超级电容器
储能
纤维素
纳米技术
可持续能源
材料科学
原材料
碳纤维
纳米晶
制作
能量转换
电解质
可再生能源
化学工程
电极
化学
工程类
复合材料
有机化学
电气工程
病理
物理化学
功率(物理)
物理
复合数
热力学
替代医学
医学
量子力学
电化学
作者
Raúl Calle‐Gil,Elizabeth Castillo‐Martínez,Javier Carretero‐González
标识
DOI:10.1002/adsu.202100395
摘要
Abstract The transition to low‐carbon emitting technologies provokes an increasing demand in energy conversion and storage systems such as fuel cells, batteries, and supercapacitors, and consequently, the need for their raw materials. The use of new chemistries from earth‐abundant precursors instead of scarce, toxic, and nondegradable components existing in current systems must be a priority in future years. Cellulose is the most abundant biopolymer on earth. Their crystalline constituents designated as cellulose nanocrystals (CNC) have been studied as functional materials due to their excellent structural and chemical properties. This review covers a recent collection of works on innocuous CNC‐based materials with special attention to the fabrication methodologies of electrodes, electrolytes, membranes, and separators. The implementation of these CNC‐derived materials in sustainable energy conversion and storage systems is also discussed.
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