Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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Institut Jean Lamour

in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (13/13 displayed)

  • 2023Structural, optical and electrical properties of single-phase wurtzite ZnMgAlO thin films deposited by ultrasonic spray pyrolysis3citations
  • 2023Development of a two-step process based on ultrasonic spray pyrolysis to optimize optical and electrical properties of ZnMgAlOcitations
  • 2021The role of growth temperature on the indium incorporation process for the MOCVD growth of InGaN/GaN heterostructures2citations
  • 2021The role of growth temperature on the indium incorporation process for the MOCVD growth of InGaN/GaN heterostructures2citations
  • 2021Ultrasonic spray pyrolysis deposition of cuprous oxide thin films: Microstructure and optical investigationscitations
  • 2021Effect of the precursor concentration on structural properties of ZnO thin films by ultrasonic spray pyrolysiscitations
  • 2021Elaboration of high-transparency ZnO thin films by ultrasonic spray pyrolysis with fast growth rate11citations
  • 2020Development of InGaN based solar cells: present status and challengescitations
  • 2020Development of InGaN based solar cells: present status and challengescitations
  • 2019Numerical investigations of the impact of low cost fabrication of Cu2O on solar cell performancescitations
  • 2019Numerical investigations of the impact of low cost fabrication of Cu2O on solar cell performancescitations
  • 2017Effect of Interface Properties on the Electrical Characteristics of InGaN-based Multijunction Solar Cellcitations
  • 2017Effect of Interface Properties on the Electrical Characteristics of InGaN-based Multijunction Solar Cellcitations

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Bose, Sourav
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Guyon, Julien
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Weiss, Laurent
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Fadel, Christy
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Ould Saad Hamady, Sidi
8 / 15 shared
Perroud, Olivier
2 / 6 shared
Pierson, Jean-François
3 / 43 shared
Boulet, Pascal
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Horwat, David
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Hamady, Sidi Ould Saad
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Berjali, Wafae El
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Che Seliman, Muhd Azi
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Ahmad, Mohd Anas
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Lim, Way Foong
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Ng, Sha Shiong
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Chevallier, Christyves
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Bin Yusof, Sauffi
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Md, Sahar
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Anas, Mohd Ahmad
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Guyon, J.
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Maloufi, Nabila
1 / 22 shared
Gries, Thomas
2 / 19 shared
Aubert, Thierry
4 / 13 shared
Kieffer, Queny
2 / 2 shared
Yusof, Sauffi Bin
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Aillerie, Michel
2 / 18 shared
Zaraket, Jean
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Abdoulwahab, Adaine
2 / 2 shared
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2023
2021
2020
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2017

Co-Authors (by relevance)

  • Bose, Sourav
  • Guyon, Julien
  • Weiss, Laurent
  • Fadel, Christy
  • Ould Saad Hamady, Sidi
  • Perroud, Olivier
  • Pierson, Jean-François
  • Boulet, Pascal
  • Horwat, David
  • Hamady, Sidi Ould Saad
  • Berjali, Wafae El
  • Che Seliman, Muhd Azi
  • Ahmad, Mohd Anas
  • Hassan, Zainuriah
  • Lim, Way Foong
  • Ng, Sha Shiong
  • Chevallier, Christyves
  • Bin Yusof, Sauffi
  • Md, Sahar
  • Anas, Mohd Ahmad
  • Guyon, J.
  • Maloufi, Nabila
  • Gries, Thomas
  • Aubert, Thierry
  • Kieffer, Queny
  • Yusof, Sauffi Bin
  • Aillerie, Michel
  • Zaraket, Jean
  • Abdoulwahab, Adaine
OrganizationsLocationPeople

document

Development of a two-step process based on ultrasonic spray pyrolysis to optimize optical and electrical properties of ZnMgAlO

  • Pierson, Jean-François
  • Boulet, Pascal
  • Horwat, David
  • Hamady, Sidi Ould Saad
  • Berjali, Wafae El
  • Fressengeas, Nicolas
Abstract

Metal-oxide materials based on Earth-abundant elements such as Zn, Mg and Al are crucial for next-generation materials of optoelectronic devices. For instance, the co-incorporation of various elements in ZnO gives the ability to tune the optical and electrical properties for the targeted application by using a simple and cost-effective technique such as Ultrasonic Spray Pyrolysis (USP) using only water-based precursors solution and sodalime glass substrates. In particular, for transparent conductive oxide (TCO) films and buffer layers in solar cells, it is necessary to modulate the conductivity, for TCO, and the bandgap for optimal band alignment for buffer films.Therefore, the incorporation of Al in ZnO can increase the conductivity while the incorporation of Mg can increase the bandgap. However, the co-incorporation of Al and Mg in ZnO is particularly challenging. First, Mg can decrease the conductivity and, second, the poor miscibility of Al precursor in water and the high-density of defects degrade the electrical and optical properties of thin films deposited by USP.We have therefore developed a two-step process to address these issues. The first step consists in the optimization of the precursors solution parameters, mainly the concentrations and the pH, and the USP deposition parameters: the substrate temperature, the flow rate, the nozzle speed and the shaping air pressure. The second step of this process is based on a post-annealing treatment for which we optimized the temperature, the duration and the controlled atmosphere. The structural, optical and electrical properties of the deposited ZnMgAlO thin films, with Mg compositions up to 10% and Al compositions up to 5%, have been investigated using high-resolution X-Ray diffraction, UV-Vis. transmission spectroscopy and Hall Effect measurements, in addition to profilometry and microscopy for the surfaces analysis. The XRD results show that with using this process, the films exhibit a controlled single wurtzite phase when increasing Mg composition with a high preferential orientation along c-axis. The surface morphology of the films is uniform and homogeneous with a low roughness and an increase in the crystallite size for the optimized set of deposition and annealing parameters using the developed process, which well correlated to the XRD results. The transparency of the films increases up to almost 90%. The bandgap increases as expected when the Al and Mg compositions were increased. The electrical measurements show an increase in carrier concentration upon Al incorporation. However, this increase of free carrier concentration is balanced by the incorporation of Mg, which induces an increase in the band gap and passivation mechanism of the shallow donors. The developed process can be used to tune the optoelectronic properties of Zn(Mg,Al)O thin films for application as window and buffer layers in the next generation all-oxide solar cells based on Earth-abundant elements.

Topics
  • Deposition
  • density
  • impedance spectroscopy
  • surface
  • phase
  • x-ray diffraction
  • thin film
  • glass
  • glass
  • defect
  • ultrasonic
  • annealing
  • microscopy
  • profilometry
  • spray pyrolysis