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Lignin beyond the <i>status quo</i>: recent and emerging composite applications

Green Chemistry 2023 114 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 55 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Mahyar Fazeli, Muhammad Mujtaba, Sritama Mukherjee Hossein Baniasadi, Mahyar Fazeli, Roozbeh Abidnejad, Sritama Mukherjee Muhammad Mujtaba, Orlando J. Rojas, Jukka Seppälä, Orlando J. Rojas, Orlando J. Rojas, Juha Lipponen, Jukka Seppälä, Jukka Seppälä, Orlando J. Rojas, Juha Lipponen, Orlando J. Rojas, Orlando J. Rojas, Orlando J. Rojas, Sritama Mukherjee

Summary

This review examines recent advances in using lignin, a natural plant polymer, as a component in composite materials across various industries. Researchers highlight how lignin-based composites can serve as biodegradable alternatives to conventional plastics in packaging, construction, and other applications. The study suggests that scaling up lignin-based materials could help reduce dependence on petroleum-derived plastics and the resulting microplastic pollution.

The demand for biodegradable materials across various industries has recently surged due to environmental concerns and the need for the adoption of renewable materials. In this context, lignin has emerged as a promising alternative, garnering significant attention as a biogenic resource that endows functional properties. This is primarily ascribed to its remarkable origin and structure that explains lignin's capacity to bind other molecules, reinforce composites, act as an antioxidant, and endow antimicrobial effects. This review summarizes recent advances in lignin-based composites, with particular emphasis on innovative methods for modifying lignin into micro and nanostructures and evaluating their functional contribution. Indeed, lignin-based composites can be tailored to have superior physicomechanical characteristics, biodegradability, and surface properties, thereby making them suitable for applications beyond the typical, for instance, in ecofriendly adhesives and advanced barrier technologies. Herein, we provide a comprehensive overview of the latest progress in the field of lignin utilization in emerging composite materials.

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