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Science Advances|March 11, 2026
Bulk and interface engineering of 1.7 eV-bandgap chalcogenide solar cells enabling record efficiencyShogo Ishizuka, Noboru TaguchiACS Applied Materials & Interfaces|May 9, 2020
Lithium-Doping Effects in Cu(In,Ga)Se<sub>2</sub> Thin-Film and Photovoltaic PropertiesShogo Ishizuka, Paul J FonsSmall Science|April 11, 2025
Highly Efficient Lightweight Flexible Cu(In,Ga)Se<sub>2</sub> Solar Cells with a Narrow Bandgap Fabricated on Polyimide Substrates: Impact of Ag Alloying, Cs and Na Doping, and Front Shallow Ga Grading on Cell PerformanceYukiko Kamikawa, Jiro Nishinaga, Takeshi Nishida, et al.ACS Applied Materials & Interfaces|September 10, 2020
Efficient Narrow Band Gap Cu(In,Ga)Se<sub>2</sub> Solar Cells with Flat SurfaceYukiko Kamikawa, Jiro Nishinaga, Hajime Shibata, et al.ACS Applied Materials & Interfaces|July 9, 2014
Interfacial alkali diffusion control in chalcopyrite thin-film solar cellsShogo Ishizuka, Akimasa Yamada, Paul J Fons, et al.ACS Applied Materials & Interfaces|November 13, 2024
Photovoltaic Efficiency Enhancement of Indium-Free Wide-Bandgap Chalcopyrite Solar Cells via an Aluminum-Induced Back-Surface Field EffectShogo Ishizuka, Jiro Nishinaga, Yukiko Kamikawa, et al.ACS Applied Materials & Interfaces|August 23, 2017
Si-Doping Effects in Cu(In,Ga)Se<sub>2</sub> Thin Films and Applications for Simplified Structure High-Efficiency Solar CellsShogo Ishizuka, Takashi Koida, Noboru Taguchi, et al.ACS Applied Materials & Interfaces|April 5, 2022
Impacts of KF Post-Deposition Treatment on the Band Alignment of Epitaxial Cu(In,Ga)Se<sub>2</sub> HeterojunctionsTakehiko Nagai, Jiro Nishinaga, Hitoshi Tampo, et al.Physical Chemistry Chemical Physics : PCCP|December 22, 2021
Physical and chemical aspects at the interface and in the bulk of CuInSe<sub>2</sub>-based thin-film photovoltaicsShogo Ishizuka, Jiro Nishinaga, Kosuke Beppu, et al.Pageof 1