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- Taylor and Francis 2003; US$ 262.00
The vast technological potential of nanocrystalline materials, as well as current intense interest in the physics and chemistry of nanoscale phenomena, has led to explosive growth in research on semiconductor nanocrystals, also known as nanocrystal quantum dots, and metal nanoparticles. Semiconductor and Metal Nanocrystals addresses current topics... more...
- Springer-Verlag Berlin and Heidelberg GmbH & Co. KG 2007; US$ 219.00
Dealing with nanoscience and technology, this book focuses on diverse synthetic methods, both chemical and physical, in addition to modern hybrid methods. It discusses the properties of nanocrystals that evolve with size; and the mesoscalar assemblies in different dimensions, special cases of core-shell and magic nuclearity nanocrystals. more...
- Springer 2008; US$ 239.00
This is the first book to specifically focus on semiconductor nanocrystals and address their synthesis and assembly, optical properties and spectroscopy, and potential areas of nanocrystal-based devices including applications in biology and medicine. Nanoscience will transfer into new products and processes in the next two decades. One emerging area... more...
- Taylor and Francis 2010; US$ 179.95
A review of recent advancements in colloidal nanocrystals and quantum-confined nanostructures, Nanocrystal Quantum Dots is the second edition of Semiconductor and Metal Nanocrystals: Synthesis and Electronic and Optical Properties , originally published in 2003. This new title reflects the book?s altered focus on semiconductor nanocrystals. ... more...
- Springer 2010; US$ 209.00
Semiconductor nanostructures are ideal systems to tailor the physical properties via quantum effects, utilizing special growth techniques, self-assembling, wet chemical processes or lithographic tools in combination with tuneable external electric and magnetic fields. Such systems are called 'Quantum Materials'. The electronic, photonic, and... more...
- Taylor and Francis 2013; US$ 139.95
Melt quenching?the method of quenching from the liquid state?provides new opportunities for producing advanced materials with a unique combination of properties. In the process of melt quenching, attainment of critical cooling rates can produce specific structural states of the material. Nanocrystalline materials produced by melt quenching are classified... more...
Optically Active Charge Traps and Chemical Defects in Semiconducting Nanocrystals Probed by Pulsed Optically Detected Magnetic ResonanceSpringer 2013; US$ 129.00
Colloidal nanocrystals show much promise as an optoelectronics architecture due to facile control over electronic properties afforded by chemical control of size, shape, and heterostructure. Unfortunately, realizing practical devices has been forestalled by the ubiquitous presence of charge 'trap' states which compete with band-edge excitons... more...
- Elsevier Science 2006; US$ 150.00
Nanocrystalline materials with new functionalities show great promise for use in industrial applications - such as reinforcing fillers in novel polymer composites ? and substantial progress has been made in the past decade in their synthesis and processing. However, there are several issues that need to be addressed to develop these materials further.... more...