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首页> 外文期刊>Macromolecular chemistry and physics >Copolymerization of N-(prop-1-yne-3-yl)-4-(piperidine-1-yl)-1,8-naphthalimide with Arylacetylenes into Fluorescent Polyacetylene-Type Conjugated Polymers
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Copolymerization of N-(prop-1-yne-3-yl)-4-(piperidine-1-yl)-1,8-naphthalimide with Arylacetylenes into Fluorescent Polyacetylene-Type Conjugated Polymers

机译:N-(丙-1-炔-3-基)-4-(哌啶-1-基)-1,8-萘二甲酰亚胺与芳基乙炔的共聚成荧光聚乙炔型共轭聚合物

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摘要

N-(prop-1-yne-3-yl)-4-(piperidine-1-yl)-1,8-naphthalimide (PNPr), i.e., the monomer with a terminal ethynyl group and 1,8-naphthalimide fluorophore, has been successfully copolymerized with a series of monoethynylarenes into well-soluble high-molecular-weight (M-w up to 210 000) linear polyacetylene-type copolymers containing from 14 to 51 mol% units derived from PNPr. The copolymerization of PNPr with bifunctional 4,4'-diethynylbiphenyl provides polyacetylene-type micro/mesoporous fluorescent network containing 8 mol% PNPr units and exhibiting the Brunauer-Emmett-Teller surface of approximate to 1000 m(2) g(-1). The copolymerizations (catalyzed with acetylacetonato(norborna-2,5-diene)rhodium complex, [Rh(nbd)acac]) proceed smoothly despite the fact that the homopolymerization of PNPr fails. The fluorescence of PNPr (emission at approximate to 510 nm) has been retained after the incorporation of PNPr into the copolymers. The fluorescence of the copolymers can be induced by a direct excitation of PNPr units or via an energy transfer mechanism. In the latter case, the comonomeric units with aromatic hydrocarbon fluorophores (e.g., of the biphenyl-type) emitting at 380-400 nm (after irradiation with 300 nm UV radiation) serve as energy donors for fluorescent PNPr acceptors. The difference between the wavelengths of the primary absorbed radiation and the finally emitted radiation is 210 nm.
机译:N-(prop-1-yne-3-yl)-4-(哌啶-1-基)-1,8-萘二甲酰亚胺(PNPr),即具有末端乙炔基和1,8-萘二甲酰亚胺荧光团的单体,已成功地与一系列单乙炔基芳烃共聚成可溶的高分子量(分子量高达21万)的线性聚乙炔型共聚物,该共聚物含有14至51 mol%的PNPr衍生单元。 PNPr与双官能4,4'-二乙炔基联苯的共聚提供了包含8 mol%PNPr单元的聚乙炔型微/介孔荧光网络,并展现出约1000 m(2)g(-1)的Brunauer-Emmett-Teller表面。尽管PNPr的均聚反应失败,但共聚反应(用乙酰丙酮基(norborna-2,5-二烯)铑络合物[Rh(nbd)acac]催化)进行顺利。将PNPr掺入共聚物后,PNPr的荧光(在大约510 nm处发射)得以保留。共聚物的荧光可以通过直接激发PNPr单元或通过能量转移机制来诱导。在后一种情况下,具有在380-400nm处(在用300nm UV辐射照射之后)发射的芳族烃荧光团(例如联苯型)的共聚单元用作荧光PNPr受体的能量供体。初级吸收辐射和最终发射辐射的波长之间的差为210 nm。

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