Qi Shengliang, Zhu Kaixin, Xu Ting, Zhang Hefeng, Guo Xiangyang, Wang Junhui, Zhang Fuxiang, Zong Xu
Marine Engineering College, Dalian Maritime University, Linghai Road 1, Dalian, 116026, China.
State Key Laboratory of Catalysis, Dalian Institute of Chemical Physics, The Collaborative Innovation Centre of Chemistry for Energy Materials (iChEM), Dalian National Laboratory for Clean Energy, Chinese Academy of Sciences, Dalian, 116023, China.
Adv Mater. 2024 Jun;36(26):e2403328. doi: 10.1002/adma.202403328. Epub 2024 Apr 8.
Metal-organic frameworks (MOFs) have emerged as promising platforms for photocatalytic hydrogen evolution reaction (HER) due to their fascinating physiochemical properties. Rationally engineering the compositions and structures of MOFs can provide abundant opportunities for their optimization. In recent years, high-entropy materials (HEMs) have demonstrated great potential in the energy and environment fields. However, there is still no report on the development of high-entropy MOFs (HE-MOFs) for photocatalytic HER in aqueous solution. Herein, the authors report the synthesis of a novel p-type HE-MOFs single crystal (HE-MOF-SC) and the corresponding HE-MOFs nanosheets (HE-MOF-NS) capable of realizing visible-light-driven photocatalytic HER. Both HE-MOF-SC and HE-MOF-NS exhibit higher photocatalytic HER activity than all the single-metal MOFs, which are supposed to be ascribed to the interplay between the different metal nodes in the HE-MOFs that enables more efficient charge transfer. Moreover, impressively, the HE-MOF-NS demonstrates much higher photocatalytic activity than the HE-MOF-SC due to its thin thickness and enhanced surface area. At optimum conditions, the rate of H evolution on the HE-MOF-NS is ≈13.24 mmol h g, which is among the highest values reported for water-stable MOF photocatalysts. This work highlights the importance of developing advanced high-entropy materials toward enhanced photocatalysis.
金属有机框架材料(MOFs)因其迷人的物理化学性质,已成为光催化析氢反应(HER)的有前景的平台。合理设计MOFs的组成和结构可为其优化提供丰富机会。近年来,高熵材料(HEMs)在能源和环境领域已展现出巨大潜力。然而,关于用于水溶液中光催化HER的高熵MOFs(HE-MOFs)的开发尚无报道。在此,作者报道了一种新型p型HE-MOFs单晶(HE-MOF-SC)及相应的能够实现可见光驱动光催化HER的HE-MOFs纳米片(HE-MOF-NS)的合成。HE-MOF-SC和HE-MOF-NS均表现出比所有单金属MOFs更高的光催化HER活性,这应归因于HE-MOFs中不同金属节点之间的相互作用,其能实现更高效的电荷转移。此外,令人印象深刻的是,HE-MOF-NS由于其薄厚度和增大的表面积,表现出比HE-MOF-SC高得多的光催化活性。在最佳条件下,HE-MOF-NS上的析氢速率约为13.24 mmol h g,这是水稳定MOF光催化剂所报道的最高值之一。这项工作突出了开发先进高熵材料以增强光催化作用的重要性。