Kevin J. Rietwyk
Bar-Ilan University
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Publication
Featured researches published by Kevin J. Rietwyk.
ACS Combinatorial Science | 2017
Elana Borvick; Assaf Y. Anderson; Hannah-Noa Barad; Maayan Priel; David A. Keller; Adam Ginsburg; Kevin J. Rietwyk; Simcha Meir; Arie Zaban
Data mining tools have been known to be useful for analyzing large material data sets generated by high-throughput methods. Typically, the descriptors used for the analysis are structural descriptors, which can be difficult to obtain and to tune according to the results of the analysis. In this Research Article, we show the use of deposition process parameters as descriptors for analysis of a photovoltaics data set. To create a data set, solar cell libraries were fabricated using iron oxide as the absorber layer deposited using different deposition parameters, and the photovoltaic performance was measured. The data was then used to build models using genetic programing and stepwise regression. These models showed which deposition parameters should be used to get photovoltaic cells with higher performance. The iron oxide library fabricated based on the model predictions showed a higher performance than any of the previous libraries, which demonstrates that deposition process parameters can be used to model photovoltaic performance and lead to higher performing cells. This is a promising technique toward using data mining tools for discovery and fabrication of high performance photovoltaic materials.
ACS Combinatorial Science | 2018
Hannah-Noa Barad; David A. Keller; Kevin J. Rietwyk; Adam Ginsburg; Shay Tirosh; Simcha Meir; Assaf Y. Anderson; Arie Zaban
In this work, we describe the formation of a reduced bandgap CeNiO3 phase, which, to our knowledge, has not been previously reported, and we show how it is utilized as an absorber layer in a photovoltaic cell. The CeNiO3 phase is prepared by a combinatorial materials science approach, where a library containing a continuous compositional spread of Ce xNi1- xO y is formed by pulsed laser deposition (PLD); a method that has not been used in the past to form Ce-Ni-O materials. The library displays a reduced bandgap throughout, calculated to be 1.48-1.77 eV, compared to the starting materials, CeO2 and NiO, which each have a bandgap of ∼3.3 eV. The materials library is further analyzed by X-ray diffraction to determine a new crystalline phase. By searching and comparing to the Materials Project database, the reduced bandgap CeNiO3 phase is realized. The CeNiO3 reduced bandgap phase is implemented as the absorber layer in a solar cell and photovoltages up to 550 mV are achieved. The solar cells are also measured by surface photovoltage spectroscopy, which shows that the source of the photovoltaic activity is the reduced bandgap CeNiO3 phase, making it a viable material for solar energy.
Advanced Materials Interfaces | 2016
Koushik Majhi; Luca Bertoluzzi; Kevin J. Rietwyk; Adam Ginsburg; David A. Keller; Pilar Lopez-Varo; Assaf Y. Anderson; Juan Bisquert; Arie Zaban
Thin Solid Films | 2016
Adam Ginsburg; David A. Keller; Hannah-Noa Barad; Kevin J. Rietwyk; Yaniv Bouhadana; Assaf Y. Anderson; Arie Zaban
Energy technology | 2016
Zhi Yan; David A. Keller; Kevin J. Rietwyk; Hannah-Noa Barad; Koushik Majhi; Adam Ginsburg; Assaf Y. Anderson; Arie Zaban
Advanced Materials Interfaces | 2016
Hannah-Noa Barad; Adam Ginsburg; Hagai Cohen; Kevin J. Rietwyk; David A. Keller; Shay Tirosh; Yaniv Bouhadana; Assaf Y. Anderson; Arie Zaban
ACS energy letters | 2017
Laxman Gouda; Kevin J. Rietwyk; Jiangang Hu; Adi Kama; Adam Ginsburg; Maayan Priel; David A. Keller; Shay Tirosh; Simcha Meir; Ronen Gottesman; Arie Zaban
Materials Chemistry and Physics | 2018
David A. Keller; Hannah-Noa Barad; Kevin J. Rietwyk; Adam Ginsburg; Elana Borvick; Maayan Priel; Assaf Y. Anderson; Simcha Meir; Arie Zaban
Advanced Materials Interfaces | 2017
Kevin J. Rietwyk; David A. Keller; Koushik Majhi; Adam Ginsburg; Maayan Priel; Hannah-Noa Barad; Assaf Y. Anderson; Arie Zaban
Journal of Physical Chemistry C | 2016
Koushik Majhi; Vijay Singh; Kevin J. Rietwyk; David A. Keller; Hannah Noa Barad; Adam Ginsburg; Zhi Yan; Assaf Y. Anderson; Arie Zaban; Dan Thomas Major