Wood‐Based Nanotechnologies toward Sustainability

纳米纤维素 持续性 纳米技术 材料科学 可再生能源 海水淡化 可持续设计 建筑工程 工程类 纤维素 生态学 化学工程 遗传学 生物 电气工程
作者
Feng Jiang,Liangliang Tian,Yiju Li,Ying Zhang,Amy Gong,Jiaqi Dai,Emily Hitz,Wei Luo
出处
期刊:Advanced Materials [Wiley]
卷期号:30 (1) 被引量:353
标识
DOI:10.1002/adma.201703453
摘要

Abstract With over 30% global land coverage, the forest is one of nature's most generous gifts to human beings, providing shelters and materials for all living beings. Apart from being sustainable, renewable, and biodegradable, wood and its derivative materials are also extremely fascinating from a materials aspect, with numerous advantages including porous and hierarchical structure, excellent mechanical performance, and versatile chemistry. Here, strategies for designing novel wood‐based materials via advanced nanotechnologies are summarized, including both the controllable bottom‐up assembly from the highly crystalline nanocellulose building block and the more efficient top‐down approaches directly from wood. Beyond material design, recent advances regarding the sustainable applications of these novel wood‐based materials are also presented, focusing on areas that are traditionally dominated by man‐made nonrenewable materials such as plastic, glass, and metals, as well as more advanced applications in the areas of energy storage, wastewater treatment and solar‐steam‐assisted desalination. With all recent progress pertaining to materials' design and sustainable applications presented, a vision for the future engineering of wood‐based materials to promote continuous and healthy progress toward true sustainability is outlined.
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