Synthesis of Sulfur Quantum Dots and Their Application in Optical Sensing

被引:0
|
作者
Liao, Jing [1 ]
Liu, Chenghao [1 ]
Zhu, Yunxiao [1 ]
Ma, Xiaoming [1 ,2 ]
Nan, Xinru [1 ]
Lei, Qiaowen [1 ]
Zhang, Hanqiang [1 ]
Huang, Qitong [1 ]
Lin, Xiaofeng [1 ]
机构
[1] Jiangxi Provincal Key Laboratory of Tissue Engineering, Key Laboratory of Biomedical Sensors of Ganzhou, Scientific Research Center, School of Medical and Information Engineering, Gannan Medical University, Ganzhou
[2] School of Chemistry and Chemical Engineering, Gannan Normal University, Ganzhou
来源
Faguang Xuebao/Chinese Journal of Luminescence | 2024年 / 45卷 / 09期
基金
中国国家自然科学基金;
关键词
biosmall molecules; environmental contaminants; optical sensing; sulfur quantum dots;
D O I
10.37188/CJL.20240146
中图分类号
学科分类号
摘要
With the rapid development of nanotechnology,various types of sulfur nanomaterials have been devel⁃ oped,including sulfur nanoparticles,sulfur quantum dots,and other sulfur-containing nanocomposites with hybrid structures. As a new type of“zero-dimensional”nano-luminescent material,sulfur quantum dots are attracting more and more attention from scholars due to their photoluminescence properties,low toxicity,and ease of preparation. First,this review explores the synthesis of sulfur quantum dots. Then,it introduces the progress and application of sulfur quantum dots as sensing materials in optical sensor technology,and discusses in depth their detection applica⁃ tions in environmental contaminants and biological small molecules. Finally,it summarizes the current challenges faced by sulfur quantum dots and looks forward to their future development. © 2024 Editorial Office of Chinese Optics. All rights reserved.
引用
收藏
页码:1431 / 1444
页数:13
相关论文
共 81 条
  • [21] TAN Q, PAN S,, Et al., Hydrogen peroxide assisted synthesis of sulfur quantum dots for the detection of chromi⁃ um(VI)and ascorbic acid[J], Spectrochim. Acta A Mol. Biomol. Spectrosc, 247, (2021)
  • [22] GAO P X, ZHONG W H, LI T B, Et al., Room temperature,ultrafast and one-step synthesis of highly fluorescent sulfur quantum dots probe and their logic gate operation[J], J. Colloid Interface Sci, 666, pp. 221-231, (2024)
  • [23] LIU S, WANG H G, FENG A R,, Et al., Photoluminescence investigations of sulfur quantum dots synthesized by a bub⁃ bling-assisted strategy[J], Nanoscale Adv, 3, 14, pp. 4271-4275, (2021)
  • [24] RONG S H, CHEN Q T, Et al., Novel and facile synthesis of heparin sulfur quantum dots via oxygen accelera⁃ tion for ratiometric sensing of uric acid in human serum[J], Sens. Actuators B Chem, 353, (2022)
  • [25] HUANG Z Y, HUANG Z M, ZHOU L., Facile synthesis of highly fluorescent sulfur quantum dots for detection of 4-nitro⁃ phenol[J], Chin. J. Lumin, 43, 6, pp. 952-960, (2022)
  • [26] KADIAN S,, CHAULAGAIN N, JOSHI N N,, Et al., Probe sonication-assisted rapid synthesis of highly fluorescent sulfur quantum dots[J], Nanotechnology, 34, 30, (2023)
  • [27] KURWADKAR S, KANEL S R,, NAKARMI A., Groundwater pollution:occurrence,detection,and remediation of organ⁃ ic and inorganic pollutants[J], Water Environ. Res, 92, 10, pp. 1659-1668, (2020)
  • [28] ZHAO Y Y, PEI Y S., Risk evaluation of groundwater pollution by pesticides in China:a short review[J], Procedia Envi⁃ ron. Sci, 13, pp. 1739-1747, (2012)
  • [29] COOMAR P, MUKHERJEE A., Global geogenic groundwater pollution, Global Groundwater, pp. 187-213, (2021)
  • [30] ABRAHAM J, DOWLING K, FLORENTINE S., Risk of post-fire metal mobilization into surface water resources:a re⁃ view[J], Sci. Total Environ, 599-600, pp. 1740-1755, (2017)