Schmidt Joel E, Xie Dan, Davis Mark E
Chemical Engineering , California Institute of Technology , Pasadena , CA 91125 , USA . Email:
Chevron Energy Technology Company , Richmond , CA 94802 , USA.
Chem Sci. 2015 Oct 1;6(10):5955-5963. doi: 10.1039/c5sc02325d. Epub 2015 Jul 27.
There are several distinct two-dimensional zeolite building layers that can condense through different stacking arrangements of the layers to form various three-dimensional framework materials. All known building layers are dense layers in that they do not contain 8-membered ring (MR) or larger pores perpendicular to the two-dimensional layers. Herein, we report a new material (CIT-10) that consists of a two-dimensional layer (termed "rth" layer) that contains an 8 MR perpendicular to the layer. Calcination of CIT-10 forms pure-silica (SSZ-50). CIT-10 can be pillared to form a new framework material with a three-dimensional pore system of 8 and 10 MRs, denoted CIT-11, that can be calcined to form a new microporous material, denoted CIT-12.
有几种不同的二维沸石结构层,它们可以通过层的不同堆叠排列方式凝聚,形成各种三维骨架材料。所有已知的结构层都是致密层,因为它们不包含垂直于二维层的八元环(MR)或更大的孔。在此,我们报道了一种新材料(CIT-10),它由一个二维层(称为“rth”层)组成,该层包含一个垂直于该层的八元环。CIT-10煅烧后形成纯硅(SSZ-50)。CIT-10可以被柱撑形成一种具有八元环和十元环三维孔系的新骨架材料,称为CIT-11,它可以被煅烧形成一种新的微孔材料,称为CIT-12。