Pioneering In Situ Recrystallization during Bead Milling: A Top-down Approach to Prepare Zeolite A Nanocrystals

沸石 再结晶(地质) 材料科学 结晶度 纳米晶 化学工程 粒径 纳米颗粒 纳米技术 透射电子显微镜 解吸 吸附 复合材料 化学 催化作用 有机化学 古生物学 工程类 生物
作者
Chokkalingam Anand,Yudai Yamaguchi,Zhendong Liu,Sayoko Ibe,Shanmugam Palani Elangovan,Toshihiro Ishii,Takatsugu Ishikawa,Akira Endo,Tatsuya Okubo,Toru Wakihara
出处
期刊:Scientific Reports [Springer Nature]
卷期号:6 (1) 被引量:13
标识
DOI:10.1038/srep29210
摘要

Abstract Top-down approach has been viewed as an efficient and straightforward method to prepare nanosized zeolites. Yet, the mechanical breaking of zeolite causes amorphization, which usually requires a post-milling recrystallization to obtain fully crystalline nanoparticles. Herein we present a facile methodology to prepare zeolite nanocrystals, where milling and recrystallization can be performed in situ . A milling apparatus specially designed to work under conditions of high alkalinity and temperature enables the in situ recrystallization during milling. Taking zeolite A as an example, we demonstrate its size reduction from ~3 μm to 66 nm in 30 min, which is quite faster than previous methods reported. Three functions, viz ., miniaturization, amorphization and recrystallization were found to take effect concurrently during this one-pot process. The dynamic balance between these three functions was achieved by adjusting the milling period and temperature, which lead to the tuning of zeolite A particle size. Particle size and crystallinity of the zeolite A nanocrystals were confirmed by X-ray diffraction, scanning electron microscopy, transmission electron microscopy and water adsorption-desorption. This work presents a pioneering advancement in this field of nanosized zeolites and will facilitate the mass production as well as boost the wide applications of nanosized zeolites.
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