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用于检测高价金属离子和细胞成像的羧甲基纤维素基荧光N功能化碳纳米点

Fluorescent N-functionalized carbon nanodots from carboxymethylcellulose for sensing of high-valence metal ions and cell imaging.

作者信息

Liu Zhenzhen, Li Runsen, Li Yan, Zhou Jingpeng, Gong Yumei, Shi Haiqiang, Guo Yanzhu, Li Haiming, Wang Zhiwei, Zhang Fengshan

机构信息

Liaoning Key Laboratory of Pulp and Paper Engineering, Dalian Polytechnic University Dalian 116034 China

Shandong Huatai Paper Co., Ltd. Dongying 275335 China.

出版信息

RSC Adv. 2021 Oct 28;11(55):34898-34907. doi: 10.1039/d1ra04972k. eCollection 2021 Oct 25.

Abstract

A convenient and sensitive reversible-fluorescence sensing platform for accurate monitoring of high-valence metal ions is still very challenging. As a green kind of fluorescent carbon nanomaterials, carbon dots (CDs) have captured considerable attention because of the stable fluorescence property and low cost. Herein, we fabricated a type of nitrogen-functionalized carbon dots (N-CDs) from CMC as a fluorescent reversible sensing platform for detecting various high-valence metal ions. N-CDs with a mean size of 2.3 nm were obtained and possessed 22.9% quantum yields (QY). A label-free fluorescent probe for detection of high-valence metal ions (Fe, Cr, Mn) was established the fluorescence quenching response. Among them, the detection limit (LOD) toward Fe ions reached 0.8 µM. We have explored the quenching mechanism of N-CDs to explain the valence state-related electron-transfer fluorescence quenching between high-valence metal ions and N-CDs. Moreover, the valence state-related fluorescence quenching phenomenon of N-CDs in aqueous solution could be effectively recovered by introducing a reducing agent (Ti). This "turn off-on" fluorescence recovery system of N-CDs could be applied in different applications covering the selective detection of environmental high-valence metal ions and cellular imaging.

摘要

构建一个方便、灵敏的可逆荧光传感平台用于精确监测高价金属离子仍然极具挑战性。作为一种绿色荧光碳纳米材料,碳点(CDs)因其稳定的荧光特性和低成本而备受关注。在此,我们以羧甲基纤维素钠(CMC)为原料制备了一种氮功能化碳点(N-CDs)作为荧光可逆传感平台,用于检测各种高价金属离子。获得了平均尺寸为2.3 nm的N-CDs,其量子产率(QY)为22.9%。基于荧光猝灭响应建立了一种用于检测高价金属离子(铁、铬、锰)的无标记荧光探针。其中,对铁离子的检测限(LOD)达到0.8 μM。我们探究了N-CDs的猝灭机制,以解释高价金属离子与N-CDs之间价态相关的电子转移荧光猝灭。此外,通过引入还原剂(钛),N-CDs在水溶液中的价态相关荧光猝灭现象可以有效恢复。N-CDs的这种“关-开”荧光恢复系统可应用于不同领域,包括环境高价金属离子的选择性检测和细胞成像。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2210/9042991/3df20c6904de/d1ra04972k-s1.jpg

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