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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >High solubility and photoluminescence quantum yield water-soluble polyfluorenes with dendronized amino acid side chains: synthesis,photophysical, and metal ion sensing properties
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High solubility and photoluminescence quantum yield water-soluble polyfluorenes with dendronized amino acid side chains: synthesis,photophysical, and metal ion sensing properties

机译:具有树突化氨基酸侧链的高溶解度和光致发光量子产率水溶性聚芴:合成,光物理和金属离子感测特性

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摘要

A series of anionic water-soluble dendronized conjugated polymers PGO, PG1 and PG2 are synthesized by copolymerization of dendritic macromonomers and phenyldiboronic ester via direct Suzuki polycondensation reaction in THF-water solution. Water solubility and solution photoluminescence quantum yield increase with increasing the generation of the dendrons. PG2 exhibits an extremely high solubility which achieves 200 mg mL~(-1) in aqueous solution and the corresponding quantum yield was measured to be 95%. The absorption and fluorescence spectra of the dendronized polymers are pH-dependent due to the aggregation of the polymer chains. PL spectrum of PG2 also exhibits better stability among large window of pH and high salt concentration than the other two polymers. Three polymers demonstrate different sensory behavior to metal ions. Among them, most metal ions can moderately quench the fluorescence of PGO, on the other hand, PG1 and PG2 have good selectivity and sensitivity to Hg~(2+) and Cu~(2+), respectively. Thin-films based on PGO, PG1, and PG2 are fabricated by spin-coating, layer-by-layer (LbL) deposition, and self-assembly on amine-functionalized quartz followed by thermal-annealing. Among them, the annealed films have good spectral stability in aqueous solution, which makes them promising materials for the application in the field of chemo- and biosensors and light-emitting devices.
机译:树枝状大分子单体和苯基二硼酸酯经直接的Suzuki缩聚反应在THF水溶液中共聚,合成了一系列阴离子水溶性树状共轭聚合物PGO,PG1和PG2。水溶性和溶液光致发光量子产率随着树突的产生而增加。 PG2表现出极高的溶解度,在水溶液中的溶解度达到200 mg mL〜(-1),相应的量子产率据测为95%。由于聚合物链的聚集,树枝状聚合物的吸收光谱和荧光光谱是pH依赖性的。与其他两种聚合物相比,PG2的PL光谱在较大的pH范围和较高的盐浓度下也表现出更好的稳定性。三种聚合物表现出与金属离子不同的感觉行为。其中,大多数金属离子可以适度淬灭PGO的荧光,另一方面,PG1和PG2分别对Hg〜(2+)和Cu〜(2+)具有良好的选择性和敏感性。基于PGO,PG1和PG2的薄膜是通过旋涂,逐层(LbL)沉积并在胺官能化石英上自组装,然后进行热退火制成的。其中,退火膜在水溶液中具有良好的光谱稳定性,这使其成为在化学和生物传感器以及发光器件领域中应用的有前途的材料。

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