Electrospun Zeolite Nanofibers for Catalysis and Adsorption Applications

静电纺丝 沸石 纳米纤维 吸附 材料科学 微型多孔材料 催化作用 纳米技术 化学工程 纳米颗粒 聚合物 表面改性 制作 比表面积 多相催化 纳米复合材料 纳米材料基催化剂
作者
Xintong Chen,Xintong You,Haoxin Huang,Qian Yu,Shunheng Tu,Wu Wen,Yi Yang
出处
期刊:Langmuir [American Chemical Society]
卷期号:41 (42): 28284-28303 被引量:5
标识
DOI:10.1021/acs.langmuir.5c03725
摘要

Zeolites are widely used as microporous catalysts and adsorbents. However, zeolite nanoparticles have limitations in practical applications due to their unavoidable agglomeration and difficulty in recycling. One promising way to overcome these problems is to immobilize zeolite particles on electrospun nanofibers. In this review, we first systematically summarize the methods of constructing zeolite-based nanofibers by the electrospinning technique, encompassing direct electrospinning and surface modification techniques. The direct electrospinning method enables the versatile fabrication of zeolite-based nanofibers from composite mixtures containing zeolite particles, polymers, and solvents. However, as particles are embedded within the polymer matrix, the accessibility of active sites is restricted. To enhance accessibility, surface modification techniques were developed as a complementary strategy. These techniques involve growing zeolite particles directly on the surface of preformed nanofibers. Further, post-treatment strategies for the preparation of functional electrospun zeolite nanofibers and their derivatives are introduced for different applications. The unique properties and performances of different electrospun zeolite nanofibers in the field of catalysis and adsorption are also highlighted by quantifying performance indicators such as overpotential, catalytic yield, and adsorption capacity, spanning diverse applications, such as energy storage and conversion, water treatment, air pollutant filtration, gas separation, heterogeneous catalysis, and blood purification systems. Finally, challenges and perspectives for the electrospun zeolite nanofibers are presented for guidance in future research.
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