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Novel surfactant-free route to delaminated all-silica and titanosilicate zeolites derived from a layered borosilicate MWW precursor

机译:从层状硼硅酸盐MWW前体衍生的新型无表面活性剂路线来脱层全硅和钛硅酸盐沸石

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摘要

Layered borosilicate zeolite precursor ERB-1P (Si/B = 11) is delaminated via simultaneous deboronation and SDA removal, to yield material DZ-1 consisting of silanol nests, using a simple aqueous Zn(NO_3)_2 treatment. Characterization of this synthesis process by PXRD shows loss of long-range order, and transmission electron microscopy (TEM) demonstrates transformation of rectilinear layers in the layered zeolite precursor to single and curved layers in the delaminated material. N_2 physisorption confirms the expected decrease of micropore volume and increase in external surface area for delaminated materials relative to their calcined 3D zeolite counterpart. Elemental analysis shows loss of B and absence of Zn in the delaminated material. Resonances corresponding to silanol nests are evident via^(29)Si solid-state NMR spectroscopy in DZ-1, which should be located within 12-MR pockets near the external surface. We have successfully utilized these nests as tetrahedral recognition sites for incorporation of Ti within an isolated framework coordination environment in material Ti-DZ-1. Diffuse-reflectance ultraviolet (DR-UV) spectroscopy of Ti-DZ-1 confirms isolated framework Ti sites, which are assigned to bands in the range of 210 nm–230 nm. Infrared spectra of Ti-DZ-1 consist of a distinct absorption band at 960 cm^(−1), which is absent in DZ-1 prior to Ti incorporation and has been previously correlated with the presence of framework Ti species. Infrared spectra after pyridine adsorption demonstrate bands consistent with Lewis-acid sites in the resulting Ti-substituted delaminated zeolite. The accessibility of these Lewis-acid sites is confirmed when using Ti-DZ-1 as a catalyst for cyclohexene epoxidation using tert-butyl hydroperoxide as the organic oxidant – a reaction for which both DZ-1 and TS-1 are inactive.
机译:通过简单的Zn(NO_3)_2水溶液处理,通过同时脱硼和SDA脱层,使层状硼硅酸盐沸石前体ERB-1P(Si / B = 11)分层。通过PXRD对合成过程的表征显示出长程有序损失,并且透射电子显微镜(TEM)证实了层状沸石前体中的直线层转变为分层材料中的单层和弯曲层。相对于煅烧的3D沸石,N_2的物理吸附确认了分层材料预期的微孔体积减少和外表面积增加。元素分析表明,分层材料中B的损失和Zn的缺失。通过DZ-1中的^(29)Si固态NMR光谱可以明显看出对应于硅烷醇巢的共振,该共振应位于外表面附近的12-MR腔内。我们已经成功地将这些巢穴用作四面体识别位点,以便在材料Ti-DZ-1的隔离框架协调环境中掺入Ti。 Ti-DZ-1的漫反射紫外(DR-UV)光谱证实了孤立的骨架Ti位点,这些位点分配给210 nm–230 nm范围内的谱带。 Ti-DZ-1的红外光谱由一个在960 cm ^(-1)处的吸收带组成,该吸收带在掺入Ti之前在DZ-1中不存在,并且先前已与骨架Ti物种的存在相关。吡啶吸附后的红外光谱显示出与所得的Ti取代的层状沸石中的Lewis酸位相一致的谱带。当使用Ti-DZ-1作为叔丁基过氧化氢作为有机氧化剂进行环己烯环氧化的催化剂时,这些路易斯酸位点的可及性得到了证实-DZ-1和TS-1都没有活性。

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