Concepts and Design of Materials Nanoarchitectonics

Author:   Omar Azzaroni (Universidad Nacional de La Plata, Argentina) ,  Katsuhiko Ariga (National Institute for Materials Science, Japan)
Publisher:   Royal Society of Chemistry
Volume:   Volume 55
ISBN:  

9781788018029


Pages:   608
Publication Date:   16 February 2022
Format:   Hardback
Availability:   In Print   Availability explained
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Concepts and Design of Materials Nanoarchitectonics


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Overview

The concept of nanoarchitechtonics was introduced to describe the correct manipulation of nanoscale materials in the creation of nano-devices and applications. Nanoarchitectonics has begun to spread into many fields including nanostructured materials synthesis, supramolecular assembly, nanoscale structural fabrications, materials hybridizations, materials and structures for energy and environmental sciences, device and physical application, and bio- and medical applications. Following on from the 2012 title Manipulation of Nanoscale Materials, Concepts and Design of Materials Nanoarchitectonics covers the introductory features underlying the field, presenting a unifying overview of the theoretical aspects and emerging applications that are changing the capability to understand and design advanced functional materials. Edited by pioneers of the field, this book will appeal to researchers working in nanoscience, materials science, supramolecular chemistry, physical chemistry and organic chemistry, as well as graduate students in these areas.

Full Product Details

Author:   Omar Azzaroni (Universidad Nacional de La Plata, Argentina) ,  Katsuhiko Ariga (National Institute for Materials Science, Japan)
Publisher:   Royal Society of Chemistry
Imprint:   Royal Society of Chemistry
Volume:   Volume 55
Weight:   1.054kg
ISBN:  

9781788018029


ISBN 10:   1788018028
Pages:   608
Publication Date:   16 February 2022
Audience:   College/higher education ,  Professional and scholarly ,  Tertiary & Higher Education ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   In Print   Availability explained
This item will be ordered in for you from one of our suppliers. Upon receipt, we will promptly dispatch it out to you. For in store availability, please contact us.

Table of Contents

What is Nanoarchitectonics?: Origin and Task; Design of Halloysite Based Core–Shell Nanosystems; Biomimetic Nanoarchitectonics: Natural Cellulose Based Nanocomposites as High Performance Catalysts; Nanoarchitectonics Based on S-layer Proteins: Design of Noble Metal Nanoparticles Arrangements and Nanostructured Materials; Surface Engineering Towards Better Material Performance; Nanostructured Biocompatible Materials; Self-assembling Nanoarchitectonics for Oral Drug Delivery; Atomic-scale Characterization of Platinum Nanoparticles Deposited on C60 Fullerene Nanowhiskers and Related Carbon Nanomaterials; Shedding a Light on the Colloidal Architectures of a Metal-free Polymeric Semiconductor Graphitic Carbon Nitride; Crystalline Coordination Polymers Nanoarchitectonics by Epitaxial Growth and Etching; Structure–Function Relationship in Conjugated Porous Polymers; Polymer–Clay Hybrids: General Overviews and Recent Trends; Concepts and Design of Water Dispersive Hydrophobic Supracrystals: Specific Properties; Developments in Supramolecular Thin Films to Sensing Applications; Biomolecule-guided Molecular Architectonics to Nanoarchitectonics; Designed Amphiphiles for Cell Membrane Mimetic Nanoarchitecture; Design of Nanostructured Lipid Carriers and Hybrid Lipid Nanoparticles; Transition Metal Dichalcogenides: Properties, Synthetic Routes and Applications; Optimal Silicon-based Nanomaterials for Biological Applications; Synergic Properties in Crystals: Implication of Motion at the Molecular Level; Tailoring Colloidal Core–Shell Quantum Dots for Optoelectronics; Nanoarchitectonics of Stretchable Organic Electronics Materials; Materials Nanoarchitectonics Here, There, Everywhere: Looking Back and Leaping Forward

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Author Information

Katsuhiko Ariga has been working on supramolecular chemistry especially related with self-assembly processes, ultrathin films and molecular recognitions. Accomplishments in his researches contribute significantly developments of biomemetic systems as well as physicochemical understanding on interfacial phenomena. Especially, pioneer researches of layer-layer supramolecular assembly have been highly evaluated, and he is also recognized as an authority of supramolecular recognition at the interfaces.

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