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具有阻燃性能的纳米纤维素基多孔轻质材料:综述

Nanocellulose-based porous lightweight materials with flame retardant properties: A review.

作者信息

Tushar Shariful Islam, Anik Habibur Rahman, Uddin Md Mazbah, Mandal Sumit, Mohakar Vijay, Rai Smriti, Sharma Suraj

机构信息

Department of Design and Merchandising, Oklahoma State University, Stillwater, OK 74078, USA; Department of Apparel Engineering, Bangladesh University of Textiles, Tejgaon, Dhaka 1208, Bangladesh.

Department of Apparel Engineering, Bangladesh University of Textiles, Tejgaon, Dhaka 1208, Bangladesh; Department of Chemistry and Chemical & Biomedical Engineering, University of New Haven, West Haven, CT 06516, USA.

出版信息

Carbohydr Polym. 2024 Sep 1;339:122237. doi: 10.1016/j.carbpol.2024.122237. Epub 2024 May 10.

Abstract

This review discusses the development and application of nanocellulose (NC)-aerogels, a sustainable and biodegradable biomaterial, with enhanced flame retardant (FR) properties. NC-aerogels combine the excellent physical and mechanical properties of NC with the low density and thermal conductivity of aerogels, making them promising for thermal insulation and other fields. However, the flammability of NC-aerogels limits their use in some applications, such as electromagnetic interference shielding, oil/water separation, and flame-resistant textiles. The review covers the design, fabrication, modification, and working mechanism of NC porous materials, focusing on how advanced technologies can impart FR properties into them. The review also evaluates the FR performance of NC-aerogels by employing widely recognized tests, such as the limited oxygen index, cone calorimeter, and UL-94. The review also explores the integration of innovative and eco-friendly materials, such as MXene, metal-organic frameworks, dopamine, lignin, and alginate, into NC-aerogels, to improve their FR performance and functionality. The review concludes by outlining the potential, challenges, and limitations of future research on FR NC-aerogels, identifying the obstacles and potential solutions, and understanding the current progress and gaps in the field.

摘要

本综述讨论了具有增强阻燃(FR)性能的纳米纤维素(NC)气凝胶的开发与应用,纳米纤维素气凝胶是一种可持续且可生物降解的生物材料。NC气凝胶将NC优异的物理和机械性能与气凝胶的低密度和低导热性结合在一起,使其在隔热等领域具有广阔前景。然而,NC气凝胶的可燃性限制了它们在一些应用中的使用,如电磁干扰屏蔽、油/水分离和阻燃纺织品。该综述涵盖了NC多孔材料的设计、制备、改性及作用机理,重点关注先进技术如何赋予其FR性能。该综述还通过采用广泛认可的测试方法,如极限氧指数、锥形量热仪和UL - 94,来评估NC气凝胶的FR性能。该综述还探讨了将MXene、金属有机框架、多巴胺、木质素和藻酸盐等创新且环保的材料融入NC气凝胶中,以提高其FR性能和功能。综述最后概述了FR NC气凝胶未来研究的潜力、挑战和局限性,确定了障碍和潜在解决方案,并了解该领域的当前进展和差距。

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