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Fabrication of thermo-sensitive lignocellulose hydrogels with switchable hydrophilicity and hydrophobicity through an SIPN strategy

机译:通过SIPN策略制备具有可切换亲水性和疏水性的热敏木质纤维素水凝胶

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Herein, thermo-sensitive lignocellulose hydrogels with varying lignin contents were fabricated with N-isopropylacrylamide (NIPAAm) by a semi-interpenetrating polymer network (SIPN) strategy using a LiCl/DMSO solvent system. Soda lignin mixed with the lignocellulose/LiCl/DMSO solution was also used to prepare the composite hydrogels, and the influence of the existential state of lignin on the hydrogel properties was analyzed objectively. The SIPN hydrogels exhibited more favorable mechanical properties due to the physical entanglement of poly-NIPAAm and lignocellulose. The presence of externally added lignin in the composite hydrogels is beneficial for mechanical improvement. Both the mechanical properties and the morphologies of the SIPN hydrogels can be tuned by varying the existential state and content of lignin. Furthermore, the prepared SIPN hydrogels showed rapid conversion from being hydrophilic at 20 degrees C to being hydrophobic at 45 degrees C. All SIPN hydrogels exhibited obvious oil absorbency in an oil/water mixture at 45 degrees C. Moreover, the different lignin existential states in the hydrogels resulted in different lower critical solution temperatures (LCST). This study provides a feasible route to produce reinforced thermo-sensitive hydrogels and develops a method for tailoring the morphology and the absorption properties of hydrogels by controlling the existential state and content of lignin.
机译:这里,通过使用LICL / DMSO溶剂系统,用半互渗聚合物网络(SIPN)策略用N-异丙基丙烯酰胺(NIPAAM)制造具有不同木质素含量的热敏木质纤维素水凝胶。还用于制备与木质纤维素/ LICL / DMSO溶液混合的苏打木素,并客观地分析了木质素存在于水凝胶性质上的存在状态的影响。由于多NiPaam和木质纤维素的物理纠缠,SiPN水凝胶具有更有利的力学性能。复合水凝胶中外部添加的木质素的存在有利于机械改善。通过改变木质素的存在状态和含量,可以调节SiPN水凝胶的机械性能和形态。此外,制备的SiPN水凝胶显示出在20℃下亲水的快速转化,以在45℃下疏水。所有SiPN水凝胶在45℃下的油/水混合物中表现出明显的吸油性。此外,不同的木质素存在性国家水凝胶导致不同的临界溶液温度(LCST)。该研究提供了一种可行的途径来生产增强热敏水凝胶,并通过控制木质素的存在状态和含量来制定用于定制水凝胶的形态和吸收性能的方法。

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    《RSC Advances》 |2019年第51期|共9页
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  • 正文语种 eng
  • 中图分类 化学;
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