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- 寧波大學趙傳壯/蒙特利爾大學朱曉夏 MRC: UCST聚合物設計與應用的協同策略
- 寧波大學趙傳壯課題組在簇發光聚合物研究獲進展
- 寧波大學趙傳壯課題組 CM:主客體作用和陽離子-π作用協同構筑的超拉伸性和抗鹽水凝膠粘合劑
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Hydrogen-Bonding-Induced Clusteroluminescence and UCST-Type Thermoresponsiveness of Nonconjugated Copolymers
作者:Liu, Kang
關鍵字:ROOM-TEMPERATURE PHOSPHORESCENCE;POLYMERS;BEHAVIOR;FLUORESCENCE;EMISSION;WATER
論文來源:期刊
發表時間:2022年
Stimuli-responsive light-emitting polymers (SRLEPs) have many promising applications. However, the synthesis of SRLEPs from nonconjugated and water-soluble monomers remains a challenge. Herein, for the first time, nonconjugated luminescent polymers with an upper critical solution temperature (UCST) in aqueous solution are reported. The polymer is synthesized through copolymerization of a strong hydrogen-donating monomer, acrylic acid (AAc), and a strong hydrogen-accepting monomer, N-vinylcaprolactam (NVCL). The polymer-polymer hydrogen-bonding rigidifies the chain conformation and enhances the clustering of the heteroatoms and carbonyl groups, resulting in an improved clusteroluminescence. Meanwhile, the polymer-polymer hydrogen bonding also brings in dynamic chain association that can be switched with temperature, yielding a UCST-type thermoresponsiveness in aqueous solution. This work demonstrates a novel and facile method of designing SRLEPs through tailoring the hydrogen bonds in the polymer. The properties of clusteroluminescence and thermoresponsiveness of the AAc-NVCL copolymers may render themselves with applications as temperature-sensitive biosensing.
關鍵字:ROOM-TEMPERATURE PHOSPHORESCENCE;POLYMERS;BEHAVIOR;FLUORESCENCE;EMISSION;WATER
論文來源:期刊
發表時間:2022年
Stimuli-responsive light-emitting polymers (SRLEPs) have many promising applications. However, the synthesis of SRLEPs from nonconjugated and water-soluble monomers remains a challenge. Herein, for the first time, nonconjugated luminescent polymers with an upper critical solution temperature (UCST) in aqueous solution are reported. The polymer is synthesized through copolymerization of a strong hydrogen-donating monomer, acrylic acid (AAc), and a strong hydrogen-accepting monomer, N-vinylcaprolactam (NVCL). The polymer-polymer hydrogen-bonding rigidifies the chain conformation and enhances the clustering of the heteroatoms and carbonyl groups, resulting in an improved clusteroluminescence. Meanwhile, the polymer-polymer hydrogen bonding also brings in dynamic chain association that can be switched with temperature, yielding a UCST-type thermoresponsiveness in aqueous solution. This work demonstrates a novel and facile method of designing SRLEPs through tailoring the hydrogen bonds in the polymer. The properties of clusteroluminescence and thermoresponsiveness of the AAc-NVCL copolymers may render themselves with applications as temperature-sensitive biosensing.