State Key Laboratory of Catalysis, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian National Laboratory for Clean Energy, The Collaborative Innovation Center of Chemistry for Energy Materials (iChEM), Dalian, 116023, China.
University of Chinese Academy of Sciences, No. 19(A) Yuquan Road, Beijing, 100049, P. R. China.
Adv Mater. 2018 Nov;30(44):e1803401. doi: 10.1002/adma.201803401. Epub 2018 Sep 17.
The development of new metal-organic frameworks (MOFs) with dual functions of both water reduction and oxidation under visible-light irradiation is highly desirable for promising solar water splitting, but is not yet reported. Herein, a cadmium-based MOF (denoted as "Cd-TBAPy") single crystal with a 2D layered framework by employing 1,3,6,8-tetrakis(p-benzoic acid)pyrene (H TBAPy) as an organic linker is reported, which exhibits good visible-light absorption with edge of ≈600 nm. The Mott-Schottky (M-S) measurement and UV-vis analysis integrally reveal that the Cd-TBAPy is an n-type semiconductor with a bandgap of ≈2.15 eV whose conduction and valence band are estimated to be -0.05 and 2.10 eV, respectively. Together with loading of Pt or CoPi cocatalyst, the Cd-TBAPy is active for both water reduction and oxidation in the presence of scavengers under visible-light irradiation. Especially, the optimized apparent quantum efficiency for O evolution reaches 5.6% at 420 nm, much higher than that of previous MOF-based photocatalysts reported so far. This is thought to be the first MOF that functions as a photocatalyst for both water reduction and oxidation under visible light, demonstrating the intriguing future of MOF materials in solar-to-chemical energy conversion.
开发在可见光照射下具有还原和氧化双重功能的新型金属有机骨架(MOFs)对于有前途的太阳能水分解是非常理想的,但目前尚未有报道。本文报道了一种基于镉的 MOF(记为“Cd-TBAPy”)单晶,其二维层状骨架由 1,3,6,8-四(对苯二甲酸)芘(H TBAPy)作为有机配体合成,具有良好的可见光吸收能力,边缘约为 600nm。Mott-Schottky(M-S)测量和 UV-vis 分析综合表明,Cd-TBAPy 是一种 n 型半导体,带隙约为 2.15eV,其导带和价带分别估计为-0.05 和 2.10eV。与 Pt 或 CoPi 共催化剂负载一起,Cd-TBAPy 在可见光照射下存在清除剂时可同时进行水还原和氧化。特别是,在 420nm 时,优化后的 O 2 演化表观量子效率达到 5.6%,远高于迄今为止报道的其他基于 MOF 的光催化剂。这被认为是首例在可见光下同时具有还原和氧化功能的 MOF 光催化剂,展示了 MOF 材料在太阳能转化为化学能方面的诱人未来。