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Spin-Controlled Photoluminescence in Hybrid Nanoarticles Purple Membrane System

机译:混合纳米粒子紫色膜系统中的自旋控制光致发光。

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Spin-dependent photoluminescence (PL) quenching of CdSe nanoparticles (NPs) has been explored in the hybrid system of CdSe NP purple membrane, wild-type bacteriorhodopsin (bR) thin film on a ferromagnetic (Ni-alloy) substrate. A significant change in the PL intensity from the CdSe NPs has been observed when spin-specific charge transfer occurs between the retinal and the magnetic substrate. This feature completely disappears in a bR apo membrane (wild-type bacteriorhodopsin in which the retinal protein covalent bond was cleaved), a bacteriorhodopsin mutant (D96N), and a bacteriorhodopsin bearing a locked retinal chromophore (isomerization of the crucial C13=C14 retinal double bond was prevented by inserting a ring spanning this bond). The extent of spin-dependent PL quenching of the CdSe NPs depends on the absorption of the retinal, embedded in wild-type bacteriorhodopsin. Our result suggests that spin-dependent charge transfer between the retinal and the substrate controls the PL intensity from the NPs.
机译:在CdSe NP紫色膜,铁磁性(Ni-合金)基板上的野生型细菌视紫红质(bR)薄膜的混合系统中,已经探索了CdSe纳米颗粒(NPs)的自旋依赖性光致发光(PL)猝灭。当在视网膜和磁性基质之间发生自旋特异性电荷转移时,已观察到CdSe NPs的PL强度发生了显着变化。此功能在bR apo膜(野生型细菌视紫红质,其中视网膜蛋白共价键被切割),细菌视紫红质突变体(D96N)和带有锁定的视网膜发色团的细菌视紫红质中完全消失(关键的C13 = C14视网膜双视异构化)通过插入一个跨过此键的环来防止键)。 CdSe NPs的自旋依赖性PL淬灭程度取决于嵌入野生型细菌视紫红质中的视网膜吸收。我们的结果表明,视网膜和基质之间自旋相关的电荷转移控制着NP的PL强度。

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