设计合成了一种侧链含呋喃的可交联共轭聚合物空穴传输材料聚{2,7-[9,9-二(6-(2-呋喃甲氧基)己基)芴]-共-4,4′-(4″-丁基)三苯胺}(P1)和侧链含马来酰亚胺的共轭小分子交联剂N,N′-二[4-(6-马来酰亚氨基己基)苯基]-N,N′-二苯基联苯二胺...设计合成了一种侧链含呋喃的可交联共轭聚合物空穴传输材料聚{2,7-[9,9-二(6-(2-呋喃甲氧基)己基)芴]-共-4,4′-(4″-丁基)三苯胺}(P1)和侧链含马来酰亚胺的共轭小分子交联剂N,N′-二[4-(6-马来酰亚氨基己基)苯基]-N,N′-二苯基联苯二胺(M1).基于呋喃和马来酰亚胺间Diels-Alder反应,P1和M1共混膜可在150°C下热处理快速交联形成具有优异抗溶剂性的薄膜,同时薄膜的光电性能可以通过控制P1和M1的共混比例进行有效调节.器件研究结果表明,基于P1+M1交联的薄膜表现出了优异的空穴传输、电子阻挡性质,应用于聚合物发光二极管时可有效避免由传统空穴传输材料聚3,4-亚乙二氧基噻吩/聚苯乙烯磺酸(PEDOT:PSS)作为单一界面层引起的发光淬灭现象,使相应器件性能得到大幅提升.当M1添加量为10%时,相关器件表现出了最佳的器件性能,器件的最大电流效率为9.0 cd A^(-1),最大亮度为35681 cd m^(-2),启亮电压为3.2 V.展开更多
We report the synthesis of pseudo triazole-sialoside protein conjugates of various valency that are resistant to neuraminidase for the adsorption of influenza viruses. The glycotriazole monomer bearing an amine-functi...We report the synthesis of pseudo triazole-sialoside protein conjugates of various valency that are resistant to neuraminidase for the adsorption of influenza viruses. The glycotriazole monomer bearing an amine-functionalized linker was synthesized by click chemistry and grafted to the lysine residues of bovine serum albumin (BSA) or human serum albumin (HSA) via diethyl squarate and adipate-based strategy. The binding of hemagglutinin (HA) and neuraminidase (HA) on the virion surface by the synthetic neoglycoproteins were evaluated by hemagglutination and neuraminidase inhibition assay, respectively. The results demonstrated that these synthetic glycoproteins have significantly higher affinity with NA than HA. The interactions between these neoglycoproteins and intact influenza viruses were further investigated by Dynamic Light Scattering (DLS) technique. The pronounced agglutination indicated that these glycoconjugates can be used as adsorbents to prevent virus from invading host cells as well as the release of newly synthesized viral particles, which are crucial in the life cycle of the influenza virus. With the high binding affinity to intact influenza viruses, these neoglycoproteins can also be used as probe to elucidate the molecular mechanism of the sialic acid-influenza recognition and biosensors for influenza detection.展开更多
文摘设计合成了一种侧链含呋喃的可交联共轭聚合物空穴传输材料聚{2,7-[9,9-二(6-(2-呋喃甲氧基)己基)芴]-共-4,4′-(4″-丁基)三苯胺}(P1)和侧链含马来酰亚胺的共轭小分子交联剂N,N′-二[4-(6-马来酰亚氨基己基)苯基]-N,N′-二苯基联苯二胺(M1).基于呋喃和马来酰亚胺间Diels-Alder反应,P1和M1共混膜可在150°C下热处理快速交联形成具有优异抗溶剂性的薄膜,同时薄膜的光电性能可以通过控制P1和M1的共混比例进行有效调节.器件研究结果表明,基于P1+M1交联的薄膜表现出了优异的空穴传输、电子阻挡性质,应用于聚合物发光二极管时可有效避免由传统空穴传输材料聚3,4-亚乙二氧基噻吩/聚苯乙烯磺酸(PEDOT:PSS)作为单一界面层引起的发光淬灭现象,使相应器件性能得到大幅提升.当M1添加量为10%时,相关器件表现出了最佳的器件性能,器件的最大电流效率为9.0 cd A^(-1),最大亮度为35681 cd m^(-2),启亮电压为3.2 V.
基金financially supported by the National Natural Science Foundation of China(Nos.21402140,21502139)Shenzhen Peacock Plan(No. KQTD2016053114253158)+3 种基金Natural Science Foundation of Tianjin City(No. 16JCTPJC46000)Key Laboratory of Industrial Fermentation Microbiology of Ministry of EducationTianjin Key Lab of Industrial Microbiology(No. 2015IM107)Youth Innovation Research Foundation of Tianjin University of Science and Technology(No.2016LG08)
文摘We report the synthesis of pseudo triazole-sialoside protein conjugates of various valency that are resistant to neuraminidase for the adsorption of influenza viruses. The glycotriazole monomer bearing an amine-functionalized linker was synthesized by click chemistry and grafted to the lysine residues of bovine serum albumin (BSA) or human serum albumin (HSA) via diethyl squarate and adipate-based strategy. The binding of hemagglutinin (HA) and neuraminidase (HA) on the virion surface by the synthetic neoglycoproteins were evaluated by hemagglutination and neuraminidase inhibition assay, respectively. The results demonstrated that these synthetic glycoproteins have significantly higher affinity with NA than HA. The interactions between these neoglycoproteins and intact influenza viruses were further investigated by Dynamic Light Scattering (DLS) technique. The pronounced agglutination indicated that these glycoconjugates can be used as adsorbents to prevent virus from invading host cells as well as the release of newly synthesized viral particles, which are crucial in the life cycle of the influenza virus. With the high binding affinity to intact influenza viruses, these neoglycoproteins can also be used as probe to elucidate the molecular mechanism of the sialic acid-influenza recognition and biosensors for influenza detection.