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Resonant transfer of one- and two-photon excitations in quantum dot-bacteriorhodopsin complexes

机译:量子点细菌孢子素复合物中单光子激发的共振转移

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摘要

Light-sensitive protein bacteriorhodopsin (BR), which is capable of electrical response upon exposure to light, is a promising material for photovoltaics and optoelectronics. However, the rather narrow absorption spectrum of BR does not allow achieving efficient conversion of the light energy in the blue and infrared spectral regions. This paper summarizes the results of studies showing the possibility of extending the spectral region of the BR function by means of the Forster resonance energy transfer (FRET) from CdSe/ZnS quantum dots (QDs), which have a broad spectrum of one-photon absorption and a large twophoton absorption cross section (TPACS), to BR upon one- and two-photon excitation. In particular, it is shown that, on the basis of QDs and BR-containing purple membranes, it is possible to create electrostatically associated bio-nano hybrid systems in which FRET is implemented. In addition, the large TPACS of QDs, which is two orders of magnitude larger than those of BR and organic dyes, opens up a means for selective two-photon excitation of synthesized bio-nano hybrid complexes. On the basis of the results of this work, the spectral region in which BR converts the light energy into electrical energy can be extended from the UV to near-IR region, creating new opportunities for the use of this material in photovoltaics and optoelectronics.
机译:在暴露于光线时能够电响应的光敏蛋白质细菌(BR)是光伏和光电子的有希望的材料。然而,BR的相当窄的吸收光谱不允许在蓝色和红外光谱区域中实现光能的有效转换。本文总结了通过来自CDSE / ZnS量子点(QDS)的Forster共振能量传递(FRET)延伸BR功能的光谱区域的研究结果,其具有广谱的单光子吸收和一个大的纺光吸收横截面(TPACS),在一个和双光子励磁上到BR。特别地,表明,基于QD和含Br的紫色膜,可以产生静电相关的生物纳米混合系统,其中实现了这种情况。此外,QD的大TPAC是比BR和有机染料大的两个数量级,打开了用于合成的生物纳米杂交络合物的选择性双光子激发的方法。在该工作的结果的基础上,可以从UV到近红外区域将光能转化为电能的光谱区域,从而为近红外区域延伸,从而为光伏和光电子使用这种材料的新机会。

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