Chemical Industry and Engineering Progree

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Preparation,characterization and properties of a novel fluorescent chitosan derivative

XIN Meihua1,GAO Wei1,LI Mingchun1,LI Li2,QIU Feng2   

  1. 1 College of Materials Science and Engineering,Huaqiao University,Xiamen 362021,Fujian,China;2 Key Lab of Molecular Engineering of Polymers,Ministry of Education,Fudan University,Shanghai 200433,China
  • Online:2011-06-05 Published:2011-06-05

新型壳聚糖荧光衍生物的制备、表征及性能初探

辛梅华1,高 伟1,李明春1,2,李 莉2,邱 枫2   

  1. 1华侨大学材料科学与工程学院,福建 厦门 361021;2聚合物分子工程教育部重点实验室,复旦大学,上海 200433

Abstract:

A new hydrophobic fluorescent polymer containing carbonylhydrazide recognition unitsCM-DCS-PyHywas synthesized by carboxy methylation of N,N-alkylation chitosanDCSwith chloroacetic acid in the presence of sodium dodecyl sulfonate and then modified by 1-pyrenebutyric acid hydrazideFTIR1H NMRelement analysis and UV-vis were used to characterize the polymerThe polymer had better solubility in organic solventssuch as chloroformalcoholtetrahydrofuran etc.than DCSFluorescence spectroscopy indicated concentration dependence of fluorescence of the polymerThe π-A isotherm with lecithin indicated that the polymer with suitable concentration could enhance the stability of lipid monolayerThese suggest the potential use of the polymer in membrane simulation and as a biological detector

摘要:

制备了N,N-双烷基壳聚糖(DCS),在十二烷基磺酸钠存在下,把羧甲基接枝到DCS的羟基上,再通过酰胺化反应引入1-芘丁酰肼(PyHy)基团,成功地合成了新型油溶性荧光高分子材料N-O-乙酰基-N,N-双烷基化壳聚糖)-N′-芘丁酰肼(CM-DCS-PyHy)。用FTIR1H NMREA、固体紫外等手段对产物的结构进行表征。实验结果表明:CM-DCS-PyHy能溶于氯仿、乙醇和四氢呋喃等有机溶剂中,溶解性能优于DCSCM-DCS-PyHy在氯仿溶液中的荧光光谱具有浓度依赖性;适当浓度的CM-DCS-PyHy能提高磷脂单分子层的稳定性。该材料有望在细胞膜的模拟以及生物探针方面得到应用。

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