Enhancing GaN Nanowires Performance Through Partial Coverage with Oxide Shells

Author:

Szymon Radoslaw1ORCID,Zielony Eunika1ORCID,Sobanska Marta2ORCID,Stachurski Tomasz3ORCID,Reszka Anna2ORCID,Wierzbicka Aleksandra2ORCID,Gieraltowska Sylwia2ORCID,Zytkiewicz Zbigniew R.2ORCID

Affiliation:

1. Department of Experimental Physics Wroclaw University of Science and Technology Wybrzeze Wyspianskiego 27 Wroclaw 50–370 Poland

2. Institute of Physics Polish Academy of Sciences Al. Lotnikow 32/46 Warsaw 02–668 Poland

3. Department of Statistics Econometrics and Mathematics University of Economics in Katowice 1 Maja 50 Katowice 40–287 Poland

Abstract

AbstractCore‐shell gallium nitride (GaN)‐based nanowires offer noteworthy opportunities for innovation in high‐frequency opto‐ and microelectronics. This work delves deeply into the physical properties of crystalline GaN nanowires with aluminum and hafnium oxide shells. Particular attention is paid to partial coverage of nanowires, resulting with exceptional properties. First, the crystal lattice relaxation is observed by X‐ray diffraction, photoluminescence, and Raman spectroscopy measurements. A high potential of partial coverage for optoelectronic applications is revealed with photo‐ and cathodoluminescence spectra along with an exploration of their temperature dependency. Next, the study focuses on understanding the mechanisms behind the observed enhancement of the luminescence efficiency. It is confirmed that nanowires are effectively protected against photoadsorption using partial coatings. This research advances the frontiers of nanotechnology, investigating the benefits of partial coverage, and shedding light on its complex interaction with cores.

Funder

Ministerstwo Edukacji i Nauki

Narodowe Centrum Nauki

Publisher

Wiley

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