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NATO Advanced Research Workshop on Physicochemical Properties of Zeolitic Systems and Their Low Dimensionality

Low dimensionality is a multifarious concept which applies to very diversified materials. Thus, examples of low-dimensional systems are structures with one or several layers, single lines or patterns of lines, and small clusters isolated or dispersed in solid systems. Such low­ dimensional features...

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Detalles Bibliográficos
Autores principales: Barthomeuf, Denise, Derouane, Eric, Hölderich, Wolfgang
Lenguaje:eng
Publicado: Springer 1990
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-1-4684-5787-2
http://cds.cern.ch/record/2031413
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author Barthomeuf, Denise
Derouane, Eric
Hölderich, Wolfgang
author_facet Barthomeuf, Denise
Derouane, Eric
Hölderich, Wolfgang
author_sort Barthomeuf, Denise
collection CERN
description Low dimensionality is a multifarious concept which applies to very diversified materials. Thus, examples of low-dimensional systems are structures with one or several layers, single lines or patterns of lines, and small clusters isolated or dispersed in solid systems. Such low­ dimensional features can be produced in a wide variety of materials systems with a broad spectrum of scientific and practical interests. These features, in turn, induce specific properties and, particularly, specific transport properties. In the case of zeolites, low dimensionality appears in the network of small-diameter pores of molecular size, extending in one, two or three di­ mensions, that these solids exhibit as a characteristic feature and which explains the term of "molecular sieves" currently used to name these ma­ terials. Indeed, a large number of industrial processes for separation of gases and liquids, and for catalysis are based upon the use of this low­ dimensional feature in zeolites. For instance, zeolites constitute the first class of catalysts employed allover the world. Because of the peculiarity and flexibility of their structure (and composition), zeolites can be adapted to suit many specific and diversified applications. For this reason, zeolites are presently the object of a large and fast-growing interest among chemists and chemical engineers.
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spelling cern-20314132021-04-22T06:49:20Zdoi:10.1007/978-1-4684-5787-2http://cds.cern.ch/record/2031413engBarthomeuf, DeniseDerouane, EricHölderich, WolfgangNATO Advanced Research Workshop on Physicochemical Properties of Zeolitic Systems and Their Low DimensionalityOther Fields of PhysicsLow dimensionality is a multifarious concept which applies to very diversified materials. Thus, examples of low-dimensional systems are structures with one or several layers, single lines or patterns of lines, and small clusters isolated or dispersed in solid systems. Such low­ dimensional features can be produced in a wide variety of materials systems with a broad spectrum of scientific and practical interests. These features, in turn, induce specific properties and, particularly, specific transport properties. In the case of zeolites, low dimensionality appears in the network of small-diameter pores of molecular size, extending in one, two or three di­ mensions, that these solids exhibit as a characteristic feature and which explains the term of "molecular sieves" currently used to name these ma­ terials. Indeed, a large number of industrial processes for separation of gases and liquids, and for catalysis are based upon the use of this low­ dimensional feature in zeolites. For instance, zeolites constitute the first class of catalysts employed allover the world. Because of the peculiarity and flexibility of their structure (and composition), zeolites can be adapted to suit many specific and diversified applications. For this reason, zeolites are presently the object of a large and fast-growing interest among chemists and chemical engineers.Springeroai:cds.cern.ch:20314131990
spellingShingle Other Fields of Physics
Barthomeuf, Denise
Derouane, Eric
Hölderich, Wolfgang
NATO Advanced Research Workshop on Physicochemical Properties of Zeolitic Systems and Their Low Dimensionality
title NATO Advanced Research Workshop on Physicochemical Properties of Zeolitic Systems and Their Low Dimensionality
title_full NATO Advanced Research Workshop on Physicochemical Properties of Zeolitic Systems and Their Low Dimensionality
title_fullStr NATO Advanced Research Workshop on Physicochemical Properties of Zeolitic Systems and Their Low Dimensionality
title_full_unstemmed NATO Advanced Research Workshop on Physicochemical Properties of Zeolitic Systems and Their Low Dimensionality
title_short NATO Advanced Research Workshop on Physicochemical Properties of Zeolitic Systems and Their Low Dimensionality
title_sort nato advanced research workshop on physicochemical properties of zeolitic systems and their low dimensionality
topic Other Fields of Physics
url https://dx.doi.org/10.1007/978-1-4684-5787-2
http://cds.cern.ch/record/2031413
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