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Photosynthetic apparatus of Rhodobacter sphaeroides exhibits prolonged charge storage

机译:球形红细菌的光合装置显示出延长的电荷存储

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摘要

Photosynthetic proteins have been extensively researched for solar energy harvesting. Though the light-harvesting and charge-separation functions of these proteins have been studied in depth, their potential as charge storage systems has not been investigated to the best of our knowledge. Here, we report prolonged storage of electrical charge in multilayers of photoproteins isolated from Rhodobacter sphaeroides. Direct evidence for charge build-up within protein multilayers upon photoexcitation and external injection is obtained by Kelvin-probe and scanning-capacitance microscopies. Use of these proteins is key to realizing a ‘self-charging biophotonic device’ that not only harvests light and photo-generates charges but also stores them. In strong correlation with the microscopic evidence, the phenomenon of prolonged charge storage is also observed in primitive power cells constructed from the purple bacterial photoproteins. The proof-of-concept power cells generated a photovoltage as high as 0.45 V, and stored charge effectively for tens of minutes with a capacitance ranging from 0.1 to 0.2 F m−2.
机译:光合蛋白已被广泛研究用于太阳能收集。尽管已经深入研究了这些蛋白质的光捕获和电荷分离功能,但据我们所知,尚未研究它们作为电荷存储系统的潜力。在这里,我们报道了从球形球形红细菌分离出的光蛋白多层中电荷的长时间存储。通过开尔文探针和扫描电容显微镜,可以获得在光激发和外部注射后蛋白质多层内电荷积累的直接证据。使用这些蛋白质是实现“自充电生物光子设备”的关键,该设备不仅可以收集光并产生光电荷,还可以存储它们。与微观证据密切相关,在由紫色细菌光蛋白构成的原始动力细胞中也观察到了电荷储存时间延长的现象。概念验证电池产生的光电压高达0.45 V,并以0.1至0.2 F m -2 的电容有效地存储了数十分钟的电荷。

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