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Lignin-Based Hydrogels: Synthesis and Applications

机译:木质素基水凝胶:合成与应用

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摘要

Polymers obtained from biomass are an interesting alternative to petro-based polymers due to their low cost of production, biocompatibility, and biodegradability. This is the case of lignin, which is the second most abundant biopolymer in plants. As a consequence, the exploitation of lignin for the production of new materials with improved properties is currently considered as one of the main challenging issues, especially for the paper industry. Regarding its chemical structure, lignin is a crosslinked polymer that contains many functional hydrophilic and active groups, such as hydroxyls, carbonyls and methoxyls, which provides a great potential to be employed in the synthesis of biodegradable hydrogels, materials that are recognized for their interesting applicability in biomedicine, soil and water treatment, and agriculture, among others. This work describes the main methods for the preparation of lignin-based hydrogels reported in the last years, based on the chemical and/or physical interaction with polymers widely used in hydrogels formulations. Furthermore, herein are also reviewed the current applications of lignin hydrogels as stimuli-responsive materials, flexible supercapacitors, and wearable electronics for biomedical and water remediation applications.
机译:从生物质获得的聚合物由于其生产成本低,生物相容性和生物降解性好而成为石油基聚合物的有趣替代品。木质素就是这种情况,木质素是植物中含量第二高的生物聚合物。因此,开发木质素以生产具有改善的性能的新材料目前被认为是主要的挑战性问题之一,特别是对于造纸工业。就其化学结构而言,木质素是一种交联聚合物,包含许多功能性亲水和活性基团,例如羟基,羰基和甲氧基,这为合成可生物降解的水凝胶提供了巨大的潜力。生物医学,土壤和水处理以及农业领域。这项工作基于与水凝胶配方中广泛使用的聚合物之间的化学和/或物理相互作用,描述了近年来报道的木质素基水凝胶的主要制备方法。此外,本文还综述了木质素水凝胶作为刺激响应材料,柔性超级电容器以及用于生物医学和水修复应用的可穿戴电子设备的当前应用。

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