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Hypothesis: the peroxydicarbonic acid cycle in photosynthetic oxygen evolution

机译:假设:光合氧气释放中的过氧二碳酸循环

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Peroxydicarbonic acid (Podca), a proposed intermediate in photosynthetic oxygen evolution, was synthesized electrochemically. Consistent with literature descriptions of this compound, it was shown to be a highly reactive molecule, spontaneously hydrolyzed to H2O2, as well as susceptible to oxidative and reductive decomposition. In the presence of Mn2+ or Co2+, Podca was quickly broken down with release of O2. The liberation of O2, however, was partially suppressed at high O2 concentrations. In the presence of Ca-washed photosystem II-enriched membranes lacking extrinsic proteins, Podca was decomposed with the release of O2, but only under conditions favoring photosynthetic electron flow (light plus a Hill oxidant). A model is proposed that details how peroxydicarbonic acid could act as an oxygen-evolving intermediate. The hypothesis is consistent with the well-established Kok model and with recent findings related to the chemistry of oxygen evolution.
机译:过氧二碳酸(Podca)是光合作用的氧气释放的中间体,是通过电化学方法合成的。与该化合物的文献描述一致,该化合物被证明是一种高反应性分子,可自发水解为H2O2 ,并且易于氧化分解。在Mn2 + 或Co2 + 的存在下,Podca迅速分解并释放出O2 。然而,在高浓度的O2 下,O2的释放受到了部分抑制。在缺少外部蛋白的经过Ca冲洗的富集光系统II的膜的存在下,Podca随O2的释放而分解,但仅在有利于光合电子流(光加Hill氧化剂)的条件下发生。提出了一个模型,该模型详细说明了过氧二碳酸如何充当释氧中间体。该假设与公认的Kok模型以及与氧释放化学有关的最新发现是一致的。

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