Experimental electronic structure of In 2 O 3 and Ga 2 O 3 (original) (raw)

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Journal of Applied Physics, 2018

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Influence of the “second gap” on the transparency of transparent conducting oxides: An ab initio study

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Applied Physics Letters, 2016

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Origin of and tuning the optical and fundamental band gaps in transparent conducting oxides: The case ofM2O3(M=Al,Ga,In)

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Physical Review B, 2015

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Tuning the properties of complex transparent conducting oxides: Role of crystal symmetry, chemical composition, and carrier generation

Chaminda Hettiarachchi

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Role of point defects in the electrical and optical properties of In2O3

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Optical evidence of intrinsic quantum wells in the transparent conducting oxide β-Ga[sub 2]O[sub 3]

Didier Gourier

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Theoretical Study on the Electronic and Electrical Properties of p-Type Transparent Conducting Metal Oxides

Chen Lv

Japanese Journal of Applied Physics, 2007

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Iyad Saadeddin

2009

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Dielectric function in the NIR-VUV spectral range of (InxGa1−x)2O3 thin films

Rüdiger Schmidt-Grund

Journal of Applied Physics, 2014

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Transparent Conducting Oxides: Status and Opportunities in Basic Research

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Point defects and electrical properties of Sn-doped In-based transparent conducting oxides

Doreen Edwards

Solid State Ionics, 2000

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Modeling the structural properties and energies of transparent conducting oxides

Hariton Polatoglou

Thin Solid Films, 2007

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"Surface Origin of High Conductivities in Undoped In2O3 Thin Films,

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Electronic structure of transparent oxides with the Tran–Blaha modified Becke–Johnson potential

Dirk Lamoen

Journal of Physics: Condensed Matter, 2012

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Transparent Conducting Oxides for Photovoltaics : A fundamental investigation of their properties

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Transparent Conducting Oxides for Photovoltaics: Manipulation of Fermi Level, Work Function and Energy Band Alignment

Elvira Fortunato

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materials Transparent Conducting Oxides—An Up-To-Date Overview

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Effect of Mn doping on the structural, optical, and magnetic properties of In2O3 films

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Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films, 2013

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Indium Gallium Oxide Alloys: Electronic Structure, Optical Gap, Surface Space Charge, and Chemical Trends within Common-Cation Semiconductors

jack swallow

ACS Applied Materials & Interfaces, 2021

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Effects of vacancies and p-doping on the optoelectronic properties of Cu- and Ag-based transparent conducting oxides

Pablo Borges

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Band structure of indium oxide: Indirect versus direct band gap

Paul Erhart, Karsten Albe

Physical Review B, 2007

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Effects of free carriers on the optical properties of high mobility transition metal doped In2O3 transparent conductors

Kin Yu

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Carbon as a Shallow Donor in Transparent Conducting Oxides

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The great potential of coupled substitutions in In2O3 for the generation of bixbyite-type transparent conducting oxides, In2−2xMxSnxO3

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Solid State Communications, 2005

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Intrinsicn-Type Behavior in Transparent Conducting Oxides: A Comparative Hybrid-Functional Study ofIn2O3,SnO2, and ZnO

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Physical Review Letters, 2009

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Band gap, electronic structure, and surface electron accumulation of cubic and rhombohedral In2O3

Friedhelm Bechstedt

Physical Review B, 2009

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Shallow donor state of hydrogen in In2O3 and SnO2 : Implications for conductivity in transparent conducting oxides

Y. Gurkan Celebi

Physical Review B, 2009

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Role of self-trapping in luminescence and p-type conductivity of wide-band-gap oxides

Anderson Janotti

Physical Review B, 2012

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