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Interaction of FeFe-hydrogenases with single-walled carbon nanotubes

机译:用单壁碳纳米管的FeFE - 氢酶的相互作用

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Single-walled carbon nanotubes (SWNT) are promising candidates for use in energy conversion devices as an active photo-collecting elements, for dissociation of bound excitons and charge-transfer from photo-excited chromophores, or as molecular wires to transport charge. Hydrogenases are enzymes that efficiently catalyze the reduction of protons from a variety of electron donors to produce molecular hydrogen. Hydrogenases together with SWNT suggest a novel biohybrid material for direct conversion of sunlight into H2. Here, we report changes in SWNT optical properties upon addition of recombinant [FeFe] hydrogenases from Clostridium acetobutylicum and Chlamydomonas reinhardtii. We find evidence that novel and stable charge-transfer complexes are formed under conditions of the hydrogenase catalytic turnover, providing spectroscopic handles for further study and application of this hybrid system.
机译:单壁碳纳米管(SWNT)是希望用于能量转换装置的候选物作为活性照片收集元件,用于从光激发发色团的结合激子和电荷转移,或作为运输电荷的分子线来解散。氢酶是有效地催化来自各种电子供体的质子的减少以产生分子氢的酶。氢酶与SWNT一起建议一种新型生物冬胺材料,用于将阳光直接转化为H2。这里,我们在加入来自乙酸梭菌酸梭菌和衣原体的重组[FeFE]氢酶后报告SWNT光学性质的变化。我们发现证据表明,在氢酶催化转换的条件下,提供了新的和稳定的电荷转移复合物,提供了用于进一步研究和应用该杂种系统的光谱处理。

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