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Optical and structural characterization of bacterio-rhodopsin films on Si-based materials

机译:硅基材料上细菌视紫红质薄膜的光学和结构表征

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Aim of this work is to study biological materials as innovative "smart" materials to implement new functions on Si. We characterized the structural and optical properties of a bacterial protein, the bacterio-rhodopsin (bR), located in the purple membrane (PM) of the Halobacterium salinarium, living in salty waters. When it is irradiated with a light at 570 nm a complex photochemical cycle starts. It consists of intermediate states with different absorption spectra and lifetimes. We prepared water solutions containing the protein and studied both the solution and the films formed after deposition on glass, Si and SiO_2 surfaces. The films realized have thickness ranging from 5 to 45 mu m and, more important, maintain bR optical properties. Finally, the PM confers a high stability to the bR with respect to thermal degradation. Our measurement show a denaturation temperature strongly dependent on the solution and film characteristics. In particular, bR can be stable up to 100 deg C in solution and up to 190 deg C in thick films, values much higher than the best literature data.
机译:这项工作的目的是研究生物材料作为创新的“智能”材料,以在Si上实现新功能。我们表征了一种细菌蛋白,视紫红质(bR)的结构和光学特性,该蛋白位于咸水盐杆菌的紫色膜(PM)中。当用570 nm的光照射时,复杂的光化学循环开始。它由具有不同吸收光谱和寿命的中间状态组成。我们制备了包含蛋白质的水溶液,并研究了溶液和沉积在玻璃,Si和SiO_2表面上后形成的膜。实现的膜的厚度为5至45μm,更重要的是保持bR光学性能。最后,PM在热降解方面赋予bR很高的稳定性。我们的测量结果表明,变性温度强烈取决于溶液和膜的特性。特别是,bR在溶液中最高可稳定在100℃,在厚膜中最高可稳定在190℃,其值远高于最佳文献数据。

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