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中国工程物理研究院核物理与化学研究所,绵阳 621999
*刘强(1992-),男,博士,助理研究员,主要从事高分子材料老化机理与规律、服役可靠性和理论计算研究。E-mail: forliubinqiang@163.com;
黄玮(1971-),女,博士,研究员,主要从事辐射化学和高分子材料研究。E-mail: huangwei839@126.com
纸质出版日期:2023-07-20,
收稿日期:2022-11-04,
修回日期:2022-12-22,
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蒋滨莲, 刘强, 黄玮, 陈洪兵. 荧光探针在灵敏表征高分子材料老化中的研究进展[J]. 高分子通报, 2023,36(7):823-843.
JIANG Bin-lian, LIU Qiang, HUANG Wei, CHEN Hong-bing. Application of Fluorescent Probes in Sensitively Detecting the Aging of Polymers: A Review[J]. Polymer Bulletin, 2023,36(7):823-843.
蒋滨莲, 刘强, 黄玮, 陈洪兵. 荧光探针在灵敏表征高分子材料老化中的研究进展[J]. 高分子通报, 2023,36(7):823-843. DOI: 10.14028/j.cnki.1003-3726.2023.07.005.
JIANG Bin-lian, LIU Qiang, HUANG Wei, CHEN Hong-bing. Application of Fluorescent Probes in Sensitively Detecting the Aging of Polymers: A Review[J]. Polymer Bulletin, 2023,36(7):823-843. DOI: 10.14028/j.cnki.1003-3726.2023.07.005.
目前高分子材料早期老化或轻微老化的检测和监测面临诸多难题
最迫切的需要是发展灵敏且高效的表征方法。荧光探针技术作为一种成功应用于生物医学、环境科学和材料科学等多个领域非常灵敏的分析技术
其低检出限、强直观性的优点预示出它表征早期老化的潜力。高分子材料老化过程中往往会产生自由基物种以及羟基、羧基等基团
环境应力、湿度和基体极性等性质也会发生改变
这为荧光探针的刺激响应行为提供了用武之地。本综述简述了多种荧光探针的发展历史
讨论了靶向前述材料变化的荧光探针的本质机理
结合材料老化阐述了化学响应荧光探针和微环境响应荧光探针的典型应用以及部分探针的合成方法
最后对荧光探针技术存在的科学问题与应用挑战等方面进行了系统梳理
希望对广大同行的研究工作有所裨益。
At present
the detection and monitoring of early aging or slight aging of polymer materials are faced with many difficulties
of which the most urgent need is to develop sensitive and efficient characterization methods. As a very sensitive analytical technology successfully applied in biomedical
environmental science
material science and other fields
fluorescent probe technology has the advantages of low detection limit and strong visibility
which indicates its potential to characterize the early aging of polymers. During the aging process of polymer materials
free radical species
hydroxyl
carboxyl and other groups will often be produced
and the environmental stress
humidity
matrix polarity and other properties will also change
which provides a useful place for the stimulus response behavior of fluorescent probes. In this review
the development history of various fluorescent probes is briefly described
the essential mechanisms of fluorescent probes that label the changes in the aforementioned materials are discussed
the typical applications of fluorescence probes for chemical and microenvironment response are expatiated and the synthesis methods of some probes are exhibited. Finally
the scientific problems and application challenges of fluorescence probe technology are systematically summarized
hoping to be beneficial to the research work of the majority of peers.
荧光探针高分子老化早期监测刺激响应微环境
Fluorescence probePolymer agingEarly-stage monitoringStimulus responseMicro-environment
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