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环境友好材料制备与应用教育部重点实验室, 吉林师范大学, 长春 130103
*E-mail:xuyh198@163.com.
纸质出版日期:2018-06-20,
收稿日期:2018-01-31,
修回日期:2018-03-25,
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姚婵, 刘艳丽, 刘铭晗, 王文君, 许彦红. 基于有机多孔聚合物的荧光探针[J]. 高分子通报, 2018,31(6):198-214.
Chan YAO, Yan-li LIU, Ming-han LIU, Wen-jun WANG, Yan-hong XU. Application of Porous Organic Polymers in Fluorescent Probe[J]. Polymer Bulletin, 2018,31(6):198-214.
姚婵, 刘艳丽, 刘铭晗, 王文君, 许彦红. 基于有机多孔聚合物的荧光探针[J]. 高分子通报, 2018,31(6):198-214. DOI: 10.14028/j.cnki.1003-3726.2018.06.018.
Chan YAO, Yan-li LIU, Ming-han LIU, Wen-jun WANG, Yan-hong XU. Application of Porous Organic Polymers in Fluorescent Probe[J]. Polymer Bulletin, 2018,31(6):198-214. DOI: 10.14028/j.cnki.1003-3726.2018.06.018.
有机多孔聚合物(porous organic polymers,POPs)是由强共价键将不同几何构型的有机模块链接起来构筑的一类新型多维度骨架材料,具有轻质、比表面积大、稳定性好、结构可预设、功能可调控等优点。近年来,POPs作为多孔材料家族的重要成员,已在催化、气体存储与分离、传感等领域有重要应用价值。国内外研究较多的POPs主要集中在共价有机框架(covalent organic frameworks,COFs)、共轭微孔聚合物(conjugated microporous polymers,CMPs)、自具微孔聚合物(polymer of intrinsic microporosity,PIMs)、超交联聚合物(hyper-crosslinked polymers,HCPs)等领域。POPs由于其堆叠结构、丰富
π
键、分子水平上共轭单元的刚性、共轭结构的拓展性、以及电子在多个尺度和维度上的离域性等特性,使其往往具有良好的吸光性能。与线性聚合物和小分子单体相比,它们具有更大的协同作用。POPs的多孔性(如高比表面积、大孔体积)既有利于客体分子的进入,又有利于电子的传输。因此,它们具有较高的光敏性,在荧光传感领域有杰出表现。本文着重评述了基于POPs的荧光探针在检测重金属离子、特定阴离子和硝基芳烃爆炸物等方面的研究进展,并且提出了基于有机多孔聚合物的荧光探针探究目前存在的问题及今后面临的机遇和挑战。
Porous organic polymers (POPs) are a new type of multi-dimensional porous materials
which are constructed via the strong covalent bond linkage of pure organic building groups with different topologies. Owning to their advantages of light-weight
large specific surface area
excellent stability
pre-designable structure
precise tunable function and so on
POPs have been applied in the field of catalysis
gas storage/separation
sensing
etc. The research of POPs is mainly concentrated in covalent organic frameworks (COFs)
conjugated microporous polymers (CMPs)
polymers of intrinsic microporosity (PIMs)
hyper-crosslinked polymers (HCPs)
etc. Compared with the linear polymers and small molecular monomers
owning to POPs’ stack skeleton
rich π-electrons and expanding of conjugated structure
POPs have greater properties of light absorption and synergy. The porous nature of POPs
such as high specific surface area and large pore volume
is not only conducive to the entry of guest molecules
but also beneficial to the transmission of electrons. Therefore
they have high photosensitivity and have outstanding performance in the field of fluorescence sensing. This article briefly reviewed research progress of POPs as a fluorescent probe in the detection of heavy metal ions
specific anions
nitroaromatic explosives and other aspects
and puts forward the existing problems in the research of functional POPs in the fluorescent probe and facing the opportunities and challenges in the future.
有机多孔聚合物荧光探针重金属离子特定阴离子硝基芳烃爆炸物
Porous organic polymersFluorescent probeHeavy metal ionsSpecific anionsNitroaromatic explosive
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