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Molecular Vibrations of an Oxygen-Evolving Complex and Its Synthetic Mimic

机译:氧化复合物的分子振动及其合成模拟物

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Bio-inspired catalysis for artificial photosynthesis has been widely studied for decades, in particular, with the purpose of using bio-disposable and non-toxic metals as building blocks. The characterisation of such catalysts has been achieved by using different kinds of spectroscopic methods, from X-ray crystallography to NMR spectroscopy. An artificial Mn_4CaO_4 cubane cluster with dangling Mn4 was synthesised in 2015 [Zhang et al. Science 2015, 348, 690- 693]; this cluster showed many structural similarities to that of the natural oxygen-evolving complex. An accurate structural and spectroscopic comparison between the natural and artificial systems is highly relevant to understand the catalytic mechanism. Among data from different techniques, the differential FTIR spectra (S_(n+1)-S_n) of photosystem II are still lacking a complete interpretation. The availability of IR data of the artificial cluster offers a unique opportunity to assign absolute absorption spectra on a well-defined and easier to interpret analogous moiety. The present work aims to investigate the novel inorganic compound as a model system for an oxygen-evolving complex through measurement of its spectroscopic properties. The experimental results are compared with calculations by using a variety of theoretical methods (normal mode analysis, effective normal mode analysis) in the S1 state. We underline the similarities and the differences in the computational spectra based on atomistic models of Mn_4CaO_5 and Mn_4CaO_4 complexes.
机译:人造光合作用的生物启发催化已经广泛研究了几十年,特别是使用生物一次性和无毒金属作为构建块。通过使用不同种类的光谱方法,从X射线晶体学到NMR光谱来实现这种催化剂的表征。 2015年合成了具有悬空MN4的人造Mn_4CaO_4副簇簇[张等人。科学2015,348,690-693];该集群显示出与天然氧化复合物的结构相似。自然和人工系统之间的精确结构和光谱比较与理解催化机制非常相关。在来自不同技术的数据中,光照系统II的差分FTIR光谱(S_(n + 1)-s_n)仍缺乏完整的解释。人工集群的IR数据的可用性提供了一个独特的机会,可以在明确统治和更容易解释类似部分的情况下分配绝对吸收光谱。本作者的目的旨在通过测量其光谱性能来研究新的无机化合物作为氧化复合物的模型系统。通过使用S1状态下使用各种理论方法(正常模式分析,有效正常模式分析)来比较实验结果。基于MN_4CAO_5和MN_4CAO_4复合物的原子模型强调了计算谱的相似性和差异。

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