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Emerging Role of the Band-Structure Approach in Biohybrid Photovoltaics: A Path Beyond Bioelectrochemistry

机译:能带结构方法在生物混合光伏中的新兴作用:超越生物电化学的途径

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摘要

Emulation of natural photosynthesis is central to modern photovoltaic research targeting sustainable and economic ways of solar energy harvesting. Natural photosynthetic systems have succeeded in efficiently harvesting solar energy which is key to the sustenance of life on earth. With numerous advances in understanding the structure and function of the natural photosystems, the last decade has witnessed new perspectives in developing bioinspired photovoltaics. Interestingly, organic photovoltaics (OPVs) adopting photosynthetic design principles and biophotovoltaics (BPVs) adopting solid-state device architectures have now converged at a juncture. Several reports in recent years point to a new scope of improvement in OPVs and BPVs stemming from mutual inspiration. At this juncture, there are new perspectives by which a BPV can be designed that were previously limited only to conventional optoelectronics. Treating natural pigment-proteins as optically and electronically functional materials in any photovoltaic design, from the band-theory viewpoint, is a promising direction for advancing BPVs beyond the boundaries of bioelectrochemistry. This article presents an overview of selected reports on BPVs in the last few years utilizing new design concepts based on band-theory and its associated principles. In light of this, the scope of the band-structure approach in BPVs is discussed, eliciting prospective research directions.
机译:模拟自然光合作用对于以可持续和经济的太阳能收集方式为目标的现代光伏研究至关重要。天然光合作用系统已成功地有效地收集了太阳能,这是维持地球生命的关键。在理解自然光系统的结构和功能方面取得了许多进步,最近十年见证了开发受生物启发的光伏技术的新观点。有趣的是,采用光合作用设计原理的有机光伏(OPV)和采用固态器件架构的生物光伏(BPV)现已融合在一起。近年来的一些报告指出,由于相互启发,OPV和BPV出现了新的改进范围。在这一关头,有新的观点可以用来设计BPV,而以前这些观点仅局限于常规的光电器件。从能谱理论的角度来看,在任何光伏设计中,将天然色素蛋白作为光学和电子功能材料都将是推动BPV超越生物电化学范围的有希望的方向。本文概述了近年来基于BPV及其相关原理的,采用新设计概念的BPV精选报告。有鉴于此,讨论了BPV中能带结构方法的范围,并提出了有前景的研究方向。

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