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Nanobiohybrid structures based on the organized films of photosensitive membrane proteins

机译:基于光敏膜蛋白有组织膜的纳米生物杂化结构

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摘要

The fundamental principles and technologies for the design of stable film systems based on biomembranes, photosensitive membrane proteins and complexes (retinal-containing proteins, reaction centres of photosynthetic bacteria, light-harvesting complexes of photosystems I and II), including their associates with metal and metal oxide nanoparticles or quantum dots are described. The advantages of controlled incorporation of the semiconductor or plasmonic nanocrystals into the biohybrid film structures are analyzed, first of all, the increase in the wavelength range of solar light harvesting and effective transfer of collected energy to the biological chromophores. Particular attention is devoted to the production of ultrathin and highly organized films at interfaces as the key stage of the design of nanobiohybrid materials with particular properties for photovoltaics, optoelectronics and nanophotonics. The bibliography includes 182 references.
机译:基于生物膜,光敏膜蛋白和复合物(含视网膜的蛋白,光合细菌的反应中心,光系统I和II的光收集复合物),包括它们与金属和金属的缔合体,设计稳定膜系统的基本原理和技术。描述了金属氧化物纳米颗粒或量子点。分析了将半导体或等离激元纳米晶体受控掺入生物杂交膜结构中的优势,首先,收集太阳光的波长范围增加,并且将收集的能量有效转移到生物发色团上。特别注意的是在界面上生产超薄和高度组织化的薄膜,这是设计具有光伏,光电和纳米光子学特性的纳米生物混合材料的关键阶段。参考书目包括182个参考文献。

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