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Electronics and Electrical Engineering

D-Index
42
Citations
6908
World Ranking
4129
National Ranking
43

Overview

Olindo Isabella is affiliated with Delft University of Technology in the Netherlands and has published extensively in the field of engineering, particularly focusing on electrical and electronic engineering. Their research spans multiple subfields including renewable energy, sustainability, atomic and molecular physics and optics, materials chemistry, and artificial intelligence.

The primary thematic focus of Olindo Isabella's work centers on silicon and solar cell technologies, thin-film transistor technologies, semiconductor materials and interfaces, photovoltaic system optimization techniques, solar radiation and photovoltaics, solar cell performance optimization, and perovskite materials and applications.

Several recent publications reflect these interests in solar energy and photovoltaic systems:

  • Silicon heterojunction solar cells with up to 26.81% efficiency achieved by electrically optimized nanocrystalline-silicon hole contact layers (2023, Nature Energy)
  • High-Efficiency Silicon Heterojunction Solar Cells: Materials, Devices and Applications (2020, Materials Science and Engineering R Reports)
  • A silicon carbide-based highly transparent passivating contact for crystalline silicon solar cells approaching efficiencies of 24% (2021, Nature Energy)
  • Dynamic operation of water electrolyzers: A review for applications in photovoltaic systems integration (2023, Renewable and Sustainable Energy Reviews)
  • Progress and challenges on scaling up of perovskite solar cell technology (2021, Sustainable Energy & Fuels)

Olindo Isabella frequently collaborates with a consistent group of coauthors, including:

  • Miro Zeman
  • Paul Prócel
  • Luana Mazzarella
  • Rudi Santbergen
  • Yifeng Zhao

Their work has been published repeatedly in notable scientific venues related to solar and renewable energy, such as:

  • Solar Energy Materials and Solar Cells
  • Progress in Photovoltaics Research and Applications
  • SSRN Electronic Journal
  • Solar RRL
  • Solar Energy

Olindo Isabella's contributions predominantly address engineering disciplines with strong emphasis on electrical engineering and sustainable energy technologies. Their research outputs contribute to advancing solar cell efficiencies and renewable energy system integration.

Best Publications

  • Silicon heterojunction solar cells with up to 26.81% efficiency achieved by electrically optimized nanocrystalline-silicon hole contact layers

    Unknown

  • High-Efficiency Silicon Heterojunction Solar Cells: Materials, Devices and Applications

    Yuqiang Liu;Yajuan Li;Yiliang Wu;Guangtao Yang

  • Modulated surface textures for enhanced light trapping in thin-film silicon solar cells

    Olindo Isabella;Janez Krč;Miro Zeman

  • A silicon carbide-based highly transparent passivating contact for crystalline silicon solar cells approaching efficiencies of 24%

    Malte Köhler;Malte Köhler;Manuel Pomaska;Paul Procel;Rudi Santbergen

  • Modelling of thin-film silicon solar cells

    M. Zeman;O. Isabella;S. Solntsev;K. Jäger

  • Experimental Demonstration of 4n2 Classical Absorption Limit in Nanotextured Ultrathin Solar Cells with Dielectric Omnidirectional Back Reflector

    Andrea Ingenito;Olindo Isabella;Miro Zeman

  • Inverted pyramidally-textured PDMS antireflective foils for perovskite/silicon tandem solar cells with flat top cell

    Fuhua Hou;Can Han;Olindo Isabella;Lingling Yan

  • IBC c-Si solar cells based on ion-implanted poly-silicon passivating contacts

    Guangtao Yang;Andrea Ingenito;Olindo Isabella;Miro Zeman

  • 3‐D optical modeling of thin‐film silicon solar cells on diffraction gratings

    Olindo Isabella;Serge Solntsev;Diego Caratelli;Miro Zeman

  • Nano‐cones on micro‐pyramids: modulated surface textures for maximal spectral response and high‐efficiency solar cells

    Andrea Ingenito;Olindo Isabella;Miro Zeman

  • Achieving 23.83% conversion efficiency in silicon heterojunction solar cell with ultra‐thin MoOx hole collector layer via tailoring (i)a‐Si:H/MoOx interface

    Unknown

  • Material properties of LPCVD processed n-type polysilicon passivating contacts and its application in PERPoly industrial bifacial solar cells

    Maciej K. Stodolny;John Anker;Bart L.J. Geerligs;Gaby J.M. Janssen

  • Modulated surface textures using zinc‐oxide films for solar cells applications

    Olindo Isabella;Folkert Moll;Janez Krč;Miro Zeman

  • Micro-textures for efficient light trapping and improved electrical performance in thin-film nanocrystalline silicon solar cells

    Hairen Tan;Efthymia Psomadaki;Olindo Isabella;Marinus Fischer

  • Theoretical evaluation of contact stack for high efficiency IBC-SHJ solar cells

    Paul Procel;Guangtao Yang;Olindo Isabella;Miro Zeman

  • Modeling and analyses of energy performances of photovoltaic greenhouses with sun-tracking functionality

    Yuan Gao;Yuan Gao;Jianfei Dong;Olindo Isabella;Rudi Santbergen

  • Sustainable e-bike charging station that enables ac, dc andwireless charging from solar energy

    Gautham Ram Chandra Mouli;Peter Van Duijsen;Francesca Grazian;Ajay Jamodkar

  • Three‐terminal perovskite/integrated back contact silicon tandem solar cells under low light intensity conditions

    Unknown

  • The role of heterointerfaces and subgap energy states on transport mechanisms in silicon heterojunction solar cells

    Paul Procel;Haiyuan Xu;Aurora Saez;Carlos Ruiz‐Tobon

  • Harvesting Roadway Solar Energy—Performance of the Installed Infrastructure Integrated PV Bike Path

    Aditya Shekhar;Vinod Kumar Kumaravel;Stan Klerks;Sten de Wit

  • Thin-film silicon-based quadruple junction solar cells approaching 20% conversion efficiency

    Olindo Isabella;Arno Hendrikus Marie Smets;Miro Zeman

  • Highly transparent modulated surface textured front electrodes for high-efficiency multijunction thin-film silicon solar cells

    Hairen Tan;Etienne Moulin;Fai Tong Si;Jan-Willem Schüttauf

  • Design and application of ion-implanted polySi passivating contacts for interdigitated back contact c-Si solar cells

    Guangtao Yang;Andrea Ingenito;Nienke van Hameren;Olindo Isabella

  • Full-wave optoelectrical modeling of optimized flattened light-scattering substrate for high efficiency thin-film silicon solar cells

    Olindo Isabella;Hitoshi Sai;Michio Kondo;Miro Zeman

  • Doped hydrogenated nanocrystalline silicon oxide layers for high-efficiency c-Si heterojunction solar cells

    Yifeng Zhao;Luana Mazzarella;Paul Procel;Can Han;Can Han

Frequent Co-Authors

Miro Zeman
Miro Zeman Delft University of Technology
Hairen Tan
Hairen Tan Nanjing University
Christophe Ballif
Christophe Ballif École Polytechnique Fédérale de Lausanne
Uwe Rau
Uwe Rau Forschungszentrum Jülich
Takashi Suemasu
Takashi Suemasu University of Tsukuba
Pavol Bauer
Pavol Bauer Delft University of Technology
Mohammad Khaja Nazeeruddin
Mohammad Khaja Nazeeruddin École Polytechnique Fédérale de Lausanne
Noritaka Usami
Noritaka Usami Nagoya University
Bernd Rech
Bernd Rech Helmholtz-Zentrum Berlin für Materialien und Energie
Corsin Battaglia
Corsin Battaglia Swiss Federal Laboratories for Materials Science and Technology

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