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This book provides a guide to modern developments in photographic science and their possible applications to new and exciting areas, including nano-technology, solar cells, and organic semiconductors. Part I of this book describes the state of the art in photographic science, including recent developments. It describes the structure, formation and properties of silver halide (AgX) nano-particles and grains, the formation and performance of Ag clusters and nano-particles, and dye sensitization with J-aggregated dye layers. Part II describes the applications to new areas now in development, including digital photography, new nuclear-track emulsions, silver nano-particles for surface plasmon resonance, dye-sensitized solar cells, and organic semiconductors in relation to J-aggregated dye layers. Creating a record of accumulated knowledge in photographic science, this book also provides for these new areas a guide to the knowledge and ideas that arise from synergetic interactions between photographic science and technology which have pioneered unique applications of nano-particles, J-aggregates, and dye sensitization.
This book investigates the intersection of traditional photographic science and emerging technological fields, specifically exploring how principles of silver halide chemistry can be applied to modern nanotechnology and organic electronics. Tadaaki Tani, a recognized expert in the field, synthesizes decades of research to bridge the gap between classical photographic science and contemporary material applications. The text provides a structured framework for understanding how the properties of nanoparticles and J-aggregates facilitate advancements in solar energy and semiconductor development.
What You Will Find
Scope Limits
Experts view this work as a specialized technical reference that successfully connects legacy photographic chemistry with modern material science. Readers frequently note the high level of academic density, making it a resource primarily intended for researchers and advanced students in chemistry and physics.
Page Count:
256
Publication Date:
2011-01-01
Publisher:
OUP Oxford
ISBN-10:
0191004839
ISBN-13:
9780191004834
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