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纤维素纳米晶体增强的环保壳聚糖膜的机械性能和防水性能

Mechanical and Water-Resistant Properties of Eco-Friendly Chitosan Membrane Reinforced with Cellulose Nanocrystals.

作者信息

Mao Haiquan, Wei Chun, Gong Yongyang, Wang Shiqi, Ding Wenwen

机构信息

College of Materials Science and Engineering, Guilin University of Technology, Guilin 541004, China.

Key Laboratory of New Processing Technology for Nonferrous Metals and Materials, Ministry of Education, Guilin University of Technology, Guilin 541004, China.

出版信息

Polymers (Basel). 2019 Jan 18;11(1):166. doi: 10.3390/polym11010166.

Abstract

Environmentally benign and biodegradable chitosan (CS) membranes have disadvantages such as low mechanical strength, high brittleness, poor heat resistance and poor water resistance, which limit their applications. In this paper, home-made cellulose nanocrystals (CNC) were added to CS to prepare CNC/CS composite membranes through mechanical mixing and solution casting approaches. The effects of CNC dispersion patterns and CNC contents on the properties of composite membranes were studied. The analysis of the surface and cross-section morphology of the membranes showed that the dispersion performance of the composite membrane was better in the case that CNC was dissolved in an acetic acid solution and then mixed with chitosan by a homogenizer (Method 2). CNC had a great length-diameter ratio and CNC intensely interacted with CS. The mechanical properties of the composite membrane prepared with Method 2 were better. With a CNC content of 3%, the tensile strength of the composite membrane reached 43.0 MPa, 13.2% higher than that of the CNC-free membrane. The elongation at break was 41.6%, 56.4% higher than that of the CNC-free membrane. Thermogravimetric, contact angle and swelling analysis results showed that the addition of CNC could improve the heat and water resistance of the chitosan membrane.

摘要

环境友好且可生物降解的壳聚糖(CS)膜存在机械强度低、脆性高、耐热性差和耐水性差等缺点,这限制了它们的应用。本文通过机械混合和溶液浇铸法,将自制的纤维素纳米晶体(CNC)添加到CS中制备CNC/CS复合膜。研究了CNC的分散方式和含量对复合膜性能的影响。对膜的表面和横截面形态分析表明,当CNC溶解在乙酸溶液中,然后通过均质器与壳聚糖混合时(方法2),复合膜的分散性能更好。CNC具有很大的长径比,并且与CS强烈相互作用。用方法2制备的复合膜的机械性能更好。当CNC含量为3%时,复合膜的拉伸强度达到43.0MPa,比不含CNC的膜高13.2%。断裂伸长率为41.6%,比不含CNC的膜高56.4%。热重分析、接触角和溶胀分析结果表明,添加CNC可以提高壳聚糖膜的耐热性和耐水性。

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