Ravi Athira, Mulkapuri Sateesh, Das Samar K
School of Chemistry, University of Hyderabad, P.O. Central University, Hyderabad 500046, India.
Inorg Chem. 2023 Aug 14;62(32):12650-12663. doi: 10.1021/acs.inorgchem.3c00423. Epub 2023 May 26.
A sole inorganic framework material [Li(HO)][{Cu(HO)} {Cu(HO)}{WO(OH)}]·N·HS·3HO () consisting of a hydroxylated polyoxometalate (POM) anion, {WO(OH)}, a mixed-valent Cu(II)- and Cu(I)-aqua cationic complex species, [{Cu(HO)}{Cu(HO)}], a Li(I)-aqua complex cation, and three solvent molecules, has been synthesized and structurally characterized. During its synthesis, the POM cluster anion gets functionalized with six hydroxyl groups, i.e., six W-OH groups per cluster unit. Moreover, structural and spectral analyses have shown the presence of HS and N molecules in the concerned crystal lattice, formed from "sulfate-reducing ammonium oxidation (SRAO)". Compound functions as a bifunctional electrocatalyst exhibiting oxygen evolution reaction (OER) by water oxidation and hydrogen evolution reaction (HER) by water reduction at the neutral pH. We could identify that the hydroxylated POM anion and copper-aqua complex cations are the functional sites for HER and OER, respectively. The overpotential, required to achieve a current density of 1 mA/cm in the case of HER (water reduction), is found to be 443 mV with a Faradaic efficiency of 84% and a turnover frequency of 4.66 s. In the case of OER (water oxidation), the overpotential needed to achieve a current density of 1 mA/cm is obtained to be 418 mV with a Faradaic efficiency of 80% and turnover frequency of 2.81 s. Diverse electrochemical controlled experiments have been performed to conclude that the title POM-based material functions as a true bifunctional catalyst for electrocatalytic HER as well as OER at the neutral pH without catalyst reconstruction.
一种单一的无机骨架材料[Li(HO)][{Cu(HO)} {Cu(HO)}{WO(OH)}]·N·HS·3HO ()已被合成并进行了结构表征,它由一个羟基化的多金属氧酸盐(POM)阴离子{WO(OH)}、一个混合价态的Cu(II)-和Cu(I)-水合阳离子络合物[{Cu(HO)}{Cu(HO)}]、一个Li(I)-水合络合阳离子以及三个溶剂分子组成。在其合成过程中,POM簇阴离子被六个羟基官能化,即每个簇单元有六个W-OH基团。此外,结构和光谱分析表明,在相关晶格中存在由“硫酸盐还原铵氧化(SRAO)”形成的HS和N分子。化合物 在中性pH值下通过水氧化表现出析氧反应(OER),通过水还原表现出析氢反应(HER),起到双功能电催化剂的作用。我们可以确定,羟基化的POM阴离子和铜-水络合阳离子分别是HER和OER的功能位点。在HER(水还原)情况下,达到1 mA/cm电流密度所需的过电位为443 mV,法拉第效率为84%,周转频率为4.66 s。在OER(水氧化)情况下,达到1 mA/cm电流密度所需的过电位为418 mV,法拉第效率为80%,周转频率为2.81 s。已经进行了各种电化学控制实验,以得出结论:标题中基于POM的材料在中性pH值下作为真正的双功能催化剂用于电催化HER以及OER,无需催化剂重构。