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氰基功能化的[FeFe]氢化酶模型化合物的超快光动力学

Ultrafast Photodynamics of Cyano-Functionalized [FeFe] Hydrogenase Model Compounds.

作者信息

Stromberg Christopher J, Heilweil Edwin J

机构信息

Department of Chemistry and Physics , Hood College , 401 Rosemont Avenue , Frederick , Maryland 21701-8524 , United States.

Engineering Physics Division, Physical Measurement Laboratory , National Institute of Standards and Technology , Gaithersburg , Maryland 20899-8443 , United States.

出版信息

J Phys Chem A. 2018 Apr 26;122(16):4023-4030. doi: 10.1021/acs.jpca.8b00661. Epub 2018 Apr 18.

Abstract

[FeFe] hydrogenases are efficient enzymes that produce hydrogen gas under mild conditions. Synthetic model compounds containing all CO or mixed CO/PMe ligands were previously studied by us and others with ultrafast ultraviolet or visible pump-infrared probe spectroscopy in an effort to better understand the function and interactions of the active site with light. Studies of anionic species containing cyano groups, which more closely match the biological active site, have been elusive. In this work, two model compounds dissolved in room-temperature acetonitrile solution were examined: [Fe(μ-SCH)(CO)(CN)] (1) and [Fe(μ-SCH)(CO)(CN)] (2). These species exhibit long-lived transient signals consistent with loss of one CO ligand with potential isomerization of newly formed ground electronic state photoproducts, as previously observed with all-CO and CO/PMe-containing models. We find no evidence for fast (ca. 150 ps) relaxation seen in the all-CO and CO/PMe compounds because of the absence of the metal-to-metal charge transfer band in the cyano-functionalized models. These results indicate that incorporation of cyano ligands may significantly alter the electronic properties and photoproducts produced immediately after photoexcitation, which may influence the catalytic activity of model compounds when attached to photosensitizers.

摘要

[铁铁]氢化酶是在温和条件下产生氢气的高效酶。我们和其他人之前曾用超快紫外或可见泵浦-红外探测光谱研究过含有全羰基或混合羰基/膦配体的合成模型化合物,以更好地理解活性位点与光的功能及相互作用。对含有氰基的阴离子物种的研究一直难以捉摸,而这些物种与生物活性位点更为匹配。在这项工作中,研究了两种溶解于室温乙腈溶液中的模型化合物:[Fe(μ-SCH)(CO)(CN)] (1) 和 [Fe(μ-SCH)(CO)(CN)] (2)。这些物种表现出长寿命的瞬态信号,这与一个羰基配体的损失以及新形成的基态光产物的潜在异构化一致,正如之前在含全羰基和含羰基/膦的模型中所观察到的那样。由于氰基官能化模型中不存在金属-金属电荷转移带,我们没有发现全羰基和羰基/膦化合物中出现的快速(约150皮秒)弛豫的证据。这些结果表明,氰基配体的引入可能会显著改变光激发后立即产生的电子性质和光产物,这可能会影响模型化合物与光敏剂连接时的催化活性。

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引用本文的文献

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Dynamic Flexibility of Hydrogenase Active Site Models Studied with 2D-IR Spectroscopy.
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Detection of Transient Intermediates Generated from Subsite Analogues of [FeFe] Hydrogenases.
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4
Spectroscopic Investigations of [FeFe] Hydrogenase Maturated with [(57)Fe2(adt)(CN)2(CO)4](2-).
J Am Chem Soc. 2015 Jul 22;137(28):8998-9005. doi: 10.1021/jacs.5b03270. Epub 2015 Jul 9.
5
Vibrational cooling dynamics of a [FeFe]-hydrogenase mimic probed by time-resolved infrared spectroscopy.
J Phys Chem A. 2014 Dec 11;118(49):11529-40. doi: 10.1021/jp510517z. Epub 2014 Nov 26.
6
Borane-protected cyanides as surrogates of H-bonded cyanides in [FeFe]-hydrogenase active site models.
Inorg Chem. 2014 Jul 21;53(14):7241-7. doi: 10.1021/ic500470z. Epub 2014 Jul 3.
7
Time-resolved infrared studies of a trimethylphosphine model derivative of [FeFe]-hydrogenase.
J Phys Chem B. 2013 Dec 12;117(49):15792-803. doi: 10.1021/jp4067873. Epub 2013 Oct 28.
8
Time-resolved vibrational spectroscopy of [FeFe]-hydrogenase model compounds.
J Phys Chem A. 2012 Jul 12;116(27):7261-71. doi: 10.1021/jp2121774. Epub 2012 Jun 11.
10
The role of CN and CO ligands in the vibrational relaxation dynamics of model compounds of the [FeFe]-hydrogenase enzyme.
Phys Chem Chem Phys. 2011 Jun 7;13(21):10295-305. doi: 10.1039/c1cp20589g. Epub 2011 May 3.

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