Rhee Young Min, Head-Gordon Martin
Department of Chemistry, University of California, and Chemical Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA.
J Am Chem Soc. 2008 Mar 26;130(12):3878-87. doi: 10.1021/ja0764916. Epub 2008 Mar 4.
Transition metal atoms often participate in redox reactions as catalytic sites, where ligand groups play an important role in orchestrating catalytic activity, especially in metalloenzymes. A major issue is to understand connections between oxidation state and geometry at the metal center, because geometric reorganization is directly related to reaction rate. In this article, we analyze an intriguing oxidation-induced geometrical change in [Cu-P-Cu-P] ring structures ( approximately 0.6 A change in metal-metal distance) using quantum chemical approaches. We find that the Cu-P interactions in the ring of the neutral species consist of four localized P --> Cu dative bonds. Successive oxidations extract electrons predominantly from P atoms on the ring rather than Cu sites. It emerges that as a result, the Cu-P interactions change and also exhibit partial Cu(3d) --> P donation, which causes the large distortion in geometry. We also find that the dication possesses a large degree of diradical character, forming a rare example of an observed species that is a singlet diradicaloid. This hypothesis is supported by our computational results as well as previously reported experimental features.
过渡金属原子常常作为催化位点参与氧化还原反应,在这些反应中,配体基团在调节催化活性方面起着重要作用,尤其是在金属酶中。一个主要问题是要理解金属中心的氧化态与几何结构之间的联系,因为几何结构的重组与反应速率直接相关。在本文中,我们使用量子化学方法分析了[Cu-P-Cu-P]环结构中一种有趣的氧化诱导几何变化(金属-金属距离变化约0.6 Å)。我们发现中性物种环中的Cu-P相互作用由四个局域化的P→Cu配位键组成。连续氧化主要从环上的P原子而非Cu位点提取电子。结果表明,Cu-P相互作用发生变化,并且还表现出部分Cu(3d)→P的电子给予,这导致了几何结构的大畸变。我们还发现二价阳离子具有很大程度的双自由基特征,形成了一个观察到的单重态双自由基样物种的罕见例子。我们的计算结果以及先前报道的实验特征支持了这一假设。