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A phosphorescent copper(I) complex: Synthesis, characterization, photophysical property, and sensing performance towards molecular oxygen

机译:磷光铜(I)配合物:合成,表征,光物理性质和对分子氧的传感性能

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摘要

In this paper, we report the synthesis, crystal structure, photophysical properties, and electronic nature of a phosphorescent Cu(I) complex of [Cu(PYB)(POP)]BF_4, where PYB and POP stand for 2-pyridin-2-yl-1H-benzoimidazole and bis(2-(diphenylphosphanyl)phenyl) ether, respectively. [Cu(PYB)(P0P)]BF_4 renders yellow phosphorescence peaking at 561 nm, with a long excited state lifetime of 13.4 us. Density functional calculation reveals that the emission comes from a triplet metal-to-ligand-charge-transfer excited state. We electrospun composite nanofibers of [Cu(PYB)(POP)]BF_4 and polystyrene, hoping to explore the possibility of using the composite nanofibers as an oxygen sensing material. The finally obtained samples with average diameter of ~900nm exhibit a maximum sensitivity of 4.20 towards molecular oxygen with short response/recovery time (8 s/16s) due to the large surface-area-to-volume ratio of nanofibrous membranes. No photobleaching is detected in these samples.
机译:在本文中,我们报告了[Cu(PYB)(POP)] BF_4的磷光Cu(I)配合物的合成,晶体结构,光物理性质和电子性质,其中PYB和POP代表2-吡啶-2- yl-1H-苯并咪唑和双(2-(二苯基膦基)苯基)醚。 [Cu(PYB)(P0P)] BF_4在561 nm处出现黄色磷光峰,激发态寿命为13.4 us。密度泛函计算表明该发射来自三重态金属到配体电荷转移的激发态。我们对[Cu(PYB)(POP)] BF_4和聚苯乙烯的复合纳米纤维进行电纺,以期探索将复合纳米纤维用作氧气传感材料的可能性。最终获得的平均直径约为900nm的样品,由于纳米纤维膜的表面积与体积之比大,因此对分子氧的最大灵敏度为4.20,响应/恢复时间较短(8 s / 16s)。在这些样品中未检测到光致漂白。

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