Surface modification of MOFs towards flame retardant polymer composites

Xiuhong Sun, Ye-Tang Pan, Wei Wang and Rongjie Yang
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Abstract

Metal–organic frameworks (MOFs) have gained increasing interest as a new flame retardant material due to their high porosity, wide specific surface area, and structural flexibility. MOFs can achieve improved flame retardant qualities by modifying metal ions or adding flame retardant components to their ligands. Although MOFs' organic ligands can somewhat enhance their compatibility with the polymer matrix, their agglomeration in the matrix remains unavoidable which diminishes their effectiveness. Research indicates that surface modification of MOFs can enhance interface interactions with the polymer matrix. Consequently, modifying the surface of MOFs is crucial. Here, we categorize methods for modifying the surface structure of MOFs and examine the flame-retardant effects of various modification techniques, emphasizing the development of MOFs' surface morphology and its compatibility with the polymer matrix. In addition, we discuss the economic significance and sustainability of surface-modified MOFs compared to conventional flame retardants. Finally, we also discuss the prospects and challenges associated with this. Furthermore, we hope this work will provide a timely guide for scholars in this field and inspire future research.

Abstract Image

mof阻燃高分子复合材料的表面改性研究
金属有机骨架(MOFs)由于其高孔隙率、宽比表面积和结构柔韧性等优点,作为一种新型阻燃材料,受到了越来越多的关注。mof可以通过修饰金属离子或在其配体中添加阻燃成分来改善其阻燃性能。尽管mof的有机配体可以在一定程度上增强其与聚合物基体的相容性,但它们在基体中的团聚仍然是不可避免的,这降低了它们的有效性。研究表明,mof的表面改性可以增强其与聚合物基体的界面相互作用。因此,改性mof的表面是至关重要的。本文对改性mof表面结构的方法进行了分类,并研究了各种改性技术的阻燃效果,重点介绍了mof表面形貌的发展及其与聚合物基体的相容性。此外,我们还讨论了与传统阻燃剂相比,表面改性mof的经济意义和可持续性。最后,我们还讨论了与此相关的前景和挑战。此外,我们希望本工作能够及时为该领域的学者提供指导,并对未来的研究产生启发。
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