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Photoelectrochemical complexes for solar energy conversion that chemically and autonomously regenerate

机译:用于化学转化和自主再生的用于太阳能转化的光电化学配合物

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Naturally occurring photosynthetic systems use elaborate pathways of self-repair to limit the impact of photo-damage. Here, we demonstrate a complex consisting of two recombinant proteins, phospholipids and a carbon nanotube that mimics this process. The components self-assemble into a configuration in which an array of lipid bilayers aggregate on the surface of the carbon nanotube, creating a platform for the attachment of light-converting proteins. The system can disassemble upon the addition of a surfactant and reassemble upon its removal over an indefinite number of cycles. The assembly is thermodynamically metastable and can only transition reversibly if the rate of surfactant removal exceeds a threshold value. Only in the assembled state do the complexes exhibit photoelectrochemical activity. We demonstrate a regeneration cycle that uses surfactant to switch between assembled and disassembled states, resulting in an increased photoconversion efficiency of more than 300% over 168 hours and an indefinite extension of the system lifetime.
机译:自然发生的光合作用系统使用复杂的自我修复途径来限制光损伤的影响。在这里,我们演示了由两个重组蛋白,磷脂和模仿此过程的碳纳米管组成的复合物。组件自组装成一种配置,其中脂质双层阵列聚集在碳纳米管的表面上,从而创建了一个平台,用于附着光转换蛋白。该体系可在添加表面活性剂后分解,并在无限次循环后去除表面活性剂后重新组装。该组件是热力学亚稳态的,并且仅在表面活性剂的去除速率超过阈值时才可逆转。仅在组装状态下,络合物才显示出光电化学活性。我们证明了使用表面活性剂在组装状态和拆卸状态之间切换的再生循环,从而在168小时内提高了300%以上的光转换效率,并无限期延长了系统寿命。

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