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精氨酸碱性激活的氮掺杂碳化聚合物点用于多色多平台传感器。

Nitrogen-doped carbonized polymer dots activated by alkalinity of arginine for multicolor multi-platform sensor.

机构信息

Chemical Institute of Chemical Industry, Southwest University, Chongqing 400715, China.

Chemical Institute of Chemical Industry, Southwest University, Chongqing 400715, China.

出版信息

Colloids Surf B Biointerfaces. 2022 Aug;216:112517. doi: 10.1016/j.colsurfb.2022.112517. Epub 2022 Apr 27.

Abstract

Among carbon-based materials, carbon dots (CDs) are popular because of their stable optical properties and good biocompatibility. Their fluorescence properties often are tailored by size, surface modification, or heteroatom doping with multiple precursors. In this paper, the alkalinity of Arginine (Arg) acts as an activator to promote carbonation and increase luminescence efficiency. Meanwhile, Arg acts as a tetrahedron and plays another three roles in preparing amino-modified nitrogen-doped carbonized polymer dots (SA-NCPDs), in which Arg serves as carbon source, nitrogen-doped nitrogen source, and surface modifier. The NCPDs based only on arginine display narrow full width at half maximum (FWHM) of 54 nm. The SA-NCPDs present dual emission distribution in the UV and visible blue regions, respectively. The SA-NCPDs present multicolor emission, especially crimson emission in water under 77 K in different solvents. Besides, SA-NCPDs in different solvents and the prepared polyvinyl alcohol (PVA) composite film have different phosphorescence and long afterglow at 77 K. The excellent biocompatibility and stability of the SA-NCPDs imply it is a potential material in biomedicine. In addition, a multiplatform multicolor ratiometric sensor and visualized colorimetric sensor with high selectivity were constructed successfully for detecting Cu, HO and OPD based on self-absorption.

摘要

在碳基材料中,碳点 (CDs) 因其稳定的光学性质和良好的生物相容性而受到关注。它们的荧光性质通常可以通过尺寸、表面修饰或杂原子掺杂等多种前体制备来进行调整。在本文中,精氨酸 (Arg) 的碱性作用为激活剂,促进碳化并提高发光效率。同时,Arg 作为四面体,在制备氨基改性氮掺杂碳化聚合物点 (SA-NCPDs) 中发挥了另外三个作用,其中 Arg 作为碳源、氮掺杂氮源和表面修饰剂。仅基于精氨酸的 NCPDs 显示出窄的半峰全宽 (FWHM) 为 54nm。SA-NCPDs 分别在紫外和可见蓝色区域呈现双发射分布。SA-NCPDs 呈现多色发射,尤其是在不同溶剂中 77K 下的深红色发射。此外,在不同溶剂中的 SA-NCPDs 和制备的聚乙烯醇 (PVA) 复合膜在 77K 下具有不同的磷光和长余辉。SA-NCPDs 具有优异的生物相容性和稳定性,表明它是一种潜在的生物医学材料。此外,成功构建了基于自吸收的用于检测 Cu、HO 和 OPD 的多平台多色比率传感器和可视化比色传感器,具有高选择性。

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