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Uncovering the Role of Countercations in Ligand Exchange of WSe2: Tuning the d-Band Center toward Improved Hydrogen Desorption

机译:揭示了WSE2的配体交换中的反应的作用:调整D波段朝向改善的氢解吸

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The role of countercations that do not bind to core nanocrystals (NCs) but rather ensure charge balance on ligand-exchanged NC surfaces has been rarely studied and even neglected. Such a scenario is unfortunate, as an understanding of surface chemistry has emerged as a key factor in overcoming colloidal NC limitations as catalysts. In this work, we report on the unprecedented role of countercations in ligand exchange for a colloidal transition metal dichalcogenide (TMD), WSe_(2), to tune the d-band center toward the Fermi level for enhanced hydrogen desorption. Conventional long-chain organic ligands, oleylamine, of WSe_(2) NCs are exchanged with short atomic S~(2–) ligands having countercations to preserve the charge balance (WSe_(2)/S~(2–)/M~(+), M = Li, Na, K). Upon exchange with S~(2–) ligands, the charge-balancing countercations are intercalated between WSe_(2) layers, thereby serving a unique function as an electrochemical hydrogen evolution reaction (HER) catalyst. The HER activity of ligand-exchanged colloidal WSe_(2) NCs shows a decrease in overpotential by down-shift of d-band center to induce more electron-filling in antibonding orbital and an increase in the electrochemical active surface area (ECSA). Exchanging surface functionalities with S~(2–) anionic ligands enhances HER kinetics, while the existence of intercalated countercations improves charge transfer with the electrolyte. The obtained results suggest that both anionic ligands and countercationic species in ligand exchange must be considered to enhance the overall catalytic activity of colloidal TMDs.
机译:不与核心纳米晶体(NCs)结合,而是确保配体交换NC表面电荷平衡的反阳离子的作用很少被研究,甚至被忽略。这种情况是不幸的,因为对表面化学的理解已经成为克服胶体NC作为催化剂的局限性的关键因素。在这项工作中,我们报道了反离子在胶体过渡金属二铝氰化物(TMD,WSe_2)的配位体交换中发挥的前所未有的作用,以将d带中心调整到费米水平,从而增强氢的脱附。WSe_2NCS的常规长链有机配体油胺与具有反阳离子的短原子S~(2-)配体交换以保持电荷平衡(WSe_2)/S~(2-)/M~(+),M=Li,Na,K)。在与S~(2-)配体交换后,电荷平衡的反离子插层在WSe_2)层之间,从而作为电化学析氢反应(HER)催化剂发挥独特的功能。配体交换的胶体WSe_2NCS的HER活性显示,d带中心下移导致反键轨道中的电子填充增加,从而降低过电位,并增加电化学活性表面积(ECSA)。与S~(2-)阴离子配体交换表面功能增强了她的动力学,而插层反阳离子的存在改善了与电解质的电荷转移。所得结果表明,为了提高胶体TMD的整体催化活性,必须考虑配体交换中的阴离子配体和反阳离子物种。

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