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首页> 外文期刊>Nanoscale >S-Edge-rich MoxSy arrays vertically grown on carbon aerogels as superior bifunctional HER/OER electrocatalysts
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S-Edge-rich MoxSy arrays vertically grown on carbon aerogels as superior bifunctional HER/OER electrocatalysts

机译:S-Edge-rich MoxSy阵列垂直生长碳气凝胶作为优越的双官能她/ OERelectrocatalysts

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摘要

Molybdenum disulfide (MoS2) is a potential earth-abundant electrocatalyst for the hydrogen evolution reaction (HER), but the lack of in-depth understanding of its intrinsic activity still impedes the further optimization and design of MoS2-based electrocatalysts. Herein, we report a facile in situ hydrothermal synthetic method to prepare vertical MoxSy arrays grown on guar gum-derived carbon aerogels (GCA), termed MoxSy@GCA. The obtained well-assembled MoxSy@GCA architectures consist of uniform, few-layered and S-edge-rich MoxSy nanoflakes with a length of approximately 100 nm, which effectively prevent the inherent stacking among MoxSy layers and connect the charge transfer path between interlayers, thus endowing MoxSy@GCA with a huge number of active sites and high conductivity. Benefitting from all these advantages, the optimal Mo4S16@GCA exhibited extraordinary HER/OER performances, including a low onset potential for both the HER (24.28 mV) and OER (1.53 V), and a low overpotential at 10 mA cm(-2) for the HER (54.13 mV) and OER (370 mV), which are both extremely close to that of the noble Pt/C. Furthermore, a series of operando Raman spectroscopy measurements on Mo4S16@GCA were conducted to identify the intrinsic HER/OER-active sites during the HER and OER process. The results show that the S-H bond is generated simultaneously as HER/OER excitation, indicating the rich S-edge may be the intrinsic active site, which will accelerate the HER/OER kinetic process. Density functional theory (DFT) calculations revealed that the observed superb HER/OER activity can be attributed to the synergistic effect of rich S-edge of MoxSy and confinement effect of GCA, which collaboratively promote the proton adsorption and electrocatalytic kinetics. Reasonably, this study will have profound guiding value for the rational tailoring of the microstructure and size of transition metal electrocatalysts via hierarchical porous carbon aerogels.
机译:二硫化钼(监理)是一个潜在的地球上充足electrocatalyst氢进化反应(她),但缺乏深入理解其内在活性仍然阻碍进一步的优化和设计的MoS2-based electrocatalysts。一个灵巧的原位水热合成的方法准备垂直MoxSy阵列生长在瓜尔豆gum-derived碳气凝胶(GCA),称为MoxSy@GCA。体系结构包括制服,一些层次化的和S-edge-rich MoxSy nanoflakes长度大约100海里,有效防止MoxSy层和之间的固有的叠加连接之间的电荷转移路径夹层,从而赋予MoxSy@GCA巨大活性中心的数量和高导电率。受益于所有这些优势,最优Mo4S16@GCA表现出非凡的她/ OER表演,包括低发病潜在的(24.28 mV)和OER(1.53 V)和较低的超电势马10厘米(2)她的(54.13 mV)和OER (370 mV)都是非常接近的高贵Pt / C。光谱测量在Mo4S16@GCA进行识别的内在在她和OER她/ OER-active网站的过程。生成的同时她/ OER励磁,表明富人S-edge可能是内在的活性位点,这将加速她/ OER动力学过程。计算结果显示,观察到的她可以归因于/ OER活动协同效应的S-edge MoxSy和丰富甘氨胆酸的约束效应,协作促进质子吸附和electrocatalytic动力学。将有深远的指导价值的理性裁剪的微观结构和大小过渡金属electrocatalysts通过分级多孔碳气凝胶。

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