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Publications by Bjorn Winther‐Jensen
Water Splitting: Poly(1,4‐di(2‐thienyl))benzene Facilitating Complete Light‐Driven Water Splitting Under Visible Light at High pH (Adv. Energy Mater. 6/2019)
Advanced Energy Materials
Materials Science
the Environment
Sustainability
Renewable Energy
Related publications
Plasmonic Water Splitting: Plasmon‐Enhanced Photoelectrochemical Water Splitting for Efficient Renewable Energy Storage (Adv. Mater. 31/2019)
Advanced Materials
Mechanics of Materials
Materials Science
Nanotechnology
Mechanical Engineering
Nanoscience
Metal Selenide Photocatalysts for Visible-Light-Driven Z-Scheme Pure Water Splitting
Journal of Materials Chemistry A
Materials Science
Chemistry
the Environment
Sustainability
Renewable Energy
Visible Light Water Splitting Using Dye-Sensitized Oxide Semiconductors
Accounts of Chemical Research
Medicine
Chemistry
Water Splitting: Atomically Thin Mesoporous In2 O3- X /In2 S3 Lateral Heterostructures Enabling Robust Broadband-Light Photo-Electrochemical Water Splitting (Adv. Energy Mater. 9/2018)
Advanced Energy Materials
Materials Science
the Environment
Sustainability
Renewable Energy
Electrochemical Water Splitting: Semiconducting Metal Oxide Nanostructures for Water Splitting and Photovoltaics (Adv. Energy Mater. 23/2017)
Advanced Energy Materials
Materials Science
the Environment
Sustainability
Renewable Energy
Efficient Redox-Mediator-Free ZScheme Water Splitting Employing Oxysulfide Photocatalysts Under Visible Light
Water Splitting: Topotactic Transformations in an Icosahedral Nanocrystal to Form Efficient Water-Splitting Catalysts (Adv. Mater. 1/2019)
Advanced Materials
Mechanics of Materials
Materials Science
Nanotechnology
Mechanical Engineering
Nanoscience
Water Splitting: Fullerene as a Photoelectron Transfer Promoter Enabling Stable TiO 2 ‐Protected Sb 2 Se 3 Photocathodes for Photo‐Electrochemical Water Splitting (Adv. Energy Mater. 16/2019)
Advanced Energy Materials
Materials Science
the Environment
Sustainability
Renewable Energy
Water Splitting: The “Midas Touch” Transformation of TiO2 Nanowire Arrays During Visible Light Photoelectrochemical Performance by Carbon/Nitrogen Coimplantation (Adv. Energy Mater. 20/2018)
Advanced Energy Materials
Materials Science
the Environment
Sustainability
Renewable Energy