2014
DOI: 10.1016/j.micromeso.2014.08.025
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Changes of medium-range structure in the course of crystallization of zeolite omega from magadiite

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Cited by 18 publications
(6 citation statements)
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“…The FTIR was applied to analyze the change of chemical states of laponite and the samples synthesized at 180 °C for different time. As shown in Figure , the peak at 635 cm –1 is assigned to the existing D‐6 ring,, which confirms the formation of the CHA structure. The spectrum of laponite shows the peak at 1008 cm –1 , relating to Si–O vibrations and the peak at 649 cm –1 , corresponding to the Mg–OH bending vibration .…”
Section: Resultssupporting
confidence: 57%
“…The FTIR was applied to analyze the change of chemical states of laponite and the samples synthesized at 180 °C for different time. As shown in Figure , the peak at 635 cm –1 is assigned to the existing D‐6 ring,, which confirms the formation of the CHA structure. The spectrum of laponite shows the peak at 1008 cm –1 , relating to Si–O vibrations and the peak at 649 cm –1 , corresponding to the Mg–OH bending vibration .…”
Section: Resultssupporting
confidence: 57%
“…MOR zeolite has been successfully prepared from magadiite using tetraethylammonium hydroxide as an intercalating agent and/or organic structure directing agent (OSDA). , Kooli et al successfully synthesized KLS-1, KLS-2, FLS-1, and FLS-2 via the conversion of H-magadiite. High silica ferrierites were prepared from Al-containing hydrous magadiite in both hydrothermal and solid-state reactions. , In 2016, Kooli et al reported that RUB-15 and PLS materials could be obtained from H-magadiite by “pseudo solid-state” conversion with a drop of water added into the synthesis system. , In our pervious works, mordenite, ZSM-5, ferrierite, , offretite, and omega , were successfully obtained via the conversion of magadiite in the present of various organic templates. In our effort, we presented several reports on the role of short-chain tetraalkylammonium cations in the transformation of magadiite and the crystallization mechanism of the conversion of magadiite into zeolite L and zeolite omega was investigated in detail, which provided a useful route to understand the zeolite formation mechanism by using magadiite as a synthetic precursor. Additionally, an OSDA-free synthesis of zeolite beta via the conversion of magadiite was carried out and we investigated the crystallization mechanism in detail.…”
Section: Introductionmentioning
confidence: 99%
“…The weak bands between 820 and 722 cm -1 are assigned to the symmetric elongations of the T-O bond. The band at 619 cm -1 is characteristic of T-O vibrations rings with 6 tetrahedra, and the intense band at 435 cm -1 indicate the formation of major 4Rs [49]. The only difference between these bands is the displacement of the band at 1003 cm -1 toward the highest wavenumbers.…”
Section: Ftir Studymentioning
confidence: 97%