机械化学
机械合成
共价键
拉曼光谱
结晶度
多孔性
化学工程
化学
材料科学
溶剂
纳米技术
有机化学
球磨机
结晶学
物理
光学
工程类
作者
Ehsan Hamzehpoor,Farshid Effaty,Tristan H. Borchers,Robin S. Stein,Alexander Wahrhaftig‐Lewis,Xavier Ottenwaelder,Tomislav Friščić,Dmitrii F. Perepichka
标识
DOI:10.1002/anie.202404539
摘要
We report a rapid, room‐temperature mechanochemical synthesis of 2‐ and 3‐dimensional boroxine covalent organic frameworks (COFs), enabled by using trimethylboroxine as a dehydrating additive to overcome the hydrolytic sensitivity of boroxine‐based COFs. The resulting COFs display high porosity and crystallinity, with COF‐102 being the first example of a mechanochemically prepared 3D COF, exhibiting a surface area of ca. 2,500 m2 g–1. Mechanochemistry enabled a >20‐fold reduction in solvent use and ~100‐fold reduction in reaction time compared with solvothermal methods, providing target COFs quantitatively with no additional work‐up besides vacuum drying. Real‐time Raman spectroscopy permitted the first quantitative kinetic analysis of COF mechanosynthesis, while transferring the reaction design to Resonant Acoustic Mixing (RAM) enabled synthesis of multi‐gram amounts of the target COFs (tested up to 10 g).
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