Key Laboratory for Green Chemical Technology of the Ministry of Education, School of Chemical Engineering and Technology, Tianjin University , Tianjin 300072, China.
Collaborative Innovative Center of Chemical Science and Engineering (Tianjin) , Tianjin 300072, China.
J Am Chem Soc. 2016 Feb 3;138(4):1359-65. doi: 10.1021/jacs.5b11986. Epub 2016 Jan 26.
The development of highly active, universal, and stable inexpensive electrocatalysts/cocatalysts for hydrogen evolution reaction (HER) by morphology and structure modulations remains a great challenge. Herein, a simple self-template strategy was developed to synthesize hollow Co-based bimetallic sulfide (MxCo3-xS4, M = Zn, Ni, and Cu) polyhedra with superior HER activity and stability. Homogenous bimetallic metal-organic frameworks are transformed to hollow bimetallic sulfides by solvothermal sulfidation and thermal annealing. Electrochemical measurements and density functional theory computations show that the combination of hollow structure and homoincorporation of a second metal significantly enhances the HER activity of Co3S4. Specifically, the homogeneous doping in Co3S4 lattice optimizes the Gibbs free energy for H* adsorption and improves the electrical conductivity. Impressively, hollow Zn0.30Co2.70S4 exhibits electrocatalytic HER activity better than most of the reported nobel-metal-free electrocatalysts over a wide pH range, with overpotentials of 80, 90, and 85 mV at 10 mA cm(-2) and 129, 144, and 136 mV at 100 mA cm(-2) in 0.5 M H2SO4, 0.1 M phosphate buffer, and 1 M KOH, respectively. It also exhibits photocatalytic HER activity comparable to that of Pt cocatalyst when working with organic photosensitizer (Eosin Y) or semiconductors (TiO2 and C3N4). Furthermore, this catalyst shows excellent stability in the electrochemical and photocatalytic reactions. The strategy developed here, i.e., homogeneous doping and self-templated hollow structure, provides a way to synthesize transition metal sulfides for catalysis and energy conversion.
通过形貌和结构调控开发高效、通用且廉价的电催化剂/共催化剂对于促进析氢反应(HER)具有重要意义。在此,我们提出了一种简便的自模板策略,用于合成具有优异 HER 活性和稳定性的空心 Co 基双金属硫化物(MxCo3-xS4,M = Zn、Ni 和 Cu)多面体。均一的双金属金属有机骨架通过溶剂热硫化和热退火转化为空心双金属硫化物。电化学测量和密度泛函理论计算表明,空心结构和同晶取代的协同作用显著提高了 Co3S4 的 HER 活性。具体而言,Co3S4 晶格中的均匀掺杂优化了 H*吸附的吉布斯自由能,并提高了电导率。令人印象深刻的是,空心 Zn0.30Co2.70S4 在很宽的 pH 范围内表现出优于大多数报道的无贵金属析氢催化剂的电催化 HER 活性,在 0.5 M H2SO4、0.1 M 磷酸盐缓冲液和 1 M KOH 中,在 10 mA cm-2 时的过电势分别为 80、90 和 85 mV,在 100 mA cm-2 时的过电势分别为 129、144 和 136 mV。当与有机光敏剂(曙红 Y)或半导体(TiO2 和 C3N4)一起工作时,它还表现出与 Pt 共催化剂相当的光催化 HER 活性。此外,该催化剂在电化学和光催化反应中表现出优异的稳定性。所提出的这种均一掺杂和自模板空心结构的策略为合成用于催化和能量转换的过渡金属硫化物提供了一种方法。