Light-responsive hybrid material based on luminescent core-shell quantum dots and steroidal organogel

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Abstract

We report the synthesis of a smart novel hybrid with reversible photoswitchable luminescence properties modulated by light. The combination of a low molecular weight organogelator (LMOG) and CdSe/ZnS core-shell semiconductor nanoparticles capped with trioctylphosphine oxide ligands produces a luminescent, stable and transparent material. Modulation of the luminescence properties was successfully achieved using a diarylethene photochromic compound, with good resistance to fatigue ca. 22 cycles. Interestingly, the morphology of the organogel fibers was preserved in the hybrid, while a partial luminescence quenching of the nanoparticle was observed. This material could have implication for on-and-off photoswitching applications.

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Schmidt, L. C., Edelsztein, V. C., Spagnuolo, C. C., Di Chenna, P. H., & Galian, R. E. (2016). Light-responsive hybrid material based on luminescent core-shell quantum dots and steroidal organogel. Journal of Materials Chemistry C, 4(29), 7035–7042. https://doi.org/10.1039/c6tc02265k

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