Semiconductor Clusters, Nanocrystals, and Quantum Dots

Кластерные образования полупроводников, нанокристаллы и квантовые точки
A. Paul Alivisatos
1996-02-16

nanocrystalsquantum dotssemiconductor clusterssize-dependent electrical propertiessize-dependent optical properties
Current research into semiconductor clusters is focused on the properties of quantum dots—fragments of semiconductor consisting of hundreds to many thousands of atoms—with the bulk bonding geometry and with surface states eliminated by enclosure in a material that has a larger band gap. Quantum dots exhibit strongly size-dependent optical and electrical properties. The ability to join the dots into complex assemblies creates many opportunities for scientific discovery.
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Current research on semiconductor clusters focuses on understanding and exploiting the properties of quantum dots.
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Joining quantum dots into complex assemblies enables many new opportunities for scientific discovery.
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Quantum dots are semiconductor fragments of hundreds to many thousands of atoms retaining bulk bonding geometry with surface states eliminated by encapsulation in a larger band-gap material.
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Quantum dots exhibit strongly size-dependent optical and electrical properties.

Semiconductor quantum dots (nanocrystals/clusters consisting of hundreds to thousands of atoms)

Size-dependent optical and electrical properties of semiconductor quantum dots and their behavior when joined into complex assemblies

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1996-02-16
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A. Paul Alivisatos
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