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朝着更廉价的光收集系统迈进:在自组装的肽-卟啉纳米纤维中使用丰富的地球金属氧化物纳米粒子。

Toward cheaper light harvesting systems: Using earth-abundant metal oxide nanoparticles in self-assembled peptide-porphyrin nanofibers.

机构信息

School of Chemical Sciences, The University of Auckland, Auckland, New Zealand.

The MacDiarmid Institute for Advanced Materials and Nanotechnology, Wellington, New Zealand.

出版信息

J Pept Sci. 2022 Oct;28(10):e3413. doi: 10.1002/psc.3413. Epub 2022 Apr 30.

Abstract

Cheap artificial light harvesting systems, which competently harvest solar energy and promote efficient energy transfer, are highly sought after in the renewable sector. We report the synthesis of self-assembled peptide-porphyrin fibers (SJ 6) fabricated with iron(III) oxide (Fe O ) nanoparticles as feasible electron acceptors. Charge-complementarity between the negatively charged peptide (20E) and the protonated Zn-tetraphenyl porphyrin (ZnTPyP) led to an ordered assembly of the ZnTPyP molecules, enabling efficient light harvesting. X-ray diffraction data indicates a more ordered structure in SJ 6 compared to 20E and ZnTPyP. The incorporation of Fe O nanoparticles into SJ 6 showed significant fluorescence quenching, indicating efficient electron flow from the donor to the acceptor. The SJ 6-nFe O system performed the light reaction of photosynthesis as confirmed by the reduction of 1 mM NAD to 0.180 mM NADH upon exposure to visible light (Xe lamp λ > 420 nm) for 1 h. The photochemical regeneration of NADH using the SJ 6-nFe O system was coupled to glutamate dehydrogenase-catalyzed conversion of α-ketoglutarate to L-glutamate. These results confirm the successful synthesis of an artificial light harvesting peptide-porphyrin system with Fe O nanoparticles as promising low-cost electron separators.

摘要

廉价的人工光捕获系统能够有效地捕获太阳能并促进高效能量转移,在可再生能源领域备受关注。我们报告了一种自组装肽-卟啉纤维(SJ 6)的合成方法,该纤维使用氧化铁(Fe O )纳米粒子作为可行的电子受体。带负电荷的肽(20E)和质子化的 Zn-四苯基卟啉(ZnTPyP)之间的电荷互补导致 ZnTPyP 分子的有序组装,从而实现了高效的光捕获。X 射线衍射数据表明,SJ 6 比 20E 和 ZnTPyP 具有更有序的结构。将 Fe O 纳米粒子掺入 SJ 6 中显示出明显的荧光猝灭,表明电子从供体有效地流向受体。SJ 6-nFe O 系统进行了光合作用的光反应,这可以通过在可见光(Xe 灯 λ>420nm)照射 1 小时后将 1mM NAD 还原为 0.180mM NADH 来证实。使用 SJ 6-nFe O 系统进行的 NADH 的光化学再生与谷氨酸脱氢酶催化的α-酮戊二酸转化为 L-谷氨酸相偶联。这些结果证实了成功合成了具有氧化铁纳米粒子作为有前途的低成本电子分离器的人工光捕获肽-卟啉系统。

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