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Pro-Oxides

Properties of metal oxides for electronic and optoelectronic devices

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EC-Contrib. €

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Partnership

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Project "Pro-Oxides" data sheet

The following table provides information about the project.

Coordinator
BAR ILAN UNIVERSITY 

Organization address
address: BAR ILAN UNIVERSITY CAMPUS
city: RAMAT GAN
postcode: 52900
website: www.biu.ac.il

contact info
title: n.a.
name: n.a.
surname: n.a.
function: n.a.
email: n.a.
telephone: n.a.
fax: n.a.

 Coordinator Country Israel [IL]
 Project website http://www.zabanlab.com
 Total cost 170˙509 €
 EC max contribution 170˙509 € (100%)
 Programme 1. H2020-EU.1.3.2. (Nurturing excellence by means of cross-border and cross-sector mobility)
 Code Call H2020-MSCA-IF-2014
 Funding Scheme MSCA-IF-EF-ST
 Starting year 2015
 Duration (year-month-day) from 2015-04-01   to  2017-03-31

 Partnership

Take a look of project's partnership.

# participants  country  role  EC contrib. [€] 
1    BAR ILAN UNIVERSITY IL (RAMAT GAN) coordinator 170˙509.00

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 Project objective

Metal oxides are a versatile group of semiconductors that are employed in a broad range of applications including micro/nano-electronics, photocatalysis and thin-film devices. The strength of metal oxides for these contemporary applications resides in the diversity of the electronic and optical properties which determine energy-level alignment and consequently dictate device performance. Furthermore, metal oxides exhibit a sensitivity to stoichiometry, unique among semiconductors, that permits fine-tuning of these properties. This feature offers an elegant yet simple method for additional performance optimisation. However, it requires a deep understanding of the relationship between the stoichiometry of metal oxide compounds and the aforementioned properties that is currently lacking. In this proposal we will fabricate metal oxides with a spatial gradient in chemical composition and characterise the optical, electrical and chemical properties with high-throughput scanner, at an unparalleled rate. From these results we will establish the correlation between these properties and the exact chemical composition for a multitude of compounds. In addition, a model to describe the alignment of energy-levels across metal oxide/metal oxides interfaces will be developed. The present proposal will address the disparity of reported information for metal oxide properties arising from poor chemical analysis and greatly advance the engineering capabilities of thin-film technologies. The research described here is designed to integrate seamlessly and strongly support the All Metal-Oxide Photovoltaic project under the Seven Framework Programme.

 Publications

year authors and title journal last update
List of publications.
2016 Hannah-Noa Barad, Adam Ginsburg, Hagai Cohen, Kevin J. Rietwyk, David A. Keller, Shay Tirosh, Yaniv Bouhadana, Assaf Y. Anderson, Arie Zaban
Hot Electron-Based Solid State TiO 2 |Ag Solar Cells
published pages: 1500789, ISSN: 2196-7350, DOI: 10.1002/admi.201500789
Advanced Materials Interfaces 3/7 2019-07-24
2017 Kevin J. Rietwyk, David A. Keller, Koushik Majhi, Adam Ginsburg, Maayan Priel, Hannah-Noa Barad, Assaf Y. Anderson, Arie Zaban
High-Throughput Electrical Potential Depth-Profiling in Air
published pages: 1700136, ISSN: 2196-7350, DOI: 10.1002/admi.201700136
Advanced Materials Interfaces 2019-07-24
2016 Koushik Majhi, Luca Bertoluzzi, Kevin James Rietwyk, Adam Ginsburg, David A. Keller, Pilar Lopez-Varo, Assaf Y. Anderson, Juan Bisquert, Arie Zaban
Combinatorial Investigation and Modelling of MoO 3 Hole-Selective Contact in TiO 2 |Co 3 O 4 |MoO 3 All-Oxide Solar Cells
published pages: 1500405, ISSN: 2196-7350, DOI: 10.1002/admi.201500405
Advanced Materials Interfaces 3/1 2019-07-24

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