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Martin A. Green

Researcher Next ID · RN-028843

Researcher · Engineering

UNSW Sydney

Sydney, Australia

Not currently recruitingFunding unknown
Works count
1,276
Citation count
103,054
H-index
150
i10-index
700

Research interests

Engineering
Materials Science
Silicon and Solar Cell Technologies
solar cell performance optimization
Chalcogenide Semiconductor Thin Films
Thin-Film Transistor Technologies
Silicon Nanostructures and Photoluminescence

Publications

  • Solar Cell Efficiency Tables (Version 66)

    Progress in Photovoltaics Research and Applications · 2025 · 10.1002/pip.3919

  • Solar cell efficiency tables (Version 64)

    Progress in Photovoltaics Research and Applications · 2024 · 10.1002/pip.3831

  • Solar cell efficiency tables (version 57)

    Progress in Photovoltaics Research and Applications · 2020 · 10.1002/pip.3371

  • Solar cell efficiency tables (version 54)

    Progress in Photovoltaics Research and Applications · 2019 · https://doi.org/10.1002/pip.3171

  • Solar cell efficiency tables (Version 55)

    Progress in Photovoltaics Research and Applications · 2019 · 10.1002/pip.3228

  • Cu2ZnSnS4 solar cells with over 10% power conversion efficiency enabled by heterojunction heat treatment

    Nature Energy · 2018 · 10.1038/s41560-018-0206-0

  • Solar cell efficiency tables (Version 53)

    Progress in Photovoltaics Research and Applications · 2018 · 10.1002/pip.3102

  • Solar cell efficiency tables (version 51)

    Progress in Photovoltaics Research and Applications · 2017 · 10.1002/pip.2978

  • Solar cell efficiency tables (version 50)

    Progress in Photovoltaics Research and Applications · 2017 · 10.1002/pip.2909

  • Solar cell efficiency tables (Version 45)

    Progress in Photovoltaics Research and Applications · 2014 · https://doi.org/10.1002/pip.2573

  • The emergence of perovskite solar cells

    Nature Photonics · 2014 · https://doi.org/10.1038/nphoton.2014.134

  • Solar cell efficiency tables (version 41)

    Progress in Photovoltaics Research and Applications · 2012 · 10.1002/pip.2352

  • Solar cell efficiency tables (version 39)

    Progress in Photovoltaics Research and Applications · 2011 · 10.1002/pip.2163

  • Solar cell efficiency tables (version 37)

    Progress in Photovoltaics Research and Applications · 2010 · 10.1002/pip.1088

  • The path to 25% silicon solar cell efficiency: History of silicon cell evolution

    Progress in Photovoltaics Research and Applications · 2009 · 10.1002/pip.892

  • Self-consistent optical parameters of intrinsic silicon at 300K including temperature coefficients

    Solar Energy Materials and Solar Cells · 2008 · 10.1016/j.solmat.2008.06.009

  • Surface plasmon enhanced silicon solar cells

    Journal of Applied Physics · 2007 · https://doi.org/10.1063/1.2734885

  • Improving solar cell efficiencies by down-conversion of high-energy photons

    Journal of Applied Physics · 2002 · 10.1063/1.1492021

  • Improving solar cell efficiencies by up-conversion of sub-band-gap light

    Journal of Applied Physics · 2002 · 10.1063/1.1505677

  • 19.8% efficient “honeycomb” textured multicrystalline and 24.4% monocrystalline silicon solar cells

    Applied Physics Letters · 1998 · 10.1063/1.122345

  • Optical properties of intrinsic silicon at 300 K

    Progress in Photovoltaics Research and Applications · 1995 · https://doi.org/10.1002/pip.4670030303

  • Intrinsic concentration, effective densities of states, and effective mass in silicon

    Journal of Applied Physics · 1990 · 10.1063/1.345414

  • 22.8% efficient silicon solar cell

    Applied Physics Letters · 1989 · 10.1063/1.101596

  • Light trapping properties of pyramidally textured surfaces

    Journal of Applied Physics · 1987 · 10.1063/1.339189

  • New All‐Vanadium Redox Flow Cell

    Journal of The Electrochemical Society · 1986 · 10.1149/1.2108706

Current projects

    No projects listed.