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Nano-sized manganese oxides as biomimetic catalysts for water oxidation in artificial photosynthesis: a review

机译:纳米级锰氧化物作为人造光合作用中水氧化的仿生催化剂

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摘要

There has been a tremendous surge in research on the synthesis of various metal compounds aimed at simulating the water-oxidizing complex (WOC) of photosystem II (PSII). This is crucial because the water oxidation half reaction is overwhelmingly rate-limiting and needs high over-voltage (approx. 1 V), which results in low conversion efficiencies when working at current densities required for hydrogen production via water splitting. Particular attention has been given to the manganese compounds not only because manganese has been used by nature to oxidize water but also because manganese is cheap and environmentally friendly. The manganese–calcium cluster in PSII has a dimension of about approximately 0.5 nm. Thus, nano-sized manganese compounds might be good structural and functional models for the cluster. As in the nanometre-size of the synthetic models, most of the active sites are at the surface, these compounds could be more efficient catalysts than micrometre (or bigger) particles. In this paper, we focus on nano-sized manganese oxides as functional and structural models of the WOC of PSII for hydrogen production via water splitting and review nano-sized manganese oxides used in water oxidation by some research groups.
机译:旨在模拟光系统II(PSII)的水氧化配合物(WOC)的各种金属化合物的合成研究已迅速发展。这是至关重要的,因为水氧化半反应具有极大的限速作用,并且需要高的过电压(约1 V),这导致在通过水分解制氢所需的电流密度下工作时转换效率低。锰化合物受到特别关注不仅是因为锰已被自然界用来氧化水,而且因为锰便宜且对环境友好。 PSII中的锰钙簇的尺寸约为0.5 nm。因此,纳米锰化合物可能是该簇的良好结构和功能模型。正如在合成模型的纳米尺寸中一样,大多数活性部位都在表面,这些化合物可能比微米(或更大)的颗粒更有效。在本文中,我们将纳米级锰氧化物作为PSII通过水分解制氢的功能性和结构模型的WOII的功能和结构模型,并审查了一些研究小组在水氧化中使用的纳米级锰氧化物的研究。

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