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title:(Wide-Bandgap AND Selenium-Based AND Solar AND Cells AND for AND Tandem AND Device AND Applications)

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Advanced
1 PhD Thesis

Wide-Bandgap Selenium-Based Solar Cells for Tandem Device Applications

Youngman, Tomas Hugh

Department of Physics, Technical University of Denmark — 2021

by silicon. The large bandgap of trigonal selenium makes it inefficient as a single-junction solar cell, but highly suitable as a wide-bandgap top-cell absorber. The development of a monolithically grown Se-Si tandem is further motivated by the low melting point of selenium (220 °C) that allows for low

Year: 2021

Language: English

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2 Bachelor Thesis

Investigation and optimisation of wide-bandgap selenium-based solar cells for tandem device applications (translated: Undersøgelse og optimering af bred-båndgab selen-baserede solceller til brug i tandem solceller)

Madsen, Frederik Ryberg; Voss, Martin

DTU Department of Physics — 2019

Year: 2019

Language: Undetermined

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