Optical and Electronic Properties of Diamondoids

Optical and Electronic Properties of Diamondoids

Experiments on the size and shape dependence of the finite size effects in ideal nanodiamond crystals

Suedwestdeutscher Verlag fuer Hochschulschriften ( 06.06.2011 )

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Quantum confinement in low-dimensional semiconductor nanostructures enables materials with tuneable electronic and optical properties. This book discusses three-dimensionally confined structures in diamond, a material with remarkable physical attributes. Data for a series of size and shape-selected, hydrogen-passivated nanodiamonds (diamondoids) are presented. Diamondoids consist of face-fused cages that are perfectly sp³-hybridized and thus directly superimposable on the bulk diamond crystal lattice. The present gas phase experiments provide benchmark data as they were obtained under boundary conditions similar to those assumed in typical theoretical investigations. They show that characteristic optical properties for diamond nano-wire, -sheet, and -crystal evolve already in the sub-nm size regime. Most notably, a striking similarity in optical response between a tetrahedral diamondoid and the bulk material is found. Further, diamondoids have been found to luminesce in the UV, making them prospective candidates for optoelectronic applications. Besides their fundamental interest, the current findings disclose considerable technological potential of these new nanocarbon materials.

Buch Details:

ISBN-13:

978-3-8381-2631-9

ISBN-10:

3838126319

EAN:

9783838126319

Buchsprache:

English

By (author) :

Lasse Landt

Seitenanzahl:

200

Veröffentlicht am:

06.06.2011

Kategorie:

General Natural Sciences