Frontiers of Multifunctional Nanosystems

Author:   Eugenia V. Buzaneva ,  Peter Scharff
Publisher:   Springer-Verlag New York Inc.
Edition:   2002 ed.
Volume:   57
ISBN:  

9781402005602


Pages:   485
Publication Date:   31 May 2002
Format:   Hardback
Availability:   In Print   Availability explained
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Frontiers of Multifunctional Nanosystems


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Overview

General routes to the development of innovative, multi-functional nanosystems are described by experts in the field. The systems described are based on fullerenes, nanotubes, metals (Au, Ag, Pt and so on) and semiconductors (Si, CdS, CdTe and metal oxides), nanocrystals and polymer/biopolymer assembly systems. The book also discusses the realization and characterization of the fundamental properties of nanosystems, defined by nano-size effects, as well as the application of such systems in electronics, optics, magnetoelectronics, spintronics, biomedicine, pharmaceutical biocomplexes and biosensors.

Full Product Details

Author:   Eugenia V. Buzaneva ,  Peter Scharff
Publisher:   Springer-Verlag New York Inc.
Imprint:   Springer-Verlag New York Inc.
Edition:   2002 ed.
Volume:   57
Weight:   1.930kg
ISBN:  

9781402005602


ISBN 10:   1402005601
Pages:   485
Publication Date:   31 May 2002
Audience:   College/higher education ,  Professional and scholarly ,  Undergraduate ,  Postgraduate, Research & Scholarly
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

Multiscale computer simulations in physics, chemistry and biology: the example of silica.- Application of the IMOMM (Integrated Molecular Orbital Molecular Mechanics) method for biopolymers.- Molecular orbital simulation of semiconductor and metal cluster.- Modeling and interpretation of STM images of carbon nanosystems.- Carbon nanotubes under internal pressure.- Recognition templates for biomaterials with engineered bioreactivity.- Layer-by-layer method for immobilization of protein molecules on biochip surface.- Enzyme electrodes with enzyme immobilised by sol-gel technique.- Template-directed lattices of nanostructures: preparation and physical properties.- Templates for metal nanowire self-assembly.- Layer-by-layer assembly of nanotubes and nanofilms from nanoparticle and polymer blocks for electronic applications.- Non-thermal plasma synthesis of nanocarbons.- A novel network structure of organometallic clusters in gas phase.- Nanotechnology of DNA/nano-Si and DNA/Carbon nanotubes/nano-Si chips.- Fundamental properties and applications of fullerene and carbon nanotube systems.- Fundamental properties of DNA: some lessons from studies on the molecular basis of drug binding.- DNA modifications by novel antitumor platinum drugs.- Studies on protein electron carrier complexes: adrenodoxin reductase-adrenodoxin complex in steroid biosynthesis.- Interaction of nucleic acids and lipids from tumour cells with anticancer drugs: an SEIRA spectroscopy data.- Aggregation of fullerenes in pyridine/water solutions.- Infrared spectrum of fullerene C60 aggregates in water solution.- Electrical and magnetic properties of undoped fullerene polymers.- Direct transition in the porous nanosilicon measured by electroreflectance.- Scanning probe microscopy of biomacromolecules: nucleicacids, proteins and their complexes.- Application of atomic force microscopy in protein and DNA biochips development.- Peculiarities of Th. Terrestris spores surface ultrastructure investigated by AFM.- Relaxation of nanostructured molecular materials under the influence of solvent vapors.- Biospecific interactions on the optical transducer surface - the base of infection diagnostics.- Thin film biotermosensors.- Porous silicon as transducer for immune sensors: from theory to practices.- A porous silicon microcavity as an optical and electrical multiparametric chemical sensor.- Composites silicon-based photonic crystals as light emission and sensor elements.- Optical transmission of macroporous silicon.- Magnetoresistive sensors and memory.- The electron spin in nanoelectronics.- List of Participants.

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