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易于进行的多组分聚合反应,可得到具有易开小杂环的非常规发光聚合物。

Facile Multicomponent Polymerizations toward Unconventional Luminescent Polymers with Readily Openable Small Heterocycles.

机构信息

Department of Chemistry, Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction, Institute for Advanced Study, Division of Biomedical Engineering and Division of Life Science , The Hong Kong University of Science and Technology , Clear Water Bay, Kowloon , Hong Kong , China.

HKUST-Shenzhen Research Institute , No. 9 Yuexing first RD, South Area, Hi-tech Park , Nanshan, Shenzhen 518057 , China.

出版信息

J Am Chem Soc. 2018 Apr 25;140(16):5588-5598. doi: 10.1021/jacs.8b01991. Epub 2018 Apr 13.

Abstract

Heterocyclic polymers have gained enormous attention for their unique functionalities and wide applications. In contrast with the well-studied polymer systems with five- or six-membered heterocycles, functional polymers with readily openable small-ring heterocycles have rarely been explored due to their large synthetic difficulty. Herein, a facile one-pot multicomponent polymerization to such polymers is developed. A series of functional polymers with multisubstituted and heteroatom-rich azetidine frameworks are efficiently generated at room temperature in high atom economy from handy monomers. The four-membered azetidine rings in the polymer skeletons can be easily transformed into amide and amidine moieties via a fast and efficient acid-mediated ring-opening reaction, producing brand-new polymeric materials with distinctive properties. All the as-prepared azetidine-containing polymers exhibit intrinsic visible luminescence in the solid state under long-wavelength UV irradiation even without conventionally conjugated structures. Such unconventional luminescence is attributed to the clusteroluminogens formed by through-space electronic interactions of heteroatoms and phenyl rings. All the obtained polymers show excellent optical transparency, high and tunable refractive indices, low optical dispersions and good photopatternability, which make them promising materials in various advanced electronic and optoelectronic devices. The ring-opened polymers can also function as a lysosome-specific fluorescent probe in biological imaging.

摘要

杂环聚合物因其独特的功能和广泛的应用而受到极大关注。与研究充分的具有五或六元杂环的聚合物体系相比,由于其合成难度大,具有易开环的小环杂环的功能聚合物很少被探索。在此,开发了一种简便的一锅多组分聚合方法来制备此类聚合物。通过简便的单体,在室温下以高原子经济性高效生成一系列具有多取代和富含杂原子的氮杂环丁烷骨架的功能聚合物。聚合物骨架中的四元氮杂环丁烷环可以通过快速高效的酸介导开环反应轻易转化为酰胺和脒基部分,生成具有独特性能的新型聚合材料。所有制备的含氮杂环丁烷的聚合物在长波长紫外光照射下即使没有传统的共轭结构,在固态下也表现出固有可见发光。这种非常规发光归因于杂原子和苯环之间的通过空间电子相互作用形成的团簇发光体。所有获得的聚合物都表现出优异的光学透明度、高且可调的折射率、低的光色散和良好的光图案形成能力,这使它们成为各种先进电子和光电设备中有前途的材料。开环聚合物还可以作为溶酶体特异性荧光探针用于生物成像。

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