Huang Ju, Fan Yaqi, Zhang Guanqun, Ma Yanhang
School of Physical Science and Technology, ShanghaiTech University Shanghai 201210 China
RSC Adv. 2020 Apr 3;10(23):13583-13590. doi: 10.1039/d0ra00670j. eCollection 2020 Apr 1.
Introduction of meso-/macropores into the intrinsic microporous framework of zeolites has raised substantial interest in catalytic reactions with bulky reactants. Herein, we report the formation of secondary meso-/macropores in Silicalite-1 zeolite by a solvent-free mechanochemical grinding process. The strategy allows the preservation of high crystallinity and microporosity of the pristine zeolite, and the generation of mesopores at room temperature and marcopores at higher temperatures. The roles of the tetrapropylammonium bromide (TPABr) and ammonium fluoride (NHF) have been proposed and demonstrated. A protective layer is formed by TPA ions bonded with the surficial defects to shield the outer surface from the direct attack by F. Instead, F diffuses into the micropore system in a local aqueous environment within zeolite formed by the mechanochemical reaction. As a result, freely diffused F selectively dissolves zones with structural defects to form secondary pores inside the zeolite. Moreover, this strategy proves highly effective in encapsulation of nanoparticles (Pt, Co) in the meso-/macropores of Silicalite-1 zeolite, forming a yolk-shell composite catalyst for potential applications.
将介孔/大孔引入沸石的固有微孔骨架中,已引起人们对涉及大分子反应物催化反应的极大兴趣。在此,我们报道了通过无溶剂机械化学研磨过程在Silicalite-1沸石中形成二次介孔/大孔。该策略能够保留原始沸石的高结晶度和微孔性,并在室温下生成介孔,在较高温度下生成大孔。已提出并证明了四丙基溴化铵(TPABr)和氟化铵(NHF)的作用。由TPA离子与表面缺陷结合形成的保护层可保护外表面免受F的直接攻击。相反,F在机械化学反应形成的沸石内的局部水环境中扩散到微孔系统中。结果,自由扩散的F选择性地溶解具有结构缺陷的区域,从而在沸石内部形成二次孔。此外,该策略在将纳米颗粒(Pt、Co)封装到Silicalite-1沸石的介孔/大孔中方面被证明非常有效,形成了一种蛋黄壳复合催化剂,具有潜在的应用价值。