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通过调制聚合合成高稳定性的红色发射碳聚合物点:从机制到在细胞内 pH 成像中的应用。

Synthesis of highly stable red-emissive carbon polymer dots by modulated polymerization: from the mechanism to application in intracellular pH imaging.

机构信息

Research Center for Analytical Sciences, Department of Chemistry, College of Sciences, Northeastern University, Box 332, Shenyang 110819, China.

出版信息

Nanoscale. 2018 Dec 21;10(47):22484-22492. doi: 10.1039/c8nr08208a. Epub 2018 Nov 27.

Abstract

Great efforts have been made to develop facile and efficient methods to prepare carbonaceous nanostructures with long-wavelength emission. Herein, we report a low-temperature aqueous strategy to synthesize red-emissive carbon polymer dots (R-CPDs) through the regulation of oxidative polymerization of p-phenylenediamine at 80 °C. The morphology, chemical composition and photophysical properties of the R-CPDs are characterized and analyzed in detail, thereby elucidating their photoluminescence origins from the surface state and crosslink enhanced emission effect. The resulting R-CPDs possess unique features including high pH-sensitivity within pH 4-6 and a wide-range tunable solvent-color effect (λ 528-600 nm). Moreover, the R-CPDs show high stability in physiological media with high salinity, and good resistance to photobleaching. In addition to their favorable biocompatibility, the R-CPDs are applied for monitoring the pH fluctuation in HeLa cells. This study not only provides a unique red emissive carbonaceous nanomaterial for cellular imaging and multicolor applications, but also presents a novel perspective for the construction of long-wavelength emission carbon-based nanomaterials by simple and controllable strategies.

摘要

人们已经做出了巨大的努力来开发简便高效的方法来制备具有长波长发射的碳纳米结构。在这里,我们通过在 80°C 下调节对苯二胺的氧化聚合,报道了一种在低温水相中合成红色发射的碳聚合物点(R-CPDs)的方法。详细地对 R-CPDs 的形貌、化学组成和光物理性质进行了表征和分析,从而阐明了其光致发光源于表面态和交联增强发射效应。所得的 R-CPDs 具有独特的特性,包括在 pH4-6 范围内的高 pH 敏感性和宽范围可调谐的溶剂颜色效应(λ528-600nm)。此外,R-CPDs 在高盐度的生理介质中具有高稳定性和良好的抗光漂白性。除了良好的生物相容性外,R-CPDs 还可用于监测 HeLa 细胞中的 pH 波动。这项研究不仅为细胞成像和多色应用提供了一种独特的红色发射碳纳米材料,而且为通过简单可控的策略构建长波长发射碳基纳米材料提供了新的视角。

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