化学
沸石
溶解度
成核
水热合成
热液循环
氟化物
氟化铵
贝克曼重排
无机化学
Atom(片上系统)
原子经济
化学工程
催化作用
有机化学
计算机科学
嵌入式系统
工程类
作者
Lin Deng,Ye Ma,Tianming Zai,Xianfeng Yi,Tong Yan,Hui Yu,Kai Fan,Qinming Wu,Yanhang Ma,Xiaolong Liu,Weiliao Liu,Na Sheng,Handong Wang,Anmin Zheng,Liang Wang,Feng‐Shou Xiao
摘要
Zeolites are typically synthesized in the presence of strong alkaline or fluoride species, which is not atom-economic for zeolite synthesis due to the high solubility of strong alkaline and fluoride species to silica. One of the solutions for this issue is to reduce solubility of silica in the zeolite synthesis, but it is challenging. Herein, we show that nucleation and growth of zeolites can occur under near neutral conditions, giving an atom-economical synthesis of zeolites with almost full silica utilization due to very low silica solubility. Compared to conventional hydrothermal synthesis, this work both enhances the zeolite yield and reduces waste emissions, even water zero emission. Particularly, structural defects (terminal silanols) in zeolites are obviously lowered, thus giving high thermal and hydrothermal stabilities and good performance in the Beckmann rearrangement.
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