Описание: This high class book reflects a decade of intense research, culminating in excellent successes over the last few years. The contributions from both academia as well as the industry leaders combine the fundamentals and latest research results with application know how and examples of functioning displays. As a result, all the four important aspects of OLEDs are covered: syntheses of the organic materials; physical theory of electroluminescence and device efficiency; device conception and construction; and characterization of both materials and devices. The whole is naturally rounded off with a look at what the future holds in store. The editor, Klaus Muellen, is director of the highly prestigious MPI for polymer research in Mainz, Germany, while the authors include Nobel Laureate Alan Heeger, one of the most notable founders of the field, Richard Friend, as well as Ching Tang, Eastman Kodak's number one OLED researcher, known throughout the entire community for his key publications.
Автор: Krupa Jean-Claude, Kulagin Nicolay A. Название: Physics of Laser Crystals ISBN: 140201676X ISBN-13(EAN): 9781402016769 Издательство: Springer Рейтинг: Цена: 7199 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: The book explores the boundaries of laser crystal physics as it is routinely developed. This exploration may sometimes appear exotic but it often reveals promising fields for the future. The emphasis is on the relation between crystallographic structure and properties, high energy solid state lasers, optical behaviour of thin films, radiation and lattice defects in changing the ion oxidation state, as well as new theoretical approaches to potential laser materials. Further topics are the more classical aspects of optical spectroscopy of the rare earth ions and technological aspects of laser radiation. Various luminescent and phosphorescent mechanisms arising in inorganic crystalline and non-crystalline materials are featured.
Описание: Nanocrystals and Their Mesoscopic Organization is an up-to-date monograph on an important aspect of nanoscience and technology. It opens with an elegant introduction including a brief historical account. Emphasis is then given to diverse synthetic methods, both chemical and physical, in addition to modern hybrid methods. The orientation shifts gradually to properties of nanocrystals that evolve with size; detailed discussions are to be found on mesoscalar assemblies in different dimensions, special cases of core-shell and magic nuclearity nanocrystals. The authors also address applications of nanocrystals, carefully separating out potential applications and those that have already emerged, and cite around 900 references from the literature, most from the last decade. Tables providing information at a glance and schematic diagrams at relevant places, make the monograph appealing to read. Occasionally, the reader is reminded of the contributions of celebrated past masters such as Michael Faraday. In summary, the monograph serves as a general introduction as well as a handy reference for the entire community of researchers and practitioners.
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