Liquid Crystalline Semiconductors : Materials, properties and applications
Book Details
Format
Hardback or Cased Book
Book Series
Springer Series in Materials Science
ISBN-10
9048128722
ISBN-13
9789048128723
Publisher
Springer
Imprint
Springer
Country of Manufacture
NL
Country of Publication
GB
Publication Date
Nov 23rd, 2012
Print length
274 Pages
Weight
536 grams
Dimensions
24.00 x 16.00 x 1.70 cms
Product Classification:
Condensed matter physics (liquid state & solid state physics)Condensed matter physics (liquid state and solid state physics)Mechanical engineeringMaterials scienceCircuits & componentsElectronics: circuits and componentsElectronic devices & materialsElectronic devices and materialsOther technologies & applied sciencesOther technologies and applied sciences
Ksh 16,200.00
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This is the first book ever written on this subject. It describes recent progress in the use of liquid crystals as active components in electronic and photonic organic devices such as organic light-emitting diodes, thin film transistors and photovoltaic cells.
This is an exciting stage in the development of organic electronics. It is no longer an area of purely academic interest as increasingly real applications are being developed, some of which are beginning to come on-stream. Areas that have already been commercially developed or which are under intensive development include organic light emitting diodes (for flat panel displays and solid state lighting), organic photovoltaic cells, organic thin film transistors (for smart tags and flat panel displays) and sensors. Within the family of organic electronic materials, liquid crystals are relative newcomers. The first electronically conducting liquid crystals were reported in 1988 but already a substantial literature has developed. The advantage of liquid crystalline semiconductors is that they have the easy processability of amorphous and polymeric semiconductors but they usually have higher charge carrier mobilities. Their mobilities do not reach the levels seen in crystalline organics but they circumvent all of the difficult issues of controlling crystal growth and morphology. Liquid crystals self-organise, they can be aligned by fields and surface forces and, because of their fluid nature, defects in liquid crystal structures readily self-heal. With these matters in mind this is an opportune moment to bring together a volume on the subject of ‘Liquid Crystalline Semiconductors’. The field is already too large to cover in a comprehensive manner so the aim has been to bring together contributions from leading researchers which cover the main areas of the chemistry (synthesis and structure/function relationships), physics (charge transport mechanisms and optical properties) and potential applications in photovoltaics, organic light emitting diodes (OLEDs) and organic field-effect transistors (OFETs). This book will provide a useful introduction to the field for those in both industry and academia and it is hoped that it will help to stimulate future developments.
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