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Photo-assisted water oxidation by high-nuclearity cobalt-oxo cores: tracing the catalyst fate during oxygen evolution turnover

机译:高核钴 - 氧气核心的照片辅助水氧化:在氧气进化周转过程中追踪催化剂命运

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摘要

Multi-nuclear cobalt cores have been proposed as molecular analogues of the natural oxygen evolving complex, enabling water oxidation for artificial photosynthesis schemes and the production of solar fuels. In particular, cobalt containing polyoxometalates (Co-POMs) display a record activity as water oxidation catalysts (WOCs) in terms of the turnover number, turnover frequency, and quantum yield, when combined in a light activated oxygen evolving cycle with Ru(bpy)32+ (bpy = 2,2’-bipyridine) as the photosensitizer. The unique behavior of high-nuclearity cobalt clusters is addressed herein by employing Co-POMs with Co ≥9 as molecular WOCs. The temporal dissection of the catalytic events is framed herein to investigate the initial photo-induced electron transfer (ET) occurring in the micro-to-millisecond time domain, and followed by the oxygen evolution kinetics taking place within a minute-to-hours regime. In particular, flash photolysis shows ET from the Co-POM to photogenerated Ru(bpy)33+ with well-behaved diffusional kinetics (bimolecular rate constants in the range kET = 2.1–5.0 × 109 M−1 s−1) and counting up to 32 ET events in a 60 ms timeframe. The evolution of the Co-POMs is then traced under oxygenic conditions, where infrared and X-ray absorption spectroscopy (XAS) indicate that POM based structures are competent catalysts under the photo-assisted turnover regime.
机译:多核钴芯已经提出为天然氧气不断发展复合物的分子类似物,使防水性光合作用方案和太阳能燃料的生产。特别地,含有多氧酸盐酸盐(Co-POMS)的钴在转备数,周转频率和量子产率方面显示作为水氧化催化剂(WOC)的记录活性,当与Ru(BPY)的光激活的氧不动循环中组合时32+(BPY = 2,2'-Biphyridine)作为光敏剂。通过使用CO≥9作为分子WOC的共同POMS来解决高核电钴簇的独特行为。催化事件的时间解剖在本文中令人置摸,以研究在微 - 毫秒的时域中发生的初始光诱导的电子转移(ET),然后在分钟到小时内制造氧气进化动力学。特别地,闪光光解显示ET从CO-POM到光生成的Ru(BPY)33+,具有良好表现良好的扩散动力学(在范围内= 2.1-5.0×109 m-1 S-1的双分子率常数)并计入在60毫秒的时间框架中到32 et事件。联合多金属氧酸盐的演变然后含氧的条件下,其中,红外线和X射线吸收光谱(XAS)表明,基于POM结构是光辅助周转制度下主管催化剂下跟踪。

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