Size and Shape Effects on Semiconductor Nanoparticles

Publication date

2024-12-11

Authors

Koole, Rolf
Groeneveld, EstherISNI 0000000394087663
Vanmaekelbergh, DanielISNI 0000000394482321
Meijerink, AndriesISNI 000000039216731X
De Mello Donega, CelsoISNI 0000000390738326

Editors

De Mello Donega, Celso

Advisors

Supervisors

Document Type

Part of book
Open Access logo

License

taverne

Abstract

This chapter addresses the fundamental concepts needed to understand the impact of size reduction on the electronic structure and optoelectronic properties of semiconductor nanostructures, with emphasis on quantum confinement effects. This effect is explained by two different approaches: the ``top-down'' and the ``bottom-up''. The impact of dimensionality and shape on quantum confinement is also discussed. Subsequently, a brief description of the optical properties of semiconductor nanocrystals is presented. This is followed by a discussion of the essential characteristics of nanocrystals consisting of two (or more) different semiconductors joined together by heterointerfaces (i.e., heteronanocrystals). Moreover, the essential differences between the impact of size reduction on semiconductors in comparison to metals and insulators is discussed.

Keywords

Taverne

Citation

Koole, R, Groeneveld, E, Vanmaekelbergh, D, Meijerink, A & de Mello Donega, C 2024, Size and Shape Effects on Semiconductor Nanoparticles. in C De Mello Donega (ed.), Nanoparticles: Workhorses of Nanoscience. Springer, Cham, pp. 19-63. https://doi.org/10.1007/978-3-031-71460-3_2