Blackburn Jeffrey L, Svedruzic Drazenka, McDonald Timothy J, Kim Yong-Hyun, King Paul W, Heben Michael J
National Renewable Energy Laboratory, Material Science, 16253 Denver West Parkway, Golden, Colorado, 80401, USA.
Dalton Trans. 2008 Oct 28(40):5454-61. doi: 10.1039/b806379f. Epub 2008 Jul 24.
We report a Raman spectroscopy study of charge transfer interactions in complexes formed by single-walled carbon nanotubes (SWNTs) and [FeFe] hydrogenase I (CaHydI) from Clostridium acetobutylicum. The choice of Raman excitation wavelength and sample preparation conditions allows differences to be observed for complexes involving metallic (m) and semiconducting (s) species. Adsorbed CaHydI can reversibly inject electronic charge into the LUMOs of s-SWNTs, while charge can be injected and removed from m-SWNTs at lower potentials just above the Fermi energy. Time-dependent enzymatic assays demonstrated that the reduced and oxidized forms of CaHydI are deactivated by oxygen, but at rates that varied by an order of magnitude. The time evolution of the oxidative decay of the CaHydI activity reveals different time constants when complexed with m-SWNTs and s-SWNTs. The correlation of enzymatic assays with time-dependent Raman spectroscopy provides a novel method by which the charge transfer interactions may be investigated in the various SWNT-CaHydI complexes. Surprisingly, an oxidized form of CaHydI is apparently more resistant to oxygen deactivation when complexed to m-SWNTs rather than s-SWNTs.
我们报道了一项关于单壁碳纳米管(SWNTs)与丙酮丁醇梭菌的[FeFe]氢化酶I(CaHydI)形成的复合物中电荷转移相互作用的拉曼光谱研究。拉曼激发波长和样品制备条件的选择使得能够观察到涉及金属型(m)和半导体型(s)物种的复合物之间的差异。吸附的CaHydI可以将电子电荷可逆地注入到s-SWNTs的最低未占分子轨道(LUMOs)中,而在略高于费米能的较低电位下,电荷可以注入到m-SWNTs中,也可以从m-SWNTs中移除。时间依赖性酶活性测定表明,CaHydI的还原态和氧化态都被氧气失活,但失活速率相差一个数量级。CaHydI活性氧化衰减的时间演变表明,与m-SWNTs和s-SWNTs复合时具有不同的时间常数。酶活性测定与时间依赖性拉曼光谱的相关性提供了一种新方法,通过该方法可以研究各种SWNT-CaHydI复合物中的电荷转移相互作用。令人惊讶的是,CaHydI的氧化态与m-SWNTs复合时,显然比与s-SWNTs复合时对氧气失活更具抗性。