Energy news, August 2023

Researchers have developed best-practice guidelines for evaluating the performance of radiative-cooling materials.

A new technique uses a combination of viscosity and electrochemical impedance measurements to determine the dispersibility of electrode slurries.

Researchers have developed a framework for predicting how the structure of solid-state electrolytes can affect the performance of a battery.

Refining the microstructure of the negative graphite electrode in a lithium-ion battery can lead to faster charging times and higher energy density.

Advanced functionalities of non-collinear antiferromagnets

Tribo-sanitizer decontaminates food storage materials

new family of low density TiMgLi-based compositionally complex alloys promise hydrogen storage at room temperature

Using an array of microelectrodes, researchers have shown that cracks in cathode particles can actually help to reduce battery charge time.

Researchers have discovered that, in the absence of corrosion, lithium forms a 12-sided figure known as a rhombic dodecahedron on electrode surfaces.

adding a bulky cation to a perovskite improves the stability and efficiency of solar cells

Researchers have produced a novel, highly scalable supercapacitor for storing renewable energy by combining cement, carbon black and water.

A novel robot called RoboMapper can conduct experiments more efficiently and sustainably to develop new semiconductor materials with desirable properties.

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