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Transition metal atom doping of the basal plane of MoS2 monolayer nanosheets for electrochemical hydrogen evolution

机译:MoS2单层纳米片基面的过渡金属原子掺杂,用于电化学析氢

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Surface sites of extensively exposed basal planes of MoS _(2) monolayer nanosheets, prepared via BuLi exfoliation of MoS _(2) , have been doped with transition metal atoms for the first time to produce 2D monolayer catalysts used for the electrochemical hydrogen evolution reaction (HER). Their HER activity is significantly higher than the corresponding thin and bulk MoS _(2) layers. HAADF-STEM images show direct proof that single transition metal atoms reside at the surface basal sites, which subtly modify the electro-catalytic activity of the monolayer MoS _(2) , dependent on their electronic and stereospecific properties. It is found that these dopants play an important role in tuning the hydrogen adsorption enthalpies of the exposed surface S atoms and Mo atoms in HER. We report electrochemical testing, characterization and computational modelling and demonstrate that Co can significantly enhance the HER activity by the dominant Co–S interaction, whereas Ni substantially lowers the HER rate due to the Ni–Mo interaction at the same basal site. The two transition metal dopants show opposite doping behavior despite the fact that they are neighbors in the periodic table.
机译:通过BuLi剥落MoS _(2)制备的MoS _(2)单层纳米片的广泛暴露的基础平面的表面位点首次掺杂了过渡金属原子,以生产用于电化学氢释放反应的2D单层催化剂(她)。它们的HER活性明显高于相应的薄MoS _(2)层。 HAADF-STEM图像直接证明了单个过渡金属原子存在于表面基础位点,根据其电子和立体特异性,它们可以巧妙地修饰单层MoS _(2)的电催化活性。发现这些掺杂剂在​​调节HER中暴露的表面S原子和Mo原子的氢吸附焓方面起重要作用。我们报告了电化学测试,表征和计算模型,并证明了Co可以通过显着的Co-S相互作用显着增强HER活性,而Ni由于在同一基础位置发生Ni-Mo相互作用而大大降低了HER发生率。尽管这两种过渡金属掺杂剂在元素周期表中是相邻的,但它们却显示出相反的掺杂行为。

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