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首页> 外文期刊>Reactive & Functional Polymers >Defined Chitosan-based networks by C-6-Azide-alkyne 'click' reaction
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Defined Chitosan-based networks by C-6-Azide-alkyne 'click' reaction

机译:通过C-6-叠氮化物-炔烃的“点击”反应定义基于壳聚糖的网络

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摘要

Chitosan was converted to its -NH_2-protected derivative by reacting with phthalic anhydride and then selectively functionalized with an azido group in C-6 position. Two different procedures were employed. The first was a "one-pot" procedure and the second was a two steps reaction through the tosylated intermediate. Both methods resulted in an effective functionalization of chitosan with azido groups. For the two before mentioned procedures, the functionalization degree was estimated by elemental analysis as number of azido groups per pyranoside ring and was 0.28 mol/mol and 0.26 mol/mol, respectively. The azido-functionalized derivatives underwent further modification by Cu(I) catalyzed dipolar cycload-dition with mono- or di-alkynes. The reaction with phenylacetylene produced soluble derivatives that were fully characterized at molecular level by FT-IR and NMR spectroscopies, elemental analysis and size exclusion chromatography (SEC). Crosslinked derivatives were obtained by reactions with 1,7-octadiyne or 1,4-diethynylbenzene and subsequently deprotected to restore the free amino groups. These last systems showed selective swellability in acid medium.
机译:壳聚糖通过与邻苯二甲酸酐反应转化为其-NH_2保护的衍生物,然后在C-6位用叠氮基选择性官能化。采用了两种不同的程序。第一个是“一锅法”程序,第二个是通过甲苯磺酸化中间体的两步反应。两种方法均能使带有叠氮基的壳聚糖有效地功能化。对于前述的两个程序,通过元素分析以每个吡喃糖苷环的叠氮基基团的数目估计官能度,分别为0.28mol / mol和0.26mol / mol。叠氮基官能化的衍生物通过Cu(I)催化的单炔或双炔偶极环化反应进一步改性。与苯乙炔的反应生成了可溶性衍生物,这些衍生物在分子水平上已通过FT-IR和NMR光谱,元素分析和尺寸排阻色谱(SEC)进行了全面表征。通过与1,7-辛二炔或1,4-二乙炔基苯反应获得交联的衍生物,然后脱保护以恢复游离氨基。这些最后的系统在酸性介质中显示出选择性的溶胀性。

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