£78.84

Springer Non-Classical Crystallization of Thin Films and Nanostructures in CVD and PVD Processes: 60 (Springer Series in Surface Sciences, 60)

Price data updated today

View at Amazon

We'll watch every seller, every day. One email when your price arrives.

It has never been this cheap. We have no record of a lower price.

£79 today · cheaper than every other day in the last 3 months

NEW HERE?

Amazon shows you one price. We show you all of them.

Tosheroon watches Amazon prices so you don't have to. Every product on Amazon has a price history — we make it visible. Set the price you'd actually pay, and we'll email you the second it gets there. No app, no account, one email.

WHAT'S ON THIS PAGE

↓ Price chart
when this has been cheap or pricey
↓ Forecast
where the price is heading next
↓ Statistics
all-time high & low, recent range
↑ Price alert
name your number, we'll email you

Price History & Forecast

Grey patches = out of stock. Cheaper = lower on the chart. Hover for exact prices.

Last 91 days • 91 data points

Historical
Generating forecast...
£78.84 £74.90 £76.47 £78.05 £79.63 £81.21 £82.78 12 March 2026 03 April 2026 26 April 2026 18 May 2026 10 June 2026

Price Distribution

Price distribution over 91 days • 1 price levels

Days at Price
91 days 0 23 46 68 91 £79 Days at Price

Price Analysis

Most common price: £79 (91 days, 100.0%)

Price range: £79 - £79

Price levels: 1 different prices over 91 days

Description

This book provides a comprehensive introduction to a recently-developed approach to the growth mechanism of thin films and nanostructures via chemical vapour deposition (CVD). Starting from the underlying principles of the low pressure synthesis of diamond films, it is shown that diamond growth occurs not by individual atoms but by charged nanoparticles. This newly-discovered growth mechanism turns out to be general to many CVD and some physical vapor deposition (PVD) processes. This non-classical crystallization is a new paradigm of crystal growth, with active research taking place on growth in solution, especially in biomineralization processes.  Established understanding of the growth of thin films and nanostructures is based around processes involving individual atoms or molecules. According to the author’s research over the last two decades, however, the generation of charged gas phase nuclei is shown to be the rule rather than the exception in the CVD process, and charged gas phase nuclei are actively involved in the growth of films or nanostructures. This new understanding is called the theory of charged nanoparticles (TCN). This book describes how the non-classical crystallization mechanism can be applied to the growth of thin films and nanostructures in gas phase synthesis.   Based on the author’s graduate lecture course, the book is aimed at senior undergraduate and graduate students and researchers in the field of thin film and nanostructure growth or crystal growth. It is hoped that a new understanding of the growth processes of thin films and nanostructures will reduce trial-and-error in research and in industrial fabrication processes. From the Back Cover This book provides a comprehensive introduction to a recently-developed approach to the growth mechanism of thin films and nanostructures via chemical vapour deposition (CVD). Starting from the underlying principles of the low pressure synthesis of diamond films, it is shown that diamond growth occurs not by individual atoms but by charged nanoparticles. This newly-discovered growth mechanism turns out to be general to many CVD and some physical vapor deposition (PVD) processes. This non-classical crystallization is a new paradigm of crystal growth, with active research taking place on growth in solution, especially in biomineralization processes.  Established understanding of the growth of thin films and nanostructures is based around processes involving individual atoms or molecules. According to the author’s research over the last two decades, however, the generation of charged gas phase nuclei is shown to be the rule rather than the exception in the CVD process, and charged gas phase nuclei are actively involved in the growth of films or nanostructures. This new understanding is called the theory of charged nanoparticles (TCN). This book describes how the non-classical crystallization mechanism can be applied to the growth of thin films and nanostructures in gas phase synthesis.   Based on the author’s graduate lecture course, the book is aimed at senior undergraduate and graduate students and researchers in the field of thin film and nanostructure growth or crystal growth. It is hoped that a new understanding of the growth processes of thin films and nanostructures will reduce trial-and-error in research and in industrial fabrication processes. About the Author Prof. Hwang’s research interest is in the microstructure evolutions during material processing, especially, abnormal grain growth and thin film growth. The topics are approached both experimentally and theoretically, occasionally using computer simulation. The most focused work has been the theory of charged clusters, which is suggested as a new understanding of thin film growth. This topic is related to the growth mechanism of thin films and nanowires, nanotubes prepared by chemical vapor deposition. The size distribution of charged clusters or n

Product Specifications

Format
paperback
Domain
Amazon UK
Release Date
07 June 2018
Listed Since
11 June 2018

Barcode

No barcode data available

Similar Products You Might Like

Oxide Thin Films, Multilayers, and Nanocomposites
82% match

Oxide Thin Films, Multilayers, and Nanocomposites

Springer

£78.84 23 May 2026
Nonequilibrium Nondissipative Thermodynamics: With Application to Low-Pressure Diamond Synthesis: 68 (Springer Series in Chemical Physics, 68)
82% match

Nonequilibrium Nondissipative Thermodynamics: With Application to Low-Pressure Diamond Synthesis: 68 (Springer Series in Chemical Physics, 68)

Springer

£76.38 08 Jun 2026
Deposition of Diamond-Like Superhard Materials: 157 (Springer Tracts in Modern Physics, 157)
82% match

Deposition of Diamond-Like Superhard Materials: 157 (Springer Tracts in Modern Physics, 157)

Springer

£73.85 27 May 2026
Chemical Vapor Deposition Polymerization: The Growth and Properties of Parylene Thin Films
82% match

Chemical Vapor Deposition Polymerization: The Growth and Properties of Parylene Thin Films

Springer

£73.01 27 May 2026
Electrophoretic Deposition of Nanomaterials (Nanostructure Science and Technology)
81% match

Electrophoretic Deposition of Nanomaterials (Nanostructure Science and Technology)

Springer

£107.98 01 Jun 2026
Simple Chemical Methods for Thin Film Deposition: Synthesis and Applications
81% match

Simple Chemical Methods for Thin Film Deposition: Synthesis and Applications

Springer

£115.72 26 May 2026
Toward Functional Nanomaterials: 5 (Lecture Notes in Nanoscale Science and Technology, 5)
81% match

Toward Functional Nanomaterials: 5 (Lecture Notes in Nanoscale Science and Technology, 5)

Springer

£108.03 29 May 2026
Surface Modifications and Growth of Titanium Dioxide for Photo-Electrochemical Water Splitting (Springer Theses)
81% match

Surface Modifications and Growth of Titanium Dioxide for Photo-Electrochemical Water Splitting (Springer Theses)

Springer

£107.98 29 May 2026
Chemical Vapor Deposition: Thermal and Plasma Deposition of Electronic Materials
81% match

Chemical Vapor Deposition: Thermal and Plasma Deposition of Electronic Materials

Springer

£97.24 25 May 2026
Chemical Vapor Deposition (CVD): Methods and Technologies (Chemical Engineering Methods and Technology)
81% match

Chemical Vapor Deposition (CVD): Methods and Technologies (Chemical Engineering Methods and Technology)

£127.79 26 May 2026
Epitaxy: Physical Principles and Technical Implementation: 62 (Springer Series in Materials Science, 62)
81% match

Epitaxy: Physical Principles and Technical Implementation: 62 (Springer Series in Materials Science, 62)

Springer

£148.05 01 Jun 2026
Vapor Crystal Growth and Characterization: ZnSe and Related II–VI Compound Semiconductors
81% match

Vapor Crystal Growth and Characterization: ZnSe and Related II–VI Compound Semiconductors

Springer

£75.10 25 May 2026
Chemical Vapor Deposition Growth and Characterization of Two-Dimensional Hexagonal Boron Nitride (Springer Theses)
81% match

Chemical Vapor Deposition Growth and Characterization of Two-Dimensional Hexagonal Boron Nitride (Springer Theses)

Springer

£94.77 01 Jun 2026
Surface Properties of Layered Structures: 16 (Physics and Chemistry of Materials with Low-Dimensional Structures)
81% match

Surface Properties of Layered Structures: 16 (Physics and Chemistry of Materials with Low-Dimensional Structures)

Springer

£143.38 06 Jun 2026
81% match

Plasma Processing for Semiconductor Materials and Thin-Film Devices (Vacuum and Thin-Film Deposition Technologies)

Elsevier

£274.99 27 May 2026
Well-Organized Inorganic Nanowire Films: Assemblies and Functionalities (Springer Theses)
81% match

Well-Organized Inorganic Nanowire Films: Assemblies and Functionalities (Springer Theses)

Springer

£72.71 05 Jun 2026
In Situ Transmission Electron Microscopy Studies of Carbon Nanotube Nucleation Mechanism and Carbon Nanotube-Clamped Metal Atomic Chains (Springer Theses)
80% match

In Situ Transmission Electron Microscopy Studies of Carbon Nanotube Nucleation Mechanism and Carbon Nanotube-Clamped Metal Atomic Chains (Springer Theses)

Springer

£76.25 29 May 2026
Crystal Growth: Principles and Progress (Updates in Applied Physics and Electrical Technology)
80% match

Crystal Growth: Principles and Progress (Updates in Applied Physics and Electrical Technology)

Springer

£75.32 02 Jun 2026
Diamond and Related Nanostructures: 6 (Carbon Materials: Chemistry and Physics, 6)
80% match

Diamond and Related Nanostructures: 6 (Carbon Materials: Chemistry and Physics, 6)

Springer

£107.98 05 Jun 2026
Nanocrystalline Metals and Oxides: Selected Properties and Applications: 7 (Electronic Materials: Science & Technology, 7)
80% match

Nanocrystalline Metals and Oxides: Selected Properties and Applications: 7 (Electronic Materials: Science & Technology, 7)

Springer

£73.85 22 May 2026
Diamond Based Composites: and Related Materials: 38 (NATO Science Partnership Subseries: 3, 38)
80% match

Diamond Based Composites: and Related Materials: 38 (NATO Science Partnership Subseries: 3, 38)

Springer

£116.60 31 May 2026
Quantum Chemistry Approaches to Chemisorption and Heterogeneous Catalysis: 6 (Understanding Chemical Reactivity, 6)
80% match

Quantum Chemistry Approaches to Chemisorption and Heterogeneous Catalysis: 6 (Understanding Chemical Reactivity, 6)

Springer

£107.98 19 May 2026
Semiconductor Nanocrystals: From Basic Principles to Applications (Nanostructure Science and Technology)
80% match

Semiconductor Nanocrystals: From Basic Principles to Applications (Nanostructure Science and Technology)

Springer

£108.31 31 May 2026
Evolution of Thin Film Morphology: Modeling and Simulations: 108 (Springer Series in Materials Science, 108)
80% match

Evolution of Thin Film Morphology: Modeling and Simulations: 108 (Springer Series in Materials Science, 108)

Springer

£107.71 29 May 2026