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Molecular modelling and synthesis of...
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Boustani, Ihsan.
Molecular modelling and synthesis of nanomaterialsapplications in carbon- and boron-based nanotechnology /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Molecular modelling and synthesis of nanomaterialsby Ihsan Boustani.
Reminder of title:
applications in carbon- and boron-based nanotechnology /
Author:
Boustani, Ihsan.
Published:
Cham :Springer International Publishing :2020.
Description:
xiii, 594 p. :ill., digital ;24 cm.
Contained By:
Springer Nature eBook
Subject:
Nanostructured materials.
Online resource:
https://doi.org/10.1007/978-3-030-32726-2
ISBN:
9783030327262$q(electronic bk.)
Molecular modelling and synthesis of nanomaterialsapplications in carbon- and boron-based nanotechnology /
Boustani, Ihsan.
Molecular modelling and synthesis of nanomaterials
applications in carbon- and boron-based nanotechnology /[electronic resource] :by Ihsan Boustani. - Cham :Springer International Publishing :2020. - xiii, 594 p. :ill., digital ;24 cm. - Springer series in materials science,v.2900933-033X ;. - Springer series in materials science ;v. 62..
Foreword -- Preface -- Part I Molecular Modelling & Magic Clusters -- 1 Molecular Modelling -- 2 Magic Numbers & Clusters -- 3 Alkali Metal Clusters -- Part II The p-Block Non-Metal Clusters -- 4 The Element Boron -- 5 The Element Carbon -- Part III Modelling of Nanostructures -- 6 Two-Dimensional Sheets -- 7 One-Dimensional Nanotubes -- 8 Three-Dimensional Fullerenes -- Part IV Potential Application in Nanotechnology -- 9 Nano Battery -- 10 Nanosensors and Fullerenes -- 11 Semi-Emperical Methods -- Index.
This book presents nanomaterials as predicted by computational modelling and numerical simulation tools, and confirmed by modern experimental techniques. It begins by summarizing basic theoretical methods, then giving both a theoretical and experimental treatment of how alkali metal clusters develop into nanostructures, as influenced by the cluster's "magic number" of atoms. The book continues with a discussion of atomic clusters and nanostructures, focusing primarily on boron and carbon, exploring, in detail, the one-, two-, and three-dimensional structures of boron and carbon, and describing their myriad potential applications in nanotechnology, from nanocoating and nanosensing to nanobatteries with high borophene capacity. The broad discussion of computational modelling as well as the specific applications to boron and carbon, make this book an essential reference resource for materials scientists in this field of research.
ISBN: 9783030327262$q(electronic bk.)
Standard No.: 10.1007/978-3-030-32726-2doiSubjects--Topical Terms:
216041
Nanostructured materials.
LC Class. No.: TA418.9.N35 / B687 2020
Dewey Class. No.: 620.115
Molecular modelling and synthesis of nanomaterialsapplications in carbon- and boron-based nanotechnology /
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Foreword -- Preface -- Part I Molecular Modelling & Magic Clusters -- 1 Molecular Modelling -- 2 Magic Numbers & Clusters -- 3 Alkali Metal Clusters -- Part II The p-Block Non-Metal Clusters -- 4 The Element Boron -- 5 The Element Carbon -- Part III Modelling of Nanostructures -- 6 Two-Dimensional Sheets -- 7 One-Dimensional Nanotubes -- 8 Three-Dimensional Fullerenes -- Part IV Potential Application in Nanotechnology -- 9 Nano Battery -- 10 Nanosensors and Fullerenes -- 11 Semi-Emperical Methods -- Index.
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This book presents nanomaterials as predicted by computational modelling and numerical simulation tools, and confirmed by modern experimental techniques. It begins by summarizing basic theoretical methods, then giving both a theoretical and experimental treatment of how alkali metal clusters develop into nanostructures, as influenced by the cluster's "magic number" of atoms. The book continues with a discussion of atomic clusters and nanostructures, focusing primarily on boron and carbon, exploring, in detail, the one-, two-, and three-dimensional structures of boron and carbon, and describing their myriad potential applications in nanotechnology, from nanocoating and nanosensing to nanobatteries with high borophene capacity. The broad discussion of computational modelling as well as the specific applications to boron and carbon, make this book an essential reference resource for materials scientists in this field of research.
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based on 0 review(s)
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