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      Synthesis of new zeolite structures

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          Abstract

          The advances in the synthesis of new zeolite structures in the past decade are presented, which are achieved by utilization of the synthetic strategies primarily based on pre-designed SDAs, heteroatom substitution, and topotactic transformations.

          Abstract

          The search for new zeolites is of continuous interest in the field of zeolite science because of their widespread application in catalysis and adsorption–separation. To this end, considerable efforts have been devoted to the preparation of new zeolites with novel porous architectures and compositions. Taking account of the key factors governing the formation of zeolites ( e.g., guest species, framework elements, construction processes, etc.), several synthetic strategies have been developed recently. These allow the discovery of many new zeolites with unprecedented structural features, such as hierarchical pores, odd-ring numbers (11-, 15-rings), extra-large pores (16-, 18-, 20-, 28-, and 30-rings), chiral pores, and extremely complex framework topologies, etc.In this review, we will present the advances in the synthesis of new zeolite structures in the last decade, which are achieved by utilization of the synthetic strategies based on pre-designed structure-directing agents, heteroatom substitution, and topotactic transformations.

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          Ordered porous materials for emerging applications.

          "Space--the final frontier." This preamble to a well-known television series captures the challenge encountered not only in space travel adventures, but also in the field of porous materials, which aims to control the size, shape and uniformity of the porous space and the atoms and molecules that define it. The past decade has seen significant advances in the ability to fabricate new porous solids with ordered structures from a wide range of different materials. This has resulted in materials with unusual properties and broadened their application range beyond the traditional use as catalysts and adsorbents. In fact, porous materials now seem set to contribute to developments in areas ranging from microelectronics to medical diagnosis.
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            The hydrothermal synthesis of zeolites: Precursors, intermediates and reaction mechanism

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              Two-dimensional zeolites: current status and perspectives.

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                Author and article information

                Journal
                CSRVBR
                Chemical Society Reviews
                Chem. Soc. Rev.
                Royal Society of Chemistry (RSC)
                0306-0012
                1460-4744
                2015
                2015
                : 44
                : 20
                : 7112-7127
                Affiliations
                [1 ]State Key Laboratory of Inorganic Synthesis and Preparative Chemistry
                [2 ]College of Chemistry
                [3 ]Jilin University
                [4 ]Changchun 130012
                [5 ]P. R. China
                [6 ]Instituto de Tecnología Química (UPV-CSIC)
                [7 ]Universidad Politécnica de Valencia
                [8 ]Consejo Superior de Investigaciones Científicas
                [9 ]Valencia
                [10 ]Spain
                Article
                10.1039/C5CS00023H
                25740693
                ba2c8984-fac3-4307-8b3c-a868958df852
                © 2015
                History

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