Nanoscale Assembly: Chemical Techniques / Edition 1

Nanoscale Assembly: Chemical Techniques / Edition 1

by Wilhelm T.S. Huck
ISBN-10:
1461498562
ISBN-13:
9781461498568
Pub. Date:
11/27/2014
Publisher:
Springer US
ISBN-10:
1461498562
ISBN-13:
9781461498568
Pub. Date:
11/27/2014
Publisher:
Springer US
Nanoscale Assembly: Chemical Techniques / Edition 1

Nanoscale Assembly: Chemical Techniques / Edition 1

by Wilhelm T.S. Huck
$109.99
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Overview

Nanotechnology has received tremendous interest over the last decade, not only from the scientific community but also from a business perspective and from the general public. Although nanotechnology is still at the largely unexplored frontier of science, it has the potential for extremely exciting technological innovations that will have an enormous impact on areas as diverse as information technology, medicine, energy supply and probably many others. The miniturization of devices and structures will impact the speed of devices and information storage capacity. More importantly, though, nanotechnology should lead to completely new functional devices as nanostructures have fundamentally different physical properties that are governed by quantum effects. When nanometer sized features are fabricated in materials that are currently used in electronic, magnetic, and optical applications, quantum behavior will lead to a set of unprecedented properties. The interactions of nanostructures with biological materials are largely unexplored. Future work in this direction should yield enabling technologies that allows the study and direct manipulation of biological processes at the (sub) cellular level.


Product Details

ISBN-13: 9781461498568
Publisher: Springer US
Publication date: 11/27/2014
Series: Nanostructure Science and Technology
Edition description: 2005
Pages: 244
Product dimensions: 6.10(w) x 9.25(h) x 0.02(d)

Table of Contents

Structure Formation in Polymer Films From Micrometer to the sub-100 nm Length Scales.- Functional Nanostructured Polymers Incorporation of Nanometer Level Control in Device Design.- Electronic Transport through Self-Assembled Monolayers.- Nanostructured Hydrogen-Bonded Rosette Assemblies Self-Assembly and Self-Organization.- Self-Assembled Molecular Electronics.- Multivalent Ligand-Receptor Interactions on Planar Supported Membranes An On-Chip Approach.- Aggregation of Amphiphiles as a Tool to Create Novel Functional Nano-Objects.- Self-Assembly of Colloidal Building Blocks into Complex and Controllable Structures.- Self-Assembly and Nanostructured Materials.
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