A Covalent Organic Framework for Cooperative Water Oxidation

被引:26
|
作者
Karak, Suvendu [1 ]
Stepanenko, Vladimir [1 ]
Addicoat, Matthew A. [2 ]
Kessler, Philipp [3 ,4 ]
Moser, Simon [3 ,4 ]
Beuerle, Florian [1 ,5 ]
Wuerthner, Frank [1 ,5 ]
机构
[1] Julius Maximilians Univ Wurzburg, Inst Organ Chem, D-97074 Wurzburg, Germany
[2] Nottingham Trent Univ, Sch Sci & Technol, Nottingham NG11 8NS, England
[3] Univ Wurzburg, Phys Inst, D-97074 Wurzburg, Germany
[4] Univ Wurzburg, Wurzburg Dresden Cluster Excellence Ct Qmat, D-97074 Wurzburg, Germany
[5] Julius Maximilians Univ Wurzburg, Ctr Nanosyst Chem CNC, D-97074 Wurzburg, Germany
基金
英国工程与自然科学研究理事会; 欧洲研究理事会;
关键词
HYDROGEN-PRODUCTION; CATALYST; CRYSTALLINE;
D O I
10.1021/jacs.2c07282
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The future of water-derived hydrogen as the "sustainable energy source " straightaway bets on the success of the sluggish oxygen-generating half-reaction. The endeavor to emulate the natural photosystem II for efficient water oxidation has been extended across the spectrum of organic and inorganic combinations. However, the achievement has so far been restricted to homogeneous catalysts rather than their pristine heterogeneous forms. The poor structural understanding and control over the mechanistic pathway often impede the overall development. Herein, we have synthesized a highly crystalline covalent organic framework (COF) for chemical and photochemical water oxidation. The interpenetrated structure assures the catalyst stability, as the catalyst's performance remains unaltered after several cycles. This COF exhibits the highest ever accomplished catalytic activity for such an organometallic crystalline solid-state material where the rate of oxygen evolution is as high as & SIM;26,000 mu mol L-1 s-1 (second-order rate constant k & AP; 1650 mu mol L s-1 g-2). The catalyst also proves its exceptional activity (k & AP; 1600 mu mol L s-1 g-2) during light-driven water oxidation under very dilute conditions. The cooperative interaction between metal centers in the crystalline network offers 20-30-fold superior activity during chemical as well as photocatalytic water oxidation as compared to its amorphous polymeric counterpart.
引用
收藏
页码:17661 / 17670
页数:10
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