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Research interests

Professor of Physics, CEITE, with teaching roles in mathematics to undergraduate engineering students. His research interests are in condensed-matter theory, covering areas of excitonic processes in crystalline and amorphous semiconductors, nanostructures, and solar cells, both inorganic and organic, Organic light emitting diodes (OLEDs) and inorganic scintillators. Jai was honoured in 2018 by getting awarded Member (AM) in the general division of the Order of Australia in the Queen’s Birthday Honours. Jai has held several visiting fellowships, including the Max Planck Institute (Germany), Visiting Professor (USA), JSPS Fellow (Japan), and Guest Professor (Denmark). He has written two books, edited three books and five conference proceedings, 14 book chapters and published more than 205 research papers in peer reviewed journals.

Fingerprint Dive into the research topics where Jai Singh is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

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excitons Physics & Astronomy
solar cells Physics & Astronomy
Excitons Engineering & Materials Science
amorphous semiconductors Physics & Astronomy
scintillation counters Physics & Astronomy
heterojunctions Physics & Astronomy
Amorphous semiconductors Chemical Compounds
radiative lifetime Physics & Astronomy

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Research Output 2001 2019

Charge carriers
Conversion efficiency
charge carriers

Influence of interfacial traps on the operating temperature of perovskite solar cells

Mehdizadeh-Rad, H. & Singh, J., 26 Aug 2019, In : Materials. 12, 17, p. 1-13 13 p., 2727.

Research output: Contribution to journalArticleResearchpeer-review

Open Access
Heat generation
Electric potential
Mathematical models

Influence of Urbach Energy, Temperature, and Longitudinal Position in the Active Layer on Carrier Diffusion Length in Perovskite Solar Cells

Mehdizadeh-Rad, H. & Singh, J., 22 Jan 2019, In : ChemPhysChem. p. 1-7 7 p.

Research output: Contribution to journalArticleResearchpeer-review

diffusion length
solar cells
Electric potential
high voltages

A versatile solution-processed MoO3/Au nanoparticles/MoO3 hole contact for high performing PEDOT:PSS-free organic solar cells

Zhang, W., Lan, W., Lee, M. H., Singh, J. & Zhu, F., Jan 2018, In : Organic Electronics: physics, materials, applications. 52, p. 1-6 6 p.

Research output: Contribution to journalArticleResearchpeer-review

Contacts (fluid mechanics)
solar cells
Butyric acid

High open-circuit voltage in perovskite solar cells: The role of hole transport layer

Ompong, D. & Singh, J., Dec 2018, In : Organic Electronics. 63, p. 104-108 5 p.

Research output: Contribution to journalArticleResearchpeer-review

recombination coefficient
Open circuit voltage
open circuit voltage
Electron energy levels
Conversion efficiency