Materials Science
The study and application of the properties and uses of materials, including advanced substances like MXenes, for energy technologies.
Researchers have developed innovative 3D vertical array TiO2/VO2 heterojunction photocathodes for aqueous zinc-ion batteries.
Engineers at NC State University have developed the Chen-Huang Nonequilibrium Phasex Transformation (NExT) Model to improve understanding of dynamic processes in energy storage materials.
Researchers at NJIT utilized a dual-AI approach to identify five novel porous transition metal oxide structures suitable for next-generation multivalent-ion batteries.
Researchers have developed a novel method to significantly enhance lithium-ion conduction in polyether-based solid electrolytes.
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Recent research has significantly advanced the use of molybdenum disulfide (MoS2) as an electrocatalyst for green hydrogen generation.
Researchers have simulated lead-free Cs4CuSb2Cl12 perovskite solar cells, achieving a power conversion efficiency of 28.23% in optimized configurations.
Tohoku University and Japan Atomic Energy Agency developed manganese dioxide nanosheets for high-density heat storage below 100°C.
Researchers at the University of Adelaide have developed a zinc-iodine battery that achieves double the energy density of current lithium-ion models.