4.8 Review

Biomass-derived nanostructured carbons and their composites as anode materials for lithium ion batteries

Journal

CHEMICAL SOCIETY REVIEWS
Volume 46, Issue 23, Pages 7176-7190

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c6cs00639f

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Funding

  1. Liaoning Provincial Natural Science Foundation [201601323]
  2. Natural Sciences and Engineering Research Council of Canada (NSERC)

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Since ever-increasing energy demands stimulated intensive research activities on lithium-ion batteries (LIBs), biomass as an earth-abundant renewable energy source has played an intriguing and promising role in developing sustainable biomass-derived carbons and their composite materials for high-performance LIB anodes. Different from other materials (e.g., silicon, tin, metal oxides, etc.), biomass-derived carbons and their composite materials have been applied more and more to LIBs due to their advantages such as low cost, green and eco-friendly synthesis, easy accessibility, sustainable strategy, and improved battery performance, including capacity, cycling property, and stability/durability. This tutorial review focusing on biomass-derived carbons and their composites in the application of LIB anodes will act as a strategic guide to build a close connection between renewable materials and electrochemical energy storage devices. Also, this review provides a critical analysis and comparison of biomass-derived carbons and their composites for LIB anodes, coupled with an important insight into the remaining challenges and future directions in the field.

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