Gao Zihao Rei, Márquez-Álvarez Carlos, Balestra Salvador R G, Yu Huajian, Villaescusa Luis A, Camblor Miguel A
Instituto de Ciencia de Materiales de Madrid (ICMM), CSIC, c/Sor Juana Inés de la Cruz 3, 28049 Madrid, Spain.
Instituto de Catálisis y Petroleoquímica (ICP), CSIC, c/Marie Curie 2, 28049 Madrid, Spain.
Inorg Chem. 2024 May 27;63(21):9953-9966. doi: 10.1021/acs.inorgchem.4c01021. Epub 2024 May 17.
For zeolites synthesized using imidazolium cations, the organic matter can be extracted at very low temperatures (100 °C) using ozone. This is possible for zeolites with 12-ring or larger pores but requires higher temperatures in medium-pore zeolites. The first chemical events in this process occur fast, even at room temperature, and imply the loss of aromaticity likely by the formation of an adduct between ozone and the imidazole ring through carbons C4 and C5. Subsequent rupture of the imidazole ring provides smaller and more flexible fragments that can desorb more readily. This process has been studied experimentally, mainly through infrared spectroscopy, and theoretically by density functional theory. Amazingly, fluoride anions occluded in the small double-four-ring units () during the synthesis remain inside the cage throughout the whole process when the temperature is not too high (≤150 °C). However, fluoride in larger cages in ends up bonded to silicon in penta or hexacoordinated units, likely out of the cages, after ozone treatment at 150 °C. For several germanosilicate zeolites, the process allows their subsequent degermanation to yield stable high-silica zeolites. Quaternary ammonium cations require harsher conditions that eventually also extract fluoride from zeolite cages, including the unit.
对于使用咪唑阳离子合成的沸石,可以在非常低的温度(100°C)下用臭氧萃取有机物。对于具有12元环或更大孔道的沸石来说这是可行的,但中孔沸石则需要更高的温度。该过程中的首个化学事件发生迅速,甚至在室温下也是如此,这意味着可能通过臭氧与咪唑环在C4和C5碳原子处形成加合物而导致芳香性丧失。随后咪唑环的断裂产生更小且更灵活的片段,这些片段能更易于解吸。这个过程主要通过红外光谱进行了实验研究,并通过密度泛函理论进行了理论研究。令人惊讶的是,在合成过程中被包藏在小双四元环单元()中的氟阴离子,在温度不太高(≤150°C)时,在整个过程中都保留在笼内。然而,在150°C进行臭氧处理后, 中较大笼中的氟最终与五配位或六配位单元中的硅结合,可能会从笼中脱出。对于几种锗硅沸石,该过程使得它们随后脱锗以生成稳定的高硅沸石。季铵阳离子需要更苛刻的条件,最终也会从沸石笼中萃取出氟,包括 单元。