Nanooptomechanical Transduction in a Single Crystal with 100% Photoconversion

单晶纳米光机械转换,光电转换率达100%

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Abstract

Materials that exhibit nanooptomechanical transduction in their single-crystal form have prospective use in light-driven molecular machinery, nanotechnology, and quantum computing. Linkage photoisomerization is typically the source of such transduction in coordination complexes, although the isomers tend to undergo only partial photoconversion. We present a nanooptomechanical transducer, trans-[Ru(SO(2))(NH(3))(4)(3-bromopyridine)]tosylate(2), whose S-bound η(1)-SO(2) isomer fully converts into an O-bound η(1)-OSO photoisomer that is metastable while kept at 100 K. Its 100% photoconversion is confirmed structurally via photocrystallography, while single-crystal optical absorption and Raman spectroscopies reveal its metal-to-ligand charge-transfer and temperature-dependent characteristics. This perfect optical switching affords the material good prospects for nanooptomechanical transduction with single-photon control.

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