Advances in Microporous and Mesoporous Materials

Advances in Microporous and Mesoporous Materials
Author: Rafael Huirache Acuña
Publsiher: Unknown
Total Pages: 135
Release: 2020
Genre: Mesoporous materials
ISBN: 183880756X

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Advances in Microporous and Mesoporous Materials

Advances in Microporous and Mesoporous Materials
Author: Rafael Huirache Acuña
Publsiher: BoD – Books on Demand
Total Pages: 126
Release: 2020-07-15
Genre: Technology & Engineering
ISBN: 9781838807559

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Nowadays, microporous and mesoporous materials are versatile solids of great interest due to their structures and pore sizes, which allow their application in many areas. Accordingly, with IUPAC, materials with pore sizes smaller than 2 nm are called microporous and with pore sizes between 2 and 50 nm are called mesoporous. The pore size has an important impact on the material properties and affects their applications. In addition, high surface area, and their ability to incorporate functional groups on the framework are of great relevance for commercial and science applications. This book intends to provide readers with a comprehensive overview of recent improvements in the microporous and mesoporous materials field.

Microporous and Mesoporous Materials

Microporous and Mesoporous Materials
Author: Reza Sabet Dariani
Publsiher: BoD – Books on Demand
Total Pages: 176
Release: 2016-08-24
Genre: Science
ISBN: 9789535125822

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The aim of this book has been to explore the variety of phenomena associated with the major forms of the material, while laying the foundation for a clear and detailed working and understanding of the materials. We tried to present new types of advanced materials, which are currently a hot topic, and provide readers with a selective review of important improvements in the field. I believe that every chapter in this book presents the progress in the subject and describes the latest advances in microporous and mesoporous materials.

Advances in Nanoporous Materials

Advances in Nanoporous Materials
Author: Anonim
Publsiher: Elsevier
Total Pages: 336
Release: 2009-10-16
Genre: Science
ISBN: 008093241X

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Advances in Nanoporous Materials is a collection of comprehensive reviews of lasting value to the field. The contributions cover all aspects of nanoporous materials, including their preparation and structure, post-synthetic modification, characterization and use in catalysis, adsorption/separation, and all other fields of potential application, e.g., membranes, host/guest chemistry, environmental protection, electrochemistry, sensors, and optical devices. "Nanoporous materials" comprise all kinds of porous solids that possess pores in the range from about 0.2 nm up to 50 nm, irrespective of their chemical composition, their origin (natural or synthetic), and their amorphous or crystalline nature. Typical examples are zeolites and zeolite-like materials (e.g., crystalline microporous aluminophosphates and their derivatives), mesoporous oxides such as silica, metal organic frameworks, pillared clays, porous carbons, and related materials. State-of-the-art reviews keep coverage current Broad scope provides a full topical overview Contributions from renowned experts lend authority to the material

Multifunctional Mesoporous Inorganic Solids

Multifunctional Mesoporous Inorganic Solids
Author: César A.C. Sequeira,Michael J. Hudson
Publsiher: Springer Science & Business Media
Total Pages: 511
Release: 2013-04-17
Genre: Science
ISBN: 9789401581394

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1. Introduction. There is much interest in the general subject of porous inorganic materials with respect to their use as sorbents or catalysts. Such inorganic solids may be microporous, mesoporous or macroporous according to the sizes of the pores within the solid. Often there is a range of pore sizes within any given solid and so there is special interest in the synthesis, characterisation and application of porous inorganic solids with well defined pores. Pores of diameter larger than 50 nm are generally termed macropores. Those with diameters of less than 2 nm are micropores and pores of intermediate size are called mesopores. Solids, which contain only mesopores, are correctly called mesoporous but very often there is a combination of different types of porosities within one given solid. The synthesis, characterisation and application of microporous solids is much more advanced than is the case with mesoporous substances. Moreover, the synthesis of crystalline mesoporous materials is one clear goal for the future but which has not been attained so far. Consequently, it is of interest to examine the current state of our knowledge of microporous materials and to examine how this may apply to mesoporous materials. Both catalytic and sorption processes could benefit from studies of mesoporous solids because the mesopores could permit diffusion of larger reactants or products than is the case in microporous materials. 2.

Mesoporous Materials for Advanced Energy Storage and Conversion Technologies

Mesoporous Materials for Advanced Energy Storage and Conversion Technologies
Author: San Ping Jiang,Jian Liu
Publsiher: CRC Press
Total Pages: 336
Release: 2017-05-25
Genre: Science
ISBN: 9781498748018

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Innovation through specific and rational design and functionalization has led to the development of a wide range of mesoporous materials with varying morphologies (hexagonal, cubic, rod-like), structures (silicates, carbons, metal oxides), and unique functionalities (doping, acid functionalization) that currently makes this field one of the most exciting in materials science and energy applications. This book focuses primarily on the rapid progress in their application in energy conversion and storage technologies, including supercapacitor, Li-ion battery, fuel cells, solar cells, and photocatalysis (water splitting) and will serve as a valuable reference for researchers in the field

Ordered Porous Solids

Ordered Porous Solids
Author: Valentin Valtchev,Svetlana Mintova,Michael Tsapatsis
Publsiher: Elsevier
Total Pages: 800
Release: 2011-08-11
Genre: Science
ISBN: 0080932452

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The developments in the area of ordered nanoporous solids have moved beyond the traditional catalytic and separation uses and given rise to a wide variety of new applications in different branches of chemistry, physics, material science, etc. The activity in this area is due to the outstanding properties of nanoporous materials that have attracted the attention of researchers from different communities. However, recent achievements in a specific field often remain out of the focus of collaborating communities. This work summarizes the latest developments and prospects in the area of ordered porous solids, including synthetic layered materials (clays), microporous zeolite-type materials, ordered mesoporous solids, metal-organic-framework compounds (MOFs), carbon, etc. All aspects, from synthesis via comprehensive characterization to the advanced applications of ordered porous materials, are presented. The chapters are written by leading experts in their respective fields with an emphasis on recent progress and the state of the art. * Summarizes the latest developments in the field of ordered nanoporous solids * Presents state-of-the-art coverage of applications related to porous solids * Incorporates 28 contributions from experts across the disciplines

Advances in Chemistry

Advances in Chemistry
Author: J Gopalakrishnan,G U Kulkarni
Publsiher: World Scientific
Total Pages: 560
Release: 2003-09-12
Genre: Science
ISBN: 9789814485050

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This invaluable book comprises assorted recent papers of Professor C N R Rao, a well-known chemist. It presents current trends in materials chemistry and physics, offering in-depth information to young researchers and pleasant reading to experts. Advances in Chemistry brings out the single-minded dedication of Professor Rao to the promotion of science. Contents:Highlights of Materials ChemistryTransition Metal Oxides (Including Cuprate Superconductors)Colossal Magnetoresistance, Charge Ordering and Related Aspects of Rare Earth ManganatesNanoparticlesNanotubes and NanowiresMolecular SolidsPorous SolidsOpen Framework Materials Readership: Students and researchers in industry and academia. Keywords:Metal Oxides;Magnetoresistance;Nanoparticles;Molecular Solids;Porous Solids