4.7 Review

Recent advanced application of lignin nanoparticles in the functional composites: A mini-review

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Summary: In this study, lignin nanoparticle (LNP) derived from wheat straw pulping process waste stream was used as a nano filler to enhance the strength and elongation of polyurethane (PU) film. The well distributed LNP improved the mechanical properties of the film by acting as a lubricating agent and forming additional hydrogen bonds. The incorporation of LNP not only increased the tensile strength and elongation at break of the PU film, but also endowed it with hydrophobicity, anti-ultraviolet, and better hydrothermal stability.

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Summary: In this study, the latest research progress on lignosulfonate (LS)-based hydrogels is comprehensively reviewed. The function mechanism of LS in different polymer hydrogels is introduced in detail, and the rational design strategies of LS-filled hydrogels are summarized. The future development of LS-filled hydrogels for flexible wearable electronics is also proposed.

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Summary: This article introduces the structure, properties, and chemical modification methods of lignin, and discusses the applications of modified lignin in manufacturing value-added biocomposites.

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Lignin nanofiller-reinforced composites hydrogels with long-lasting adhesiveness, toughness, excellent self-healing, conducting, ultraviolet-blocking and antibacterial properties

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Lignin nanoparticles enter the scene: A promising versatile green tool for multiple applications

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Summary: Lignin nanoparticles are considered a green and sustainable way to utilize renewable resources in various applications. Produced from different lignin types using different methods, these nanoparticles exhibit varying characteristics in terms of morphology, size, and stability. Studies have shown their potential in fields such as antioxidants, drug carriers, and more, making them a promising area of research in biotechnology and green chemistry.

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Highly-toughened PVA/nanocellulose hydrogels with anti-oxidative and antibacterial properties triggered by lignin-Ag nanoparticles

Weijun Yang et al.

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Summary: This study demonstrates a green and simple design strategy for piezoresistive pressure sensors based on nanocomposite hydrogel, using hybrid organic-inorganic nanoparticles synthesized from alkaline lignin and silver nanoparticles. The novel nanomaterial effectively enhances the compressibility, pressure sensitivity, and signal response stability of the hydrogel.

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Zhao Zhang et al.

Summary: Lignin nanomaterials are a promising alternative to fossil-based chemicals and products due to their structural diversity and biodegradability. Research focuses on preparation methods and high-value applications of nanolignins and their nanocomposites.

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Wearable lignin-based hydrogel electronics: A mini-review

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Summary: The study focuses on feasible design routes of lignin-based hydrogel electronics and discusses the natural physical and chemical properties of lignin for functional gel design solutions. Insights are proposed regarding the future research and development directions of lignin-based hydrogel electronics, considering lignin's unique properties and the demand for high-quality flexible electronics.

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Green and Facile Preparation of Regular Lignin Nanoparticles with High Yield and Their Natural Broad-Spectrum Sunscreens

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