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One-step solvothermal synthesis of high-emissive amphiphilic carbon dots via rigidity derivation

机译:刚性衍生一步一步溶剂热合成高发射两亲碳​​点

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摘要

In nanoscience, amphiphilic carbon dots (ACDs) are of great importance due to their excellent transferability for application in biological sensing, imaging and labelling. However, facile synthetic strategies are still limited, especially for obtaining high-emissive ACDs. Since the development of a high-emissive feature is strongly desired for improving the practical resolution in vivo, here we report a chemical strategy that uses rigid molecules to straightforwardly construct amphiphilic carbon dots (ACDs) with high luminescence quantum yields (QYs). By using 1-[bis(dimethylamino)methylene]-1H-1,2,3-triazolo[4,5-b]pyridinium 3-oxide hexafluorophosphate (HATU), a typical coplanar compound, as the only precursor, well-defined ACDs were prepared via a one-step solvothermal process which exhibited a superior QY of up to 29%, largely superior to those prepared from precursors with less rigid structures. The effect can be mainly attributed to a significant suppression of the competition of non-radiative decay through rigidity derivation. Metal ionic doping during the synthesis resulted in a further improvement of the crystallinity and monodispersity of the materials, with retention of the high-emissive ability. This high-emissive photoluminescence behavior of the ACDs is accompanied with an excitation-wavelength dependence, a high biocompatibility and a low toxicity, which together make the ACDs advantageous for application in multi-channel bioimaging.
机译:在纳米科学中,两亲性碳点(ACD)由于其在生物传感,成像和标记中的出色转移能力而非常重要。但是,简便的合成策略仍然受到限制,尤其是对于获得高发射性ACD而言。由于强烈需要开发高发射特性以改善体内的实际分辨率,因此在此我们报告一种化学策略,该策略使用刚性分子直接构建具有高发光量子产率(QY)的两亲性碳点(ACD)。通过使用1- [双(二甲基氨基)亚甲基] -1H-1,2,3-三唑并[4,5-b] 3-氧化六氟磷酸吡啶鎓(HATU),作为典型的共平面化合物,唯一定义明确的ACD通过一步溶剂热法制备,其QY高达29%,大大优于由刚性结构较差的前驱体制备的ACD。该影响主要归因于通过刚性推导显着抑制了非辐射衰减的竞争。合成过程中的金属离子掺杂导致材料的结晶度和单分散性进一步改善,同时保持了高发射能力。 ACD的这种高发射光致发光行为伴随着激发波长依赖性,高生物相容性和低毒性,这些共同使ACD有利于在多通道生物成像中的应用。

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