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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Photoluminescence Behaviors of Organic Soluble DNA Bearing Carbazole and Pyrene Derivatives as Side-Chain Substituents and Effect of the Copolymer Structure on the Forster Energy Transfer Process
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Photoluminescence Behaviors of Organic Soluble DNA Bearing Carbazole and Pyrene Derivatives as Side-Chain Substituents and Effect of the Copolymer Structure on the Forster Energy Transfer Process

机译:含咔唑和P衍生物作为侧链取代基的有机可溶性DNA的光致发光行为以及共聚物结构对Forster能量转移过程的影响

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Organic soluble DNA bearing two different fluorophores in the side chain was prepared by reacting purified DNA with the cationic molecules 9-(12-bromododecyl)-9H-carbazole and (E)-1-(4-(12-bromododecyloxy)styryl)pyrene in water. Two homopolymers (CzDNA and PyDNA) and random copolymers (CzDNA-co-PyDNA) were prepared successfully. The absorption and photoluminescence (PL) behavior of CzDNA-co-PyDNA with pyrene derivative concentrations was investigated. As reference, we employed a guest-host system and polymer blends using DNA homopolymers. The Forster energy transfer process was investigated in three different DNA systems. The DNA copolymer system showed much better energy transfer efficiency than the other DNA systems. The copolymers were mixed with 2-{2-[2-(4-diethylamino-phenyl)-vinyl]-6-methyl-pyran-4-ylidene}-malonon itrile (DCM) at an optimum concentration. At low DCM concentration (0.3 wt %), undesired emissions were observed due to an incomplete energy transfer process from excited pyrene moieties. At high DCM concentration (5.0 wt %), red emissions were predominant; this is attributed to an efficient Forster energy transfer process.
机译:通过使纯化的DNA与阳离子分子9-(12-溴十二烷基)-9H-咔唑和(E)-1-(4-(12-溴十二烷基氧基)苯乙烯基)py反应制备有机可溶性DNA的侧链带有两个不同的荧光团在水里。成功制备了两种均聚物(CzDNA和PyDNA)和无规共聚物(CzDNA-co-PyDNA)。研究了pyr衍生物浓度下CzDNA-co-PyDNA的吸收和光致发光(PL)行为。作为参考,我们采用了客体-宿主系统,并使用DNA均聚物进行了聚合物共混。在三种不同的DNA系统中研究了Forster能量转移过程。 DNA共聚物系统显示出比其他DNA系统更好的能量转移效率。将该共聚物与最佳浓度的2- {2- [2-(4-二乙基氨基-苯基)-乙烯基] -6-甲基-吡喃-4-亚烷基}-丙二醛(DCM)混合。在低DCM浓度(0.3 wt%)时,由于激发的pyr部分的能量转移过程不完全,观察到不希望的排放。在较高的DCM浓度(5.0 wt%)下,红色发射为主。这归因于有效的Forster能量转移过程。

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