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Near-infrared aggregation-induced enhanced electrochemiluminescence from tetraphenylethylene nanocrystals: a new generation of ECL emitters

机译:四苯基乙烯纳米晶体的近红外聚集诱导增强的电化学发光:新一代ECL发射器

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摘要

Herein, we observed near-infrared electrochemiluminescence (NIR ECL) emission from tetraphenylethylene nanocrystals (TPE NCs), which exhibit high ECL efficiency and excellent biocompatibility compared with the current NIR ECL emitters (such as semiconductor quantum dots and metal nanoclusters). The strong ECL signal of TPE NCs originates from the aggregation-induced enhanced ECL emission via improvement of the efficiency of electron hole recombination and suppression of the nonradiative transition. Impressively, the TPE NCs exhibit an enormous red-shifted ECL emission (678 nm) relative to the blue-light photoluminescence (PL) emission (440 nm). Compared to fluorescence imaging which is limited by photobleaching and autofluorescence, the NIR ECL emission of TPE NCs is highly favorable to diminish background interference over visible light and realize deeper tissue penetration, which expands the ECL emission of organic nanomaterials to the NIR region for broader biological applications.
机译:在本文中,我们观察到四苯基乙烯纳米晶体(TPE NCs)的近红外电化学发光(NIR ECL)发射,与当前的NIR ECL发射器(例如半导体量子点和金属纳米团簇)相比,它显示出高ECL效率和出色的生物相容性。 TPE NCs的强ECL信号源自聚集体诱导的增强ECL发射,通过提高电子空穴重组效率和抑制非辐射跃迁而产生。令人印象深刻的是,相对于蓝光光致发光(PL)发射(440 nm),TPE NC具有巨大的红移ECL发射(678 nm)。与受光漂白和自发荧光限制的荧光成像相比,TPE NCs的NIR ECL发射非常有利于减少可见光的背景干扰并实现更深的组织穿透,从而将有机纳米材料的ECL发射扩大到NIR区域,从而具有更广阔的生物学前景应用程序。

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