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Silica cross-linked nanoparticles encapsulating fluorescent conjugated dyes for energy transfer-based white light emission and porphyrin sensing

机译:硅交联纳米颗粒封装荧光共轭染料对能源transfer-based白光发射和卟啉传感

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This work demonstrated that water-soluble fluorescent hybrid materials can be successfully synthesized by use of silica cross-linked micellar nanoparticles (SCMNPs) as scaffolds to encapsulate fluorescent conjugated dyes for pH sensing, porphyrin sensing and tunable colour emission. Three dyes were separately encapsulated inside SCMNPs (short to dye-SCMNPs). Each of the dye-SCMNPs indicated longer lifetime in water than that of free dye dissolved in organic solvent. The 7-(hexadecyloxy) coumarin-3-ethylformate (HCE) encapsulated inside SCMNPs (HCE-SCMNPs) exhibited fluorescence quenching by pH change in aqueous media. Furthermore, it was confirmed that the radiative and nonradiative energy transfer processes both occurred between HCE-SCMNPs and tetraphenyl-porphyrin (TPP), which were used to synthesize the water-soluble TPP sensor. Significantly, HCE-SCMNPs doped with 5,12-dicotyl-quinacridone (8CQA) and TPP showed water-soluble white light emission (CIE (0.29, 0.34)) upon singlet excitation of 376 nm due to colour adjustment of 8CQA and energy transfer from HCE (donor) to TPP (acceptor).
机译:这项工作表明,水溶性荧光杂交材料可以成功合成了硅交联的使用胶束纳米颗粒(SCMNPs)作为支架封装染料荧光共轭pH值传感、卟啉传感和可调颜色发射。内部SCMNPs dye-SCMNPs(短)。在水中dye-SCMNPs表示时间更长比免费的染料溶解在有机食品溶剂。coumarin-3-ethylformate (HCE)封装在里面SCMNPs (HCE-SCMNPs)表现出荧光在媒体水淬火pH值变化。此外,它被证实辐射和非辐射的能量传递过程HCE-SCMNPs之间发生tetraphenyl-porphyrin (TPP),它被用来合成水溶性TPP传感器。值得注意的是,HCE-SCMNPs掺杂5, 12-dicotyl-quinacridone (8 cqa)和TPP显示水溶性白光发射(CIE (0.29,0.34)) 376海里由于单线态激颜色调整8 cqa和能量转移从HCE(供体)TPP(受体)。

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