2008
Spheres of Microporous Titanosilicate Umbite with Hierarchical Pore Systems
Abstract: Micrometric polycrystalline spheres of up to 1 mm diameter of microporous titanosilicate K2TiSi3O9·H2O with umbite structure have been prepared without the use of organic structuring agents. These spheres are organized as micro/macroporous hierarchical materials with macropores in the 0.2–1.4 µm range of average size, showing that intraparticular resistance to water transport is not limiting. Also, similar ion exchange performance can be observed in the Ti‐umbite spheres and in the single crystals obtained und…
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Cited by 17 publications
(11 citation statements)
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Formation of Micro/Macroporous Hierarchical Spheres of Titanosilicate Umbite
Eur J Inorg Chem
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“…In spite of the interesting results obtained in our previous work, [12] the mechanism of formation of the hierarchically structured spheres remains unclear, and the key role of the operating conditions (presence of rotation, type of Ti precursor) needs to be clarified for this methodology to be extended to the preparation of other micro/macroporous systems. The present work explores these aspects by studying a wider range of conditions (regarding synthesis time and rotation speed) and by using a battery of characterization techniques to understand how the Ti-umbite crystals are assembled to produce solid spheres in which micropores and macropores are combined.…”
Section: Introduction
mentioning
confidence: 75%
Formation of Micro/Macroporous Hierarchical Spheres of Titanosilicate Umbite
Eur J Inorg Chem
Self Cite
Abstract
Smart CitationsHow this paper cites the one you are viewing
“…In spite of the interesting results obtained in our previous work, [12] the mechanism of formation of the hierarchically structured spheres remains unclear, and the key role of the operating conditions (presence of rotation, type of Ti precursor) needs to be clarified for this methodology to be extended to the preparation of other micro/macroporous systems. The present work explores these aspects by studying a wider range of conditions (regarding synthesis time and rotation speed) and by using a battery of characterization techniques to understand how the Ti-umbite crystals are assembled to produce solid spheres in which micropores and macropores are combined.…”
Section: Introduction
mentioning
confidence: 75%
“…In a previous work, micrometric spheres of microporous titanosilicate umbite (Ti-umbite) having hierarchical pore systems were prepared by direct liquid-phase hydrothermal synthesis under a range of synthesis conditions in which a successful synthesis always required agitation by rotation and the use of TiO 2 anatase as a Ti source. [12] The micro/ macroporous hierarchical architecture of these spheres was effective in reducing intraparticular transport resistances, as demonstrated for water and Sr 2+ cations. Umbite is a microporous silicate mineral with the stoichiometry K 2 -(Zr 0.8 Ti 0.2 )Si 3 O 9 ·H 2 O.…”
Section: Introduction
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confidence: 92%
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“…For example, macroporous NaP zeolite monoliths (M-ZPMs) which are formed into shapes such as cylinders, rectangular-prisms, and doughnuts, were obtained via gel-casting of the aged zeolite gel with colloidal silica as a binder and subsequent VPT synthesis. 152 Sebasti an et al 153,154 used a direct liquid-phase hydrothermal synthesis to generate micro-macroporous hierarchical titanosilicate microspheres with umbite structure. It is worth mentioning that both microporous structure directing agents and macroporous templates were not necessary in this work.…”
Section: Desilication and Other Methods
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confidence: 99%
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“…65). 667,702 Removal of the surfactant and cell macrotemplates gave rise to corresponding titania materials that are hierarchically porous and exhibit relatively homogeneous and uniform macropores with wormhole-like mesopores, respectively. The macroporous structure morphology can be easily controlled by choosing the morphology of the cells.…”
Section: Hierarchically Meso-macroporous Structures
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confidence: 99%
