Laser Annealing of Transparent ZnO Thin Films: A Route to Improve Electrical Conductivity and Oxygen Sensing Capabilities

Fuente: arXiv
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Hauptverfasser: Frechilla, A., Frechilla, J., Angurel, L. A., Toldra-Reig, F., Martinez, E., de La Fuente, G. F., Munoz-Rojas, D.
Format: Preprint
Veröffentlicht: 2025
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author Frechilla, A.
Frechilla, J.
Angurel, L. A.
Toldra-Reig, F.
Martinez, E.
de La Fuente, G. F.
Munoz-Rojas, D.
author_facet Frechilla, A.
Frechilla, J.
Angurel, L. A.
Toldra-Reig, F.
Martinez, E.
de La Fuente, G. F.
Munoz-Rojas, D.
contents The chemical deposition of high-performance Zinc Oxide (ZnO) thin films is challenging, thus significant efforts have been devoted during the past decades to develop cost-effective, scalable fabrication methods in gas phase. This work demonstrates how ultra-short-pulse Laser Beam Scanning (LBS) can be used to modulate electrical conductivity in ZnO thin films deposited on soda-lime glass by Spatial Atomic Layer Deposition (SALD), a high-throughput, low-temperature deposition technique suitable for large-area applications. By systematically optimizing laser parameters, including pulse energy and hatching distance, significant improvements in the electrical performance of 90 nm-thick ZnO films were achieved. The optimization of the laser annealing parameters, 0.21 uJ/pulse energy and a 1 micron hatching distance, yielded ZnO films with an electrical resistivity of (9 +- 2) 10-2 Ohm cm, 3 orders of magnitude lower than as deposited films. This result suggests that laser post-deposition-processing can play an important role in tailoring the properties of ZnO thin films. Excessive laser intensity can compromise structural integrity of the films, however, degrading their electrical transport properties. Notably, the electrical resistance of laser-annealed ZnO films exhibited high sensitivity to oxygen concentration in the surrounding atmosphere, suggesting exciting prospects for application in devices based on transparent oxygen sensors. This study thus positions ultra-short pulsed laser annealing as a versatile post-deposition method for fine-tuning the properties of ZnO thin films, enabling their use in advanced optoelectronic and gas-sensing technologies, particularly on temperature-sensitive substrates.
format Preprint
id arxiv_https___arxiv_org_abs_2504_01513
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Laser Annealing of Transparent ZnO Thin Films: A Route to Improve Electrical Conductivity and Oxygen Sensing Capabilities
Frechilla, A.
Frechilla, J.
Angurel, L. A.
Toldra-Reig, F.
Martinez, E.
de La Fuente, G. F.
Munoz-Rojas, D.
Applied Physics
Materials Science
The chemical deposition of high-performance Zinc Oxide (ZnO) thin films is challenging, thus significant efforts have been devoted during the past decades to develop cost-effective, scalable fabrication methods in gas phase. This work demonstrates how ultra-short-pulse Laser Beam Scanning (LBS) can be used to modulate electrical conductivity in ZnO thin films deposited on soda-lime glass by Spatial Atomic Layer Deposition (SALD), a high-throughput, low-temperature deposition technique suitable for large-area applications. By systematically optimizing laser parameters, including pulse energy and hatching distance, significant improvements in the electrical performance of 90 nm-thick ZnO films were achieved. The optimization of the laser annealing parameters, 0.21 uJ/pulse energy and a 1 micron hatching distance, yielded ZnO films with an electrical resistivity of (9 +- 2) 10-2 Ohm cm, 3 orders of magnitude lower than as deposited films. This result suggests that laser post-deposition-processing can play an important role in tailoring the properties of ZnO thin films. Excessive laser intensity can compromise structural integrity of the films, however, degrading their electrical transport properties. Notably, the electrical resistance of laser-annealed ZnO films exhibited high sensitivity to oxygen concentration in the surrounding atmosphere, suggesting exciting prospects for application in devices based on transparent oxygen sensors. This study thus positions ultra-short pulsed laser annealing as a versatile post-deposition method for fine-tuning the properties of ZnO thin films, enabling their use in advanced optoelectronic and gas-sensing technologies, particularly on temperature-sensitive substrates.
title Laser Annealing of Transparent ZnO Thin Films: A Route to Improve Electrical Conductivity and Oxygen Sensing Capabilities
topic Applied Physics
Materials Science
url https://arxiv.org/abs/2504.01513