Synthesis, characterization, and thermal decompositions of Schiff base polymers containing chitosan unit
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  • 作者:Hatice Karaer ; ?smet Kaya
  • 关键词:Chitosan ; Schiff base polymers ; Polyaldehydes ; Imine polymer ; based chitosan
  • 刊名:Iranian Polymer Journal
  • 出版年:2015
  • 出版时间:June 2015
  • 年:2015
  • 卷:24
  • 期:6
  • 页码:471-480
  • 全文大小:2,428 KB
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  • 作者单位:Hatice Karaer (1) (2)
    ?smet Kaya (1)

    1. Polymer Synthesis and Analysis Lab, Faculty of Science and Arts, Department of Chemistry, ?anakkale Onsekiz Mart University, 17020, ?anakkale, Turkey
    2. Faculty of Science, Department of Chemistry, Dicle University, 21280, Diyarbak?r, Turkey
  • 刊物主题:Polymer Sciences; Ceramics, Glass, Composites, Natural Methods;
  • 出版者:Springer Berlin Heidelberg
  • ISSN:1735-5265
文摘
The most plentiful natural biopolymer chitin and chitosan have become center of attraction of all party because of an unusual combination of biological activities, mechanical and physical properties. The several chemical modifications such as oligomerization, alkylation, quternization, enzymatic modifications, and graft copolymerization along with many assorted modifications have been carried out. However, its applications have only been shown in acidic medium because of its poor solubility in neutral and basic pH. In view of rapidly growing interest in chitosan its chemical aspects and chemical modification studies are reviewed. Four different aldehyde types, namely 4-hydroxybenzaldehyde (4HBA), 2-hydroxybenzaldehyde (2HBA), vanillin (VAN), 3-thiophenecarboxaldehyde (3TPCA), and their poly(4-hydroxybenzaldehyde) (P4HBA), poly(2-hydroxybenzaldehyde) (P2HBA), and poly (vanillin) (PVAN) were treated with chitosan to obtain Schiff base polymers. Although some of the chitosan-based Schiff bases were present in the literature, contrary to the literature the aldehydes (4HBA, VAN, 2HBA) were polymerized via oxidative polycondensation, followed by their reaction with chitosan to provide the Schiff base polymers, which were characterized by several techniques such as FTIR, TGA-DTA, DSC, SEM-EDX, and UV–Vis. Also, the solid-state electrical conductivities values of the compounds were measured by four-point probe technique.

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