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Transparent conductors as solar energy materials: A panoramic review
CG Granqvist - Solar energy materials and solar cells, 2007 - Elsevier
Transparent conductors (TCs) have a multitude of applications for solar energy utilization
and for energy savings, especially in buildings. The largest of these applications, in terms of …
and for energy savings, especially in buildings. The largest of these applications, in terms of …
Recent advances in hole-transporting layers for organic solar cells
C Anrango-Camacho, K Pavón-Ipiales… - Nanomaterials, 2022 - mdpi.com
Global energy demand is increasing; thus, emerging renewable energy sources, such as
organic solar cells (OSCs), are fundamental to mitigate the negative effects of fuel …
organic solar cells (OSCs), are fundamental to mitigate the negative effects of fuel …
Delafossite as hole transport layer a new pathway for efficient perovskite-based solar sells: Insight from experimental, DFT and numerical analysis
Herein, we propose a successful technique to produce delafossite materials that can be
applied as Hole Transport Layer (HTL) in inorganic lead halide Perovskite solar cells …
applied as Hole Transport Layer (HTL) in inorganic lead halide Perovskite solar cells …
Transparent conducting oxides—an up-to-date overview
A Stadler - Materials, 2012 - mdpi.com
Transparent conducting oxides (TCOs) are electrical conductive materials with comparably
low absorption of electromagnetic waves within the visible region of the spectrum. They are …
low absorption of electromagnetic waves within the visible region of the spectrum. They are …
Hole‐Boosted Cu(Cr,M)O2 Nanocrystals for All‐Inorganic CsPbBr3 Perovskite Solar Cells
J Duan, Y Zhao, Y Wang, X Yang… - Angewandte Chemie …, 2019 - Wiley Online Library
The all‐inorganic CsPbBr3 perovskite solar cell (PSC) is a promising solution to balance the
high efficiency and poor stability of state‐of‐the‐art organic–inorganic PSCs. Setting …
high efficiency and poor stability of state‐of‐the‐art organic–inorganic PSCs. Setting …
Enhancing the Performance of a Robust Sol–Gel‐Processed p‐Type Delafossite CuFeO2 Photocathode for Solar Water Reduction
Delafossite CuFeO2 is a promising material for solar hydrogen production, but is limited by
poor photocurrent. Strategies are demonstrated herein to improve the performance of …
poor photocurrent. Strategies are demonstrated herein to improve the performance of …
Discovery-based design of transparent conducting oxide films
The properties of TCO materials derive from the nature, number, and atomic arrangements
of metal cations in crystalline or amorphous oxide structures, from the resident morphology …
of metal cations in crystalline or amorphous oxide structures, from the resident morphology …
Electrochemical Synthesis of p-Type CuFeO2 Electrodes for Use in a Photoelectrochemical Cell
A new electrodeposition route was developed to prepare p-type CuFeO2 as a thin film-type
electrode for use as a photocathode in a solar water splitting cell. The resulting p-CuFeO2 …
electrode for use as a photocathode in a solar water splitting cell. The resulting p-CuFeO2 …
Ferrites: emerging light absorbers for solar water splitting
Solar water splitting in a photoelectrochemical cell is a highly promising technology to
produce clean and storable hydrogen energy. However, there are still a large number of …
produce clean and storable hydrogen energy. However, there are still a large number of …
Mg-Doped CuFeO2 Photocathodes for Photoelectrochemical Reduction of Carbon Dioxide
Mg-doped CuFeO2 delafossite is reported to be photoelectrochemically active for CO2
reduction. The material was prepared via conventional solid-state methods, and …
reduction. The material was prepared via conventional solid-state methods, and …