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Tailoring Oxygen Sensitivity with Halide Substitution in Difluoroboron Dibenzoylmethane Polylactide Materials

机译:在二氟硼二苯甲酰甲烷聚乳酸材料中用卤化物取代来调节氧敏感性

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摘要

The dual-emissive properties of solid-state difluor-oboron beta-diketonate-poly(lactic acid) (BF(2)bdkPLA) materials have been utilized for biological oxygen sensing. In this work, BF(2)dbm(X)PLA materials were synthesized, where X = H, F, Cl, Br, and I. The effects of changing the halide substituent and PLA polymer chain length on the optical properties in dilute CH2Cl2 solutions and solid-state polymer films were studied. These luminescent materials show fluorescence, phosphorescence, and lifetime tunability on the basis of molecular weight, as well as lifetime modulation via the halide substituent. Short BF(2)dbm(Br)PLA (6.0 kDa) and both short and long BF(2)dbm(I)PLA polymers (6.0 or 20.3 kDa) have fluorescence and intense phosphorescence ideal for ratiometric oxygen sensing. The lighter halide-dye polymers with hydrogen, fluorine, and chlorine substitution have longer phosphorescence lifetimes and can be utilized as ultrasensitive oxygen sensors. Photostability was also analyzed for the polymer films.
机译:固态的二氟-ob硼酸β-二酮酸酯-聚(乳酸)(BF(2)bdkPLA)材料的双重发射性质已用于生物氧传感。在这项工作中,合成了BF(2)dbm(X)PLA材料,其中X = H,F,Cl,Br和I。改变卤化物取代基和PLA聚合物链长对稀CH2Cl2中光学性质的影响研究了溶液和固态聚合物薄膜。这些发光材料基于分子量显示出荧光,磷光和寿命可调性,以及通过卤化物取代基的寿命调节。短BF(2)dbm(Br)PLA(6.0 kDa)和短和长BF(2)dbm(I)PLA聚合物(6.0或20.3 kDa)都具有荧光和强磷光性,非常适合比例氧传感。具有氢,氟和氯取代基的较轻的卤化物染料聚合物具有更长的磷光寿命,可以用作超灵敏的氧传感器。还分析了聚合物膜的光稳定性。

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