Recovery of photodegraded rhodamine 6g in ester-containing polymer matrices

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Abstract

Self-healing, rhodamine 6g, dye-doped polymers are reported. The amplified spontaneous emission (ASE) photodegrades after repeated exposure to 532 nm laser light at 10 Hz. Recovery of the ASE signal is observed in dye-doped thermoplastic polyurethane and glycol-modified poly(ethylene terephthalate); both polymers contain repeating ester groups in their backbone. The polymer ester groups are hypothesized to mediate the full recovery of rhodamine 6g from a photodegraded state. A small amount of ASE recovery after photodegradation is observed in dye-doped poly(vinyl alcohol), >98% hydrolyzed, where conversion of rhodamine 6g from a long-lived dark state contributes to the majority of the increased ASE signal in poly(vinyl alcohol) while small amounts of recovery from interactions with residual acetate groups are also possible.

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Christianson, N. D., Lu, Y., & Dawson, N. J. (2019). Recovery of photodegraded rhodamine 6g in ester-containing polymer matrices. Photochemical and Photobiological Sciences, 18(12), 2865–2874. https://doi.org/10.1039/c9pp00243j

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