mo-Ni3S2 QDs assisted by O-C=O chemical bonding for an efficient electrocatalytic overall water splitting

机译:硫缺陷协助下丰富的量子点Mo-Ni3S2 O c = O化学成键的高效electrocatalytic总体水分裂

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Developing earth-abundant and highly efficient electrocatalysts is critical for further development of a system. The metal (M) doping strategy and inorganic/organic composite are two common strategies to improve the performance of electrocatalysts for overall water splitting (OWS). In this paper, two strategies are subtly used to prepare Mo-Ni3S2 quantum dots (QDs) with rich sulfur defects through Mon+ doping Ni3S2 and introduction of trisodium citrate by a two-step hydrothermal reaction. Results show that high sulfur defects can be controllably prepared as the lattice mismatch and active sites can be efficiently increased via Mon+ doping. Moreover, the introduction of trisodium citrate with carboxyl functional groups not only enhances the degree of sulfur defects around the metal center, changes the morphology of sulfide to distribute the active centers evenly, but also endow the metal center with strong valence changing ability with organic characteristics. The in situ Raman study reveals that O-C=O promotes the formation of the real active site M-OOH by the way of self-sacrifice during the OER process. Mo-Ni3S2 QDelectrocatalyst shows excellent performance in the hydrogen evolution reaction (HER) and oxygen evolution reaction (OER), achieving a current density of 10 mA cm(-2) at the overpotentials of 115 mV and 222 mV with very good chemical stability, superior than that of most of the reported materials. The OWS reaction can provide a current density of 10 mA cm(-2) and 50 mA cm(-2), which only needs 1.53 V and 1.74 V with excellent industrial application prospects.
机译:地球上充足、高效发展electrocatalysts进一步是至关重要的一个系统的发展。战略和无机/有机复合两种常见的策略来提高性能electrocatalysts整体水分裂(OWS)。用于准备Mo-Ni3S2量子点(量子点)丰富的硫通过Mon +掺杂Ni3S2和缺陷采用柠檬酸三钠的两步热液反应。硫缺陷可以可控的准备晶格失配和活跃的网站有效地增加了通过我的+掺杂。采用柠檬酸三钠的羧基官能团不仅增强了程度的硫缺陷的金属中心周围,硫化分发的形态变化活性中心均匀,但也赋予金属中心价变化能力强有机特色。研究显示,O c = O促进形成真正的活性部位M-OOH顺便说一下的OER过程中自我牺牲。QDelectrocatalyst显示了优良的性能(她)和氧氢进化反应进化反应(OER),实现电流马10厘米(2)密度的过电压115 mV和222 mV与很好的化学稳定性、优越的比大多数报道材料。电流密度的马10厘米(2)和50 mA厘米(2),只需要1.53 V和1.74 V良好的工业应用前景。

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