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Written by experts in the field, this book describes advanced techniques for the chemical synthesis of functional organic nanoparticles and proposes new characterization and manipulation methods for single nanoparticles. Theoretical and experimental studies of the physical and chemical properties of organic particles, semiconductor particles and liquid droplets are reported. The text gives not only scientific details but also discusses the general and historical background, applications, and future perspectives. A clear interpretation of technical terms and concepts is included where necessary. The material for the book originates from the research activities of the collaboration project "Laser Chemistry of Single Organic Nanometer Particles" supported by the Ministry of Education, Science Sports and Culture of Japan. It is written primarily for graduate students, researchers and engineers.
Experts describe advanced techniques for the chemical synthesis of functional organic nanoparticles and propose new methods for the characterization and manipulation of single nanoparticles. Theoretical and experimental studies of the physical and chemical properties of organic particles, semiconductor particles and liquid droplets are reported. The text gives not only scientific details but also general and historical background, applications, and future perspectives. Lucid explanations of technical terms and concepts are included where necessary.
This third volume in the series represents the Proceedings of the
3rd International Nanophotonics Symposium, July 6-8, 2006,
Icho-Kaikan, Osaka University, Osaka, Japan. Over a two-day
symposium, distinguished scientists from around the world convened
to discuss the latest progress in this field and the conclusions
have been summarised in Nano Biophotonics: Science and Technology.
The contents of this book have been compiled by invited lecturers,
research members of the relevant projects/program, and some of
general participants. The book has 27 chapters which are classified
into 4 parts; nano bio-spectroscopy, nano bio-dynamics, nano
bio-processing, and nano bio-devices.
This second volume in the Handai Nanophotonics book series covers
the area of Nanoplasmonics, a recent hot topic in the field of
nanophotonics, impacting a diverse range of research disciplines
from information technology and nanotechnology to the bio- and
medical sciences. The interaction between photons and metal
nanostructures leads to interesting and extraordinary scientific
phenomena and produces new functions for nano materials and
devices. Newly discovered physical phenomena include local mode of
surface plasmon polariton excited in nanoparticles, hot spots on
nano-rods and nano-cones, long range mode of surface plasmons
excited on thin metal films, and dispersion relationship bandgaps
of surface plasmons in periodic metal structures. These have been
applied to, for example, single molecule detection and
nano-imaging/spectroscopy, photon accumulation for lasing
applications, optical nano-waveguides and nano-circuits.
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