Advanced Chemistry Of Monolayers At Interfaces: Trends In Methodology And Technology

Other | April 1, 2007

byImae, Toyoko, Toyoko Imae

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Advanced Chemistry of Monolayers at Interfacesdescribes the advanced chemistry of monolayers at interfaces. Focusing on the recent trends of methodology and technology, which are indispensable in monolayer science. They are applied to monolayers of surfactants, amphiphiles, polymers, dendrimers, enzymes, and proteins, which serve many uses.
Introduces the methodologies of scanning probe microscopy, surface force instrumentation, surface spectroscopy, surface plasmon optics, reflectometry, and near-field scanning optical microscopy. Modern interface reaction method, lithographic technology and different types of monolayers like adsorption, Langmuir and Langmuir-Blodgett monolayers at air/liquid, liquid/liquid, liquid/solid and air/solid interfaces, are all covered.

* Introducing novel methodologies and technologies
* Covering the different types of monolayers
* Discusses all currently available instrumental techniques for studying all types of monolayer

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Advanced Chemistry of Monolayers at Interfacesdescribes the advanced chemistry of monolayers at interfaces. Focusing on the recent trends of methodology and technology, which are indispensable in monolayer science. They are applied to monolayers of surfactants, amphiphiles, polymers, dendrimers, enzymes, and proteins, which serve many ...

Professor Toyoko Imae was born in Japan. She joined the National Taiwan University of Science and Technology, Taiwan, as honorary chair professor in April 2009, immediately after retiring from Keio University, Japan. She is also a professor emeritus of Nagoya University, Japan, since 2006, a visiting professor of Tokyo University of Sc...

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Format:OtherDimensions:378 pages, 1 × 1 × 1 inPublished:April 1, 2007Publisher:Academic PressLanguage:English

The following ISBNs are associated with this title:

ISBN - 10:0080475051

ISBN - 13:9780080475059

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Table of Contents

Chapter 1: Scanning Tunneling Microscopy for Self-Assembled Monolayers (P. Brodard, H. Fukumura).
Chapter 2: Monolayer Properties Probed by Surface Forces Measurements (A. Dendinaite).
Chapter 3: Surface Plasmon Optics for the Characterization of Biofunctional Architectures
(Fang Yuet al.).
Chapter 4: Probing Surfactant Adsorption at the Solid-Solutin Interface by Neutron Reflectometry
(J. Penfold, R.K. Thomas).
Chapter 5: Near-Field Scanning Optical Microscopy of Lipid Membranes (B.N. Flanders, R.C. Dunn).
Chapter 6: Micro/Nano Lithography using Self-Assembled Monolayers (SAMs)(O. Takai, K. Hayashi).
Chapter 7: Highly Fluorinated Lnagmuir, Langmuir-Blodgett and Gibbs Monolayers (M. Pierre Krafft).
Chapter 8: Structure and Physicochemical Properties of Polyalkylsiloxane Monolayers Prepared onto the Solid Substrate (T. Koga, A. Takahara).
Chapter 9: Hono- and Hybrid-Monolayers of Dendritic Polymers (Toyoko Imaeet al.).
Chapter 10: Infrared Reflection Absorption Spectroscopy of Monolayers at the Air-Water Interface (Jiayin Zheng, R.M. Leblanc).
Chapter 11: Measurement of Complex Formation and Agfregation at the Liquid-Liquid interface (Hitoshi Watarai).
Chapter 12: Monolayers on air/Solid Interfacwes - Vibrational Spectroscopy and Atomic Force Microscopy Studies (Yukihiro Ozakiet al.).