化学
大孔隙
溶解
结晶
沸石
微晶
化学工程
催化作用
表征(材料科学)
纳米技术
形态学(生物学)
露天
分子筛
分解
反应条件
作者
Sukwoo Jung,Dongwoo Jun,Jiyun Park,Doyeol Ahn,Do Kyoung Kim,Jong Hun Kang
标识
DOI:10.1021/acs.inorgchem.5c04430
摘要
Exploration of zeolites with various morphologies has received significant attention as a strategy to enhance their catalytic performance and elongate their lifetime. This study presents open hierarchical ZSM-5 which consists of micropores and mesopores, with a further extension to macropores owing to the presence of open structures. A one-step facile synthetic strategy features utilization of tubular reactors for precise and rapid temperature control, where faster ramping rates play a critical role in formation of open structures by enhancing gel aggregation. Further characterization of atomic composition and modification in synthesis environments (e.g., synthesis temperature, batch Si/Al) revealed that formation of open hierarchical ZSM-5 is based on the intricate interplay among three key steps: aggregation, crystallization, and dissolution. Fast aggregation and comparable crystallization to dissolution play a critical role in formation of open structures, while modification in individual steps leads to the absence of open structures and different polycrystalline features. This study sheds light on the parameter of ramping rate, which is often overlooked in zeolite synthesis, further providing insight into optimizing zeolite synthesis.
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