首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Tuning the surface charge density of exfoliated thin molybdenum disulfide sheets via non-covalent functionalization for promoting hydrogen evolution reaction
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Tuning the surface charge density of exfoliated thin molybdenum disulfide sheets via non-covalent functionalization for promoting hydrogen evolution reaction

机译:通过非共价官能化调节剥离薄钼二硫化物片的表面电荷密度,以促进氢气进化反应

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The scalable and facile generation of hydrogen fuel via water splitting requires robust and cost-effective earth-abundant electrocatalysts for hydrogen evolution reaction (HER). We report for the first time that the surface charge density of exfoliated monolayer molybdenum disulfide (MoS2) sheets can be successfully tuned with the assistance of exfoliants, such as pyridinium tribromide (py), imidazole (im), and chlorophyll (ch), and thereby significantly influence the kinetics of the HER. The surface charge potential of the exfoliated monolayer py-MoS2, im-MoS2, and ch-MoS2 sheets are -33 mV, -22 mV and -2 mV, respectively. As the surface charge potential approaches zero, the Tafel slope required varies from 140 mV dec-1 for py-MoS2 to 45 mV dec(-1) for ch-MoS2. Moreover, to achieve real-world applications, the exfoliated thin ch-MoS2 sheets were fabricated to form flexible composite papers, and they exhibited excellent electrocatalytic activity with further enhanced Tafel slope of 35 mV dec(-1), which is nearly identical to that of bulk Pt, "the gold standard'' for HER, an ultra-low onset potential of -42 mV and over 100 h of electrochemical durability. This convenient non-covalent functionalization method provides opportunities for many other applications of exfoliated thin MoS2 sheets and other two-dimensional transition metal dichalcogenides (2D-TMDCs).
机译:通过水分解的氢燃料的可伸缩和容易产生需要鲁棒和具有成本效益的地球丰富的电催化剂,用于氢进化反应(她)。我们首次报告了剥落的单层钼二硫化钼(MOS2)片材的表面电荷密度可以在剥离型(Py),咪唑(IM)和叶绿素(CH)的辅助方案中成功地调整剥离的单层钼二硫化钼(MOS2)片材(MOS2)片材。因此,显着影响她的动力学。剥离的单层Py-MOS2,IM-MOS2和CH-MOS2片材的表面充电电位分别为-33mV,-22mV和-2 mV。随着表面电荷电位接近零,所需的TAFEL斜率从140 mV DEC-1变化为CH-MOS2的PY-MOS2至45mV DEC(-1)。此外,为了实现现实世界的应用,制造出剥离的薄CH-MOS2片材以形成柔性复合纸,它们具有出色的电催化活性,具有35 mV DEC(-1)的进一步增强的TAFEL斜率,这几乎与此相同Bulk Pt,“金标”为她,电化学耐久性的超低发病潜力,电化学耐用性超过100小时。这种方便的非共价官能化方法为剥离薄MOS2板材的许多其他应用提供了机会。其他二维过渡金属二均甲基化物(2D-TMDC)。

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