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Synthesis of tetraphenylethylene-based conjugated microporous polymers for detection of nitroaromatic explosive compounds

机译:基于四苯基乙烯的缀合的微孔聚合物的合成检测硝基芳族炸药化合物

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摘要

Conjugated microporous polymers (CMPs) containing tetraphenylethylene (TPE) were synthesized via the Suzuki coupling polymerization. The tetrafunctional TPE moiety in the polymer backbone was linked with the difunctional phenylene group to exhibit a porous structure with high fluorescence in the solid state because of aggregation-induced emissive TPE. The porous polymer with a fluorescent TPE group successfully detected nitroaromatic explosive compounds that exhibited fluorescence quenching, in which the polymer shows high quenching efficiency to picric acid among nitroaromatic explosive compounds. The interaction between the electron-rich TPE group and the electron-deficient nitroaromatic compounds played a decisive role in fluorescence quenching via a photoinduced electron transfer (PET). Compared with a linear polymer containing TPE, the porous, crosslinked polymer showed better sensing performance toward nitroaromatic compounds, presumably because of the more efficient interaction between TPE and nitroaromatic compounds in the pores of TPE-based CMP (TPE-CMP).
机译:通过铃木偶联聚合合成含有四苯基乙烯(TPE)的共轭的微孔聚合物(CMP)。聚合物主链中的四官能TPE部分与双官能亚苯基连接,以在聚集诱导的发射TPE的固态中具有高荧光的多孔结构。具有荧光TPE组的多孔聚合物成功地检测到硝基芳族炸药化合物,该化合物表现出荧光猝灭,其中聚合物在硝基芳族炸药化合物中对野生酸显示出高淬火效率。电子富含电子TPE组和电子缺乏硝基芳族化合物之间的相互作用在通过光抑制的电子转移(PET)中在荧光猝灭中起决定性作用。与含有TPE的线性聚合物相比,多孔交联聚合物对硝基芳族化合物表示更好的感测性能,可能是因为TPE基于TPE的CMP(TPE-CMP)中TPE和硝基芳族化合物之间的更有效相互作用。

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  • 来源
    《RSC Advances》 |2018年第60期|共6页
  • 作者单位

    Chungnam Natl Univ Dept Organ Mat Engn Organ &

    Optoelect Mat Lab Daejeon 34134 South Korea;

    Chungnam Natl Univ Dept Organ Mat Engn Organ &

    Optoelect Mat Lab Daejeon 34134 South Korea;

    Chungnam Natl Univ Dept Organ Mat Engn Organ &

    Optoelect Mat Lab Daejeon 34134 South Korea;

    Chungnam Natl Univ Dept Organ Mat Engn Organ &

    Optoelect Mat Lab Daejeon 34134 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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