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Aqueous dye-sensitized solar cells
Nowadays, dye-sensitized solar cells (DSSCs) are the most extensively investigated
systems for the conversion of solar energy into electricity, particularly for implementation in …
systems for the conversion of solar energy into electricity, particularly for implementation in …
Oxygen transport in perovskite-type solid oxide fuel cell materials: insights from quantum mechanics
Conspectus Global advances in industrialization are precipitating increasingly rapid
consumption of fossil fuel resources and heightened levels of atmospheric CO2. World …
consumption of fossil fuel resources and heightened levels of atmospheric CO2. World …
Defect migration in methylammonium lead iodide and its role in perovskite solar cell operation
In spite of the unprecedented advance of organohalide lead perovskites in the photovoltaics
scenario, many of the characteristics of this class of materials, including their slow …
scenario, many of the characteristics of this class of materials, including their slow …
Enhancing bifunctional electrocatalytic activities via metal d-band center lift induced by oxygen vacancy on the subsurface of perovskites
For efficient electrochemical catalysts, several molecular-scale descriptors have been
proposed for the oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) …
proposed for the oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) …
Theoretical investigations of structural, electronic, optical and thermoelectric properties of oxide halide perovskite ACoO3 (A= Nd, Pr or La)
Perovskite oxides have emerged as promising alternatives for photovoltaic devices due to
their astonishing optoelectronic properties. Nevertheless, a density functional theory study …
their astonishing optoelectronic properties. Nevertheless, a density functional theory study …
Mobile ions in organohalide perovskites: interplay of electronic structure and dynamics
Perovskite photovoltaics have made giant leaps in efficiency in just a few years from their
inception. The employed solution synthesis techniques lead to inherently “soft” structures …
inception. The employed solution synthesis techniques lead to inherently “soft” structures …
Is NiCo2S4 Really a Semiconductor?
NiCo2S4 is a technologically important electrode material that has recently achieved
remarkable performance in pseudocapacitor, catalysis, and dye-synthesized solar cell …
remarkable performance in pseudocapacitor, catalysis, and dye-synthesized solar cell …
Accurate prediction of oxygen vacancy concentration with disordered A-site cations in high-entropy perovskite oxides
Entropic stabilized ABO3 perovskite oxides promise many applications, including the two-
step solar thermochemical hydrogen (STCH) production. Using binary and quaternary A-site …
step solar thermochemical hydrogen (STCH) production. Using binary and quaternary A-site …
Formation and Migration of Oxygen Vacancies in SrCoO3 and Their Effect on Oxygen Evolution Reactions
Perovskite SrCoO3 is a potentially useful material for promoting the electrocatalytic oxygen
evolution reaction, with high activities predicted theoretically and observed experimentally …
evolution reaction, with high activities predicted theoretically and observed experimentally …
First-Principles Design of New Electrodes for Proton-Conducting Solid-Oxide Electrochemical Cells: A-Site Doped Sr2Fe1.5Mo0.5O6−δ Perovskite
Electrolyzer and fuel cells based on proton-conducting solid-oxide ceramics (PC-SOEC/FC)
are gaining wide interest as promising green technologies for H2 production and …
are gaining wide interest as promising green technologies for H2 production and …