Organized Organic Ultrathin Films
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Author | : Katsuhiko Ariga |
Publisher | : John Wiley & Sons |
Total Pages | : 329 |
Release | : 2012-09-24 |
Genre | : Technology & Engineering |
ISBN | : 3527654682 |
This handy reference is the first comprehensive book covering both fundamentals and recent developments in the field with an emphasis on nanotechnology. Written by a highly regarded author in the field, the book details state-of-the-art preparation, characterization and applications of thin films of organic molecules and biomaterials fabricated by wet processes and also highlights applications in nanotechnology The categories of films covered include monomolecular films (monolayers) both on a water surface and on a solid plate, Langmuir-Blodgett films (transferred multilayer films on a solid plate from a water surface), layer-by-layer films (adsorbed multilayer films on a solid support), and spontaneously assembled films in solution.
Author | : Materials Research Society of Japan |
Publisher | : |
Total Pages | : 66 |
Release | : 2003 |
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Author | : Abraham Ulman |
Publisher | : Academic Press |
Total Pages | : 468 |
Release | : 2013-10-22 |
Genre | : Science |
ISBN | : 0080926312 |
The development of oriented organic monomolecular layers by the Langmuir-Blodgett (LB) and self-assembly (SA) techniques has led researchers toward their goal of assembling individual molecules into highly ordered architectures. Thus the continually growing contribution of LB and SA systems to the chemistry and physics of thin organic films is widely recognized. Equally well-known is the difficulty in keeping up to date with the burgeoning multidisciplinary research in this area. Dr. Ulman provides a massive survey of the available literature. The book begins with a section on analytical tools to broaden the understanding of the structure and properties of monolayers and films. Following sections discuss LB films, the preparation and properties of SA monolayers and films, the modeling of LB and SA monolayers, and the application of LB and SA films.
Author | : K. Ikegami |
Publisher | : |
Total Pages | : 16 |
Release | : 1988 |
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Release | : 1988 |
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Release | : 1991 |
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Author | : Supratim Guha Ray |
Publisher | : |
Total Pages | : 67 |
Release | : 2005 |
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Author | : Zouheir Sekkat |
Publisher | : Elsevier |
Total Pages | : 582 |
Release | : 2002-12-07 |
Genre | : Technology & Engineering |
ISBN | : 0080479979 |
Wolfgang Knoll is a former Directory of Polymer research at the Max Planck Institute. He is extremely well know for his research in this area. Zouheir Sekkat was a Postdoctoral researcher at Max Planck working under Professor Knoll. With Knoll's involvement, we can be confident that the best people in this field will be contributing to the reference.
Author | : Abraham Ulman |
Publisher | : |
Total Pages | : |
Release | : 1991 |
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Author | : Karen K. Gleason |
Publisher | : John Wiley & Sons |
Total Pages | : 484 |
Release | : 2015-04-01 |
Genre | : Technology & Engineering |
ISBN | : 352769028X |
The method of CVD (chemical vapor deposition) is a versatile technique to fabricate high-quality thin films and structured surfaces in the nanometer regime from the vapor phase. Already widely used for the deposition of inorganic materials in the semiconductor industry, CVD has become the method of choice in many applications to process polymers as well. This highly scalable technique allows for synthesizing high-purity, defect-free films and for systematically tuning their chemical, mechanical and physical properties. In addition, vapor phase processing is critical for the deposition of insoluble materials including fluoropolymers, electrically conductive polymers, and highly crosslinked organic networks. Furthermore, CVD enables the coating of substrates which would otherwise dissolve or swell upon exposure to solvents. The scope of the book encompasses CVD polymerization processes which directly translate the chemical mechanisms of traditional polymer synthesis and organic synthesis in homogeneous liquids into heterogeneous processes for the modification of solid surfaces. The book is structured into four parts, complemented by an introductory overview of the diverse process strategies for CVD of polymeric materials. The first part on the fundamentals of CVD polymers is followed by a detailed coverage of the materials chemistry of CVD polymers, including the main synthesis mechanisms and the resultant classes of materials. The third part focuses on the applications of these materials such as membrane modification and device fabrication. The final part discusses the potential for scale-up and commercialization of CVD polymers.