Wang Xiaoyi, Tian Wei, Ye Yuhang, Chen Yuan, Wu Weijie, Jiang Shaohua, Wang Yuli, Han Xiaoshuai
Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, International Innovation Center for Forest Chemicals and Materials, College of Materials Science and Engineering, Nanjing Forestry University, Nanjing 210037, China.
Department of Materials Science and Engineering, University of Pennsylvania, Philadelphia, PA 19104, USA.
Adv Colloid Interface Sci. 2024 Apr;326:103142. doi: 10.1016/j.cis.2024.103142. Epub 2024 Mar 28.
Amidst the burgeoning interest in multifunctional superhydrophobic wood-based composites (SWBCs) for their varied applications and the need for improved environmental resilience, recent efforts focus on enhancing their utility by integrating features such as mechanical and chemical stability, self-healing capabilities, flame resistance, and antimicrobial properties. Research indicates that various external conditions can influence the wettability and additional characteristics of SWBCs. This comprehensive review outlines three critical factors affecting SWBCs' performance: synthesis methods, wood taxonomy, and chemical agents. It further provides a detailed overview of SWBCs' specific attributes, including essential qualities for diverse applications and the limitations posed by different contexts. Additionally, it elaborates on performance evaluation techniques, offering a foundational framework for SWBCs' practical application. This work aims to serve as an important resource for future research and development in SWBC engineering.
在对多功能超疏水木质基复合材料(SWBCs)因其多样应用而产生的兴趣不断增长以及对提高环境适应性的需求背景下,近期的研究致力于通过整合机械和化学稳定性、自愈能力、阻燃性及抗菌性能等特性来提升其效用。研究表明,各种外部条件会影响SWBCs的润湿性和其他特性。这篇全面的综述概述了影响SWBCs性能的三个关键因素:合成方法、木材分类和化学试剂。它还进一步详细介绍了SWBCs的具体属性,包括其在各种应用中的基本品质以及不同环境所带来的限制。此外,它阐述了性能评估技术,为SWBCs的实际应用提供了一个基础框架。这项工作旨在成为SWBC工程未来研发的重要资源。