Nanocellulose-based functional materials for advanced energy and sensor applications

纳米纤维素 纳米技术 摩擦电效应 材料科学 储能 超级电容器 工程类 复合材料 电极 纤维素 功率(物理) 化学 物理 物理化学 量子力学 电化学 化学工程
作者
Lumin Chen,Somia Yassin Hussain Abdalkarim,Hou‐Yong Yu,Xiang Chen,Dongping Tang,Linping Zhang,Kam Chiu Tam
出处
期刊:Nano Research [Springer Nature]
卷期号:15 (8): 7432-7452 被引量:32
标识
DOI:10.1007/s12274-022-4374-7
摘要

Advanced energy and sensor devices with novel applications (e.g., mobile equipment, electric vehicles, and medical-healthcare systems) are one of the important foundations of modern intelligent life. However, there are still some scientific issues that seriously hinder the further development of devices, including unsustainability, high material cost, complex fabrication process, safety issues, and unsatisfactory performance. Nanocellulose has aroused tremendous attention in recent decades, because of its abundant resources, renewability, degradability, low-cost, and unique physical/chemical properties. These merits make nanocellulose as matrix materials to fabricate advanced functional composites for use in energy-related fields extremely competitive. Here, we comprehensively discuss the recent progress of nanocellulose for emerging energy storage/harvesting and sensor applications. The preparation methodologies of nanocellulose combined with conductive materials are firstly highlighted, including carbon materials, conductive polymers, metal/metal oxide nanoparticles, metal-organic frameworks (MOFs), and covalent organic frameworks (COFs). We then focus on the nanocellulose-based advanced materials for the application in the areas of supercapacitors, lithium-ion batteries, solar cells, triboelectric nanogenerators, moisture-enabled electric generators, and sensors. Lastly, the future research directions of nanocellulose-based functional materials in energy-related devices are presented.
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