In the last two decades, semiconductor quantum dots small
colloidal nanoparticles have garnered a great deal of scientific
interest because of their unique properties. Among nanomaterials,
CdTe holds special technological importance as the only known II VI
material that can form conventional p n junctions. This makes CdTe
very important for the development of novel optoelectronic devices
such as light-emitting diodes, solar cells, and lasers. Moreover,
the demand for water-compatible light emitters and the most common
biological buffers give CdTe quantum dots fields a veritable edge
in biolabeling and bioimaging.
Cadmium Telluride Quantum Dots: Advances and Applications
focuses on CdTe quantum dots and addresses their synthesis,
assembly, optical properties, and applications in biology and
medicine. It makes for a very informative reading for anyone
involved in nanotechnology and will also benefit those scientists
who are looking for a comprehensive account on the current state of
quantum dot related research.
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