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Photoluminescence of ZnO Nanowires: A Review

Nanomaterials · 2020 · Vol. 10(5) · pp. 857–857
Andrés Galdámez‐MartínezG. SantanaFrank GüellPaulina R. Martínez‐AlanisAteet Dutt

Abstract

One-dimensional ZnO nanostructures (nanowires/nanorods) are attractive materials for applications such as gas sensors, biosensors, solar cells, and photocatalysts. This is due to the relatively easy production process of these kinds of nanostructures with excellent charge carrier transport properties and high crystalline quality. In this work, we review the photoluminescence (PL) properties of single and collective ZnO nanowires and nanorods. As different growth techniques were obtained for the presented samples, a brief review of two popular growth methods, vapor-liquid-solid (VLS) and hydrothermal, is shown. Then, a discussion of the emission process and characteristics of the near-band edge excitonic emission (NBE) and deep-level emission (DLE) bands is presented. Their respective contribution to the total emission of the nanostructure is discussed using the spatial information distribution obtained by scanning transmission electron microscopy-cathodoluminescence (STEM-CL) measurements. Also, the influence of surface effects on the photoluminescence of ZnO nanowires, as well as the temperature dependence, is briefly discussed for both ultraviolet and visible emissions. Finally, we present a discussion of the size reduction effects of the two main photoluminescent bands of ZnO. For a wide emission (near ultra-violet and visible), which has sometimes been attributed to different origins, we present a summary of the different native point defects or trap centers in ZnO as a cause for the different deep-level emission bands.

ZnO doping and propertiesGas Sensing Nanomaterials and SensorsGa2O3 and related materialsPhotoluminescenceNanowireMaterials scienceNanotechnologyOptoelectronics

Funding

  • Laserlab-Europe
  • Consejo Nacional de Ciencia y Tecnología
  • Horizon 2020 Framework Programme
  • Dirección General de Asuntos del Personal Académico, Universidad Nacional Autónoma de México
  • H2020 European Institute of Innovation and Technology
Citations
388
FWCI
19.47
field-weighted impact
References
180
Percentile
100%
vs. same field & year
Citations per year
References
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physica status solidi (b) · 2001 · 302 citations
Mechanisms behind green photoluminescence in ZnO phosphor powders
Journal of Applied Physics · 1996 · 3,646 citations
Defect emissions in ZnO nanostructures
Nanotechnology · 2007 · 694 citations
Optical Constants of ZnO
Japanese Journal of Applied Physics · 1997 · 478 citations
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