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首页> 外文期刊>Biomacromolecules >Inverse Thermoreversible Mechanical Stiffening and Birefringence in a Methylcellulose/Cellulose Nanocrystal Hydrogel
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Inverse Thermoreversible Mechanical Stiffening and Birefringence in a Methylcellulose/Cellulose Nanocrystal Hydrogel

机译:甲基纤维素/纤维素纳米晶水凝胶中的反相热可逆机械加强和双折射

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摘要

We show that composite hydrogels comprising methyl cellulose (MC) and cellulose nanocrystal (CNC) colloidal rods display a reversible and enhanced rheological storage modulus and optical birefringence upon heating, i.e., inverse thermoreversibility. Dynamic rheology, quantitative polarized optical microscopy, isothermal titration calorimetry (ITC), circular dichroism (CD), and scanning and transmission electron microscopy (SEM and TEM) were used for characterization. The concentration of CNCs in aqueous media was varied up to 3.5 wt % (i.e, keeping the concentration below the critical aq concentration) while maintaining the MC aq concentration at 1.0 wt %. At 20 degrees C, MC/CNC underwent gelation upon passing the CNC concentration of 1.5 wt %. At this point, the storage modulus (G') reached a plateau, and the birefringence underwent a stepwise increase, thus suggesting a percolative phenomenon. The storage modulus (G') of the composite gels was an order of magnitude higher at 60 degrees C compared to that at 20 degrees C. ITC results suggested that, at 60 degrees C, the CNC rods were entropically driven to interact with MC chains, which according to recent studies collapse at this temperature into ring-like, colloidal-scale persistent fibrils with hollow cross-sections. Consequently, the tendency of the MC to form more persistent aggregates promotes the interactions between the CNC chiral aggregates towards enhanced storage modulus and birefringence. At room temperature, ITC shows enthalpic binding between CNCs and MC with the latter comprising aqueous, molecularly dispersed polymer chains that lead to looser and less birefringent material. TEM, SEM, and CD indicate CNC chiral fragments within a MC/CNC composite gel. Thus, MC/CNC hybrid networks offer materials with tunable rheological properties and access to liquid crystalline properties at low CNC concentrations.
机译:我们显示包含甲基纤维素(MC)和纤维素纳米晶(CNC)胶体棒的复合水凝胶在加热时显示可逆和增强的流变储存模量和光学双折射。动态流变学,定量偏振光显微镜,等温滴定热量法(ITC),圆形二色性(CD)和扫描和透射电子显微镜(SEM和TEM)用于表征。水性介质中CNC的浓度多达3.5wt%(即,将浓度低于临界aq浓度),同时将MC aq浓度保持在1.0wt%。在通过CNC浓度为1.5wt%时,在20℃下,MC / CNC接受凝胶化。此时,储存模量(G')达到平台,并且双折射接受逐步增加,从而提示渗透现象。与20摄氏度的ITC结果表明,在60摄氏度的情况下,复合凝胶的储存模量(G')在60℃下较高的数量级。据近期研究根据该温度崩溃成环状,胶体级持续的原纤维与中空横截面。因此,MC形成更多持续聚集体的趋势促进了CNC手性聚集体与增强的储存模量和双折射之间的相互作用。在室温下,ITC显示CNCS和MC之间的焓结合,后者包括含水的分子分散的聚合物链,其导致放松和更少的双折射材料。 TEM,SEM和CD表示MC / CNC复合凝胶内的CNC手性片段。因此,MC / CNC杂交网络提供具有可调谐流变性质的材料,并在低CNC浓度下获得液晶性质。

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  • 来源
    《Biomacromolecules 》 |2018年第7期| 共10页
  • 作者单位

    Aalto Univ Sch Sci Dept Appl Phys POB 15100 FI-00076 Espoo Finland;

    Univ Helsinki Dept Chem POB 55 FI-00014 Hy Helsinki Finland;

    Betulium Ltd Tekniikantie 2 FI-02150 Espoo Finland;

    Aalto Univ Sch Chem Engn Dept Chem &

    Met Engn POB 16300 FI-00076 Espoo Finland;

    Aalto Univ Sch Sci Dept Appl Phys POB 15100 FI-00076 Espoo Finland;

    Aalto Univ Sch Sci Dept Appl Phys POB 15100 FI-00076 Espoo Finland;

    Aalto Univ Sch Sci Dept Appl Phys POB 15100 FI-00076 Espoo Finland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学 ;
  • 关键词

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