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尺寸聚焦产生具有稳定发射波长的高光致发光硫量子点。

Size-focusing results in highly photoluminescent sulfur quantum dots with a stable emission wavelength.

作者信息

Sheng Yilun, Huang Zhongnan, Zhong Qi, Deng Haohua, Lai Mingchun, Yang Yu, Chen Wei, Xia Xinghua, Peng Huaping

机构信息

Higher Educational Key Laboratory for Nano Biomedical Technology of Fujian Province, Department of Pharmaceutical Analysis, Faculty of Pharmacy, Fujian Medical University, Fuzhou 350004, China.

State Key Laboratory of Analytical Chemistry for Life Science and Collaborative Innovation Center of Chemistry for Life Sciences, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, China.

出版信息

Nanoscale. 2021 Feb 4;13(4):2519-2526. doi: 10.1039/d0nr07251f.

Abstract

Sulfur quantum dots (SQDs) are a new kind of functional nanomaterial, but several challenges still exist in relation to their synthesis and application, such as low-yield and time-consuming synthetic methods, low photoluminescence quantum yields (PLQYs), and the non-selectivity of their detection mechanisms. Herein, we report the drastic enhancement of the fluorescence performance of water-soluble SQDs via the one-pot synthesis of size-focusing QDs using ultrasound microwave radiation. The synthetic period has been greatly shortened to 2 h via the present process. Notably, the proposed SQDs exhibit a highly stable emission wavelength with a record high PLQY of 58.6%. The mechanistic study indicates that size-focusing is a key factor relating to the proposed high-performance SQDs. As they also have robust stability, the proposed SQDs show a wide range of potential applications. Inspired by the characteristic properties of the SQDs and specific analytes, a simple SQD-based fluorescence sensing platform, via a redox-reaction-mediated mechanism, has been successfully developed for the rapid and selective detection of Ce(iv). In addition, this system has been effectively applied to some Ce(iv)-related biological assays, such as ascorbic acid (AA) analysis. This work is an important breakthrough in the SQD field, opening up avenues for solving the challenging problems relating to SQD-based probes, enriching the fundamental understanding of them, and greatly extending their applications, especially in biomedicine.

摘要

硫量子点(SQDs)是一种新型功能纳米材料,但在其合成与应用方面仍存在一些挑战,例如合成方法产率低、耗时,光致发光量子产率(PLQYs)低,以及检测机制缺乏选择性。在此,我们报道了通过超声微波辐射一锅法合成尺寸聚焦量子点,大幅提高了水溶性硫量子点的荧光性能。通过该方法,合成周期大幅缩短至2小时。值得注意的是,所制备的硫量子点发射波长高度稳定,PLQY达到创纪录的58.6%。机理研究表明,尺寸聚焦是所制备高性能硫量子点的关键因素。由于它们还具有很强的稳定性,所制备的硫量子点显示出广泛的潜在应用。受硫量子点和特定分析物特性的启发,通过氧化还原反应介导机制,成功开发了一种基于硫量子点的简单荧光传感平台,用于快速、选择性地检测Ce(iv)。此外,该系统已有效地应用于一些与Ce(iv)相关的生物分析,如抗坏血酸(AA)分析。这项工作是硫量子点领域的一项重要突破,为解决基于硫量子点的探针所面临的挑战性问题开辟了道路,丰富了对它们的基本认识,并极大地扩展了它们的应用,尤其是在生物医学领域。

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