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Advanced Nanocellulose‐Based Composites for Flexible Functional Energy Storage Devices

📅 Published: September 24, 2021 👤 Ting Xu, Haishun Du, Huayu Liu et al. 📖 Advanced Materials 📊 691 citations
AI-Generated Summary

With the increasing demand for wearable electronics (such as smartwatch equipment, wearable health monitoring systems, and human-robot interface units), flexible energy storage systems with eco-friendly, low-cost, multifunctional characteristics, and high electrochemical performances are imperative to be constructed. Next, the recent specific applications of nanocellulose-based composites, ranging from flexible lithium-ion batteries and electrochemical supercapacitors to emerging electrochemical...

⚡ This is an original paraphrased summary — not copied from the abstract. Full paper available at the source link below.

Key Findings
  • 1 Nanocellulose with sustainable natural abundance, superb properties, and unique structures has emerged as a promising nanomaterial, which shows significant potential for fabricating functional energy storage systems.
  • 2 This review is intended to provide novel perspectives on the combination of nanocellulose with other electrochemical materials to design and fabricate nanocellulose-based flexible composites for advanced energy storage devices.
  • 3 First, the unique structural characteristics and properties of nanocellulose are briefly introduced.
Why It Matters

This work deepens our understanding of the fundamental laws governing the universe, from subatomic particles to cosmic structures.

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Article Details
Source OpenAlex
Category ⚛️ Physics & Space Science
Published Sep 24, 2021
Journal Advanced Materials
DOI 10.1002/adma.202101368
Citations 691
Authors Ting Xu, Haishun Du, Huayu Liu, Wei Liu, Xinyu Zhang