Preparation and characterization of biopolymers comprising chitosan-grafted-ENR via acid-induced reaction of ENR50 with chitosan

被引:21
|
作者
Haris, M. R. H. Mas [1 ]
Raju, G. [1 ,2 ]
机构
[1] Univ Sains Malaysia, Sch Chem Sci, Minden 11800, Penang, Malaysia
[2] Malaysian Rubber Board, Kuala Lumpur 50450, Malaysia
来源
EXPRESS POLYMER LETTERS | 2014年 / 8卷 / 02期
关键词
biopolymers; chitosan; epoxidized natural rubber; EPOXIDIZED NATURAL-RUBBER; EXTRACTABLE PROTEIN-CONTENT; MECHANICAL-PROPERTIES; TENSILE PROPERTIES; OXIRANE RINGS; LATEX FILMS; BLENDS; DERIVATIVES; CHITIN; 1,4-POLYISOPRENE;
D O I
10.3144/expresspolymlett.2014.11
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
This paper describes the first detailed tailored-approach for the preparation of biopolymers comprising chitosan (CTS) grafted onto the backbone of epoxidized natural rubber (CTS-g-ENR). In a typical experiment, appropriate amount of CTS and AlCl3 center dot 6H(2)O was added to a specified amount of ENR50 (ENR with about 50% epoxy content) dissolved in a dual-solvent consisting of 1,4-dioxane and water (97.5:2.5% v/v) and the resulting mixture refluxed with continuous stirring for 6 hours. Nuclear magnetic resonance (NMR) spectral analysis of a biocomposite, CTS-g-ENR-P1, revealed that its epoxy content is 22.36% which is considerably lower than 44.93% as determined for ENR50-control (ENR50 derivative obtained under similar experimental condition but in the absence of CTS). This means that the grafting of CTS onto the backbone of ENR had occurred. The revelation is affirmed by the presence of the characteristic absorption bands of CTS and ENR, and the appearance of new bands at 1219, 902 and 733 cm(-1) in the Fourier transform infrared (FTIR) spectrum of CTS-g-ENR-P1. Further evidence that CTS had been successfully grafted onto the backbone of ENR can be deduced and described in this paper from the data obtained by means of Differential Scanning Calorimetric analysis, Thermogravimetric analysis and Variable Pressure Scanning Electron Microscopy.
引用
收藏
页码:85 / 94
页数:10
相关论文
共 50 条
  • [41] Preparation and characterization of poly (itaconic acid)-grafted crosslinked chitosan nanoadsorbent for high uptake of Hg2+ and Pb2+
    Ge, Huacai
    Hua, Tingting
    Wang, Jincui
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2017, 95 : 954 - 961
  • [42] Structural characterization and protective effect of gallic acid grafted O-carboxymethyl chitosan against hydrogen peroxide-induced oxidative damage
    Bai, Ruyu
    Yong, Huimin
    Zhang, Xin
    Liu, Jing
    Liu, Jun
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2020, 143 : 49 - 59
  • [43] Preparation and characterization of a homobifunctional silicone rubber membrane grafted with acrylic acid via plasma-induced graft copolymerization
    Lee, SD
    Hsiue, GH
    Kao, CY
    JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY, 1996, 34 (01) : 141 - 148
  • [44] A versatile food packaging film fabricated by gallic acid/octanoic acid grafted chitosan: Preparation, characterization, high-efficient cells capture and photodynamic eradication of bacteria and biofilms
    Zhang, Ke
    Jiang, Lai
    Chen, Ru-Kang
    Shi, Yu
    Shi, Yu-Gang
    Chen, Yue-Wen
    Ettelaie, Rammile
    Li, Ping
    FOOD HYDROCOLLOIDS, 2024, 152
  • [45] Preparation, characterization, and Staphylococcus aureus biofilm elimination effect of baicalein-loaded tyrosine/hyaluronic acid/ β-cyclodextrin-grafted chitosan nano-delivery system
    Tang, Ling
    Zhang, Zhongbin
    Ding, Wenyou
    Tang, Jing
    Deng, Xiuzhen
    He, Qiumei
    Kong, Xiangyu
    Chen, Jinqing
    Truong, Thi Minh Hien
    Wang, Gang
    Zhu, Xiaoyong
    Ding, Wenya
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2024, 254
  • [46] One pot preparation of chitosan/hyaluronic acid-based triple network hydrogel via in situ click reaction, metal coordination and polyion complexation in water
    Engkagul, Visuta
    Sereemaspun, Amornpun
    Chirachanchai, Suwabun
    CARBOHYDRATE POLYMERS, 2018, 200 : 616 - 623
  • [47] Chemical modification of chitin and chitosan 1:: preparation of partially deacetylated chitin derivatives via a ring-opening reaction with cyclic acid anhydrides in lithium chloride/N,N-dimethylacetamide
    Shigemasa, Y
    Usui, H
    Morimoto, M
    Saimoto, H
    Okamoto, Y
    Minami, S
    Sashiwa, H
    CARBOHYDRATE POLYMERS, 1999, 39 (03) : 237 - 243
  • [48] Preparation and characterization of antimicrobial cotton fabrics via N-halamine chitosan derivative/poly(2-acrylamide-2-methylpropane sulfonic acid sodium salt) self-assembled composite films
    Cheng, Xiaoli
    Li, Rong
    Li, Xiaolin
    Umair, Malik Muhammad
    Ren, Xuehong
    Huang, T. S.
    JOURNAL OF INDUSTRIAL TEXTILES, 2016, 46 (04) : 1039 - 1052
  • [49] Preparation and characterization of chitosan-grafted-poly(2-amino-4,5-pentamethylene-thiophene-3-carboxylic acid N′-acryloyl-hydrazide) chelating resin for removal of Cu(II), Co(II) and Ni(II) metal ions from aqueous solutions
    Bekheit, M. M.
    Nawar, N.
    Addison, A. W.
    Abdel-Latif, D. A.
    Monier, M.
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2011, 48 (04) : 558 - 565
  • [50] Enhancing methyl violet 2B pollutant removal from wastewater using Al-MOF encapsulated with poly (itaconic acid) grafted crosslinked chitosan composite sponge: Synthesis, characterization, DFT calculation, adsorption optimization via Box-Behnken Design
    Almahri, Albandary
    El-Metwaly, Nashwa M.
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2024, 276