Autor: Tim H. Richardson
Wydawca: Wiley
Dostępność: 3-6 tygodni
Cena: 2 011,80 zł
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ISBN13: |
9780471987246 |
ISBN10: |
0471987247 |
Autor: |
Tim H. Richardson |
Oprawa: |
Hardback |
Rok Wydania: |
2000-01-17 |
Ilość stron: |
414 |
Wymiary: |
235x164 |
Tematy: |
PN |
Functional Organic and Polymeric Materials Molecular Functionality – Macroscopic Reality Edited by Tim H. Richardson Department of Physics and Astronomy, University of Sheffield, UK Describing exciting new developments in the field of organic molecular materials which have transformed the use of materials in the modern world in the last 20 years or so, the focal point of Functional Organic and Polymeric Materials is the concept of ′molecular functionality – macroscopic reality′. That is, the close relationships between the properties of isolated,discrete molecules and those of assembled arrays of molecules in thin films or crystals. Organic chemistry provides materials researchers with the wonderful opportunity to design bulk materials whose properties at the macroscopic level reflect closely the modelled or actual behaviour of individual molecules or small arrays of molecules. The iterative ′design–test–design′ approach has led in recent years to major advances in such fields as liquid crystals, electroluminesent displays, sensors and organic conductors, to name but a few. Indeed, it is extremely difficult in this new millenium to escape the myriad applications of organic and polymeric materials: engineering plastics are everywhere, electronic displays grace almost every consumer electronic device, organic–based sensors are widespread, and our world is marvellously colourful, thanks mostly to organic dyes, paints and inks. The book is aimed at molecular materials researchers who wish to broaden their knowledge of the discipline and those about to enter the field. Indeed it is hoped that the latter group of scientists sense some of the excitement and fascination concerned with organic materials which is felt by the authors.
Spis treści:
Molecular Functionality–Macroscopic Reality (T. Richardson).
Organic Thin–Film Deposition Techniques (M. Petty).
Liquid Crystals as Functi
onal Molecular Materials (D. Dunmur & L. Farrand).
Thermotropic Side–Chain Liquid Crystalline Polymers (D. Lacey).
Langmuir Monolayers (I. Peterson).
The Formation of Organized Molecular Assemblies via Spontaneous Adsorption: Monolayers to Multilayers (S. Evans & L. Williams).
Langmuir–Blodgett Films: From Deposition to Application (T. Richardson).
Conduction in Conjugated Molecular Materials (A. Campbell).
Conductivity and Structural Organization of Macromolecular Polyether Alkali Metal Salt Complexes (P. Wright & Y. Zheng).
Organic Photochromism: Spiro Compounds as Functional Molecules (M. Srinivasan).
Organic Second–Order Non–Linear Optical Materials (P. Skabara).
Third–Order Effects and Applications (F. Kajzar & J. Nunzi).
Organic Electroluminescence (A. Hudson & M. Weaver).
Index.
Nota biograficzna:
Tim H. Richardson, Department of Physics and Astronomy, University of Sheffield, UK
Okładka tylna:
Functional Organic and Polymeric Materials Molecular Functionality – Macroscopic Reality Edited by Tim H. Richardson Department of Physics and Astronomy, University of Sheffield, UK Describing exciting new developments in the field of organic molecular materials which have transformed the use of materials in the modern world in the last 20 years or so, the focal point of Functional Organic and Polymeric Materials is the concept of ′molecular functionality – macroscopic reality′. That is, the close relationships between the properties of isolated,discrete molecules and those of assembled arrays of molecules in thin films or crystals. Organic chemistry provides materials researchers with the wonderful opportunity to design bulk materials whose properties at the macroscopic level reflect closely the modelled or actual behaviour of individual molecules or small arrays of molecules. The iterative ′design–test–de
sign′ approach has led in recent years to major advances in such fields as liquid crystals, electroluminesent displays, sensors and organic conductors, to name but a few. Indeed, it is extremely difficult in this new millenium to escape the myriad applications of organic and polymeric materials: engineering plastics are everywhere, electronic displays grace almost every consumer electronic device, organic–based sensors are widespread, and our world is marvellously colourful, thanks mostly to organic dyes, paints and inks. The book is aimed at molecular materials researchers who wish to broaden their knowledge of the discipline and those about to enter the field. Indeed it is hoped that the latter group of scientists sense some of the excitement and fascination concerned with organic materials which is felt by the authors.
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