Energy news, January 2019

By coating cotton with a conducting polymer, researchers have developed a fabric that can harvest body heat to power wearable electronic devices.

Sandwiched lithium nanocomposites by one-pot process

A new method called thermal scanning probe lithography outperforms standard methods for fabricating metal electrodes on 2D semiconductors.

Weaving power into wearables

Guided by theoretical calculations, researchers have discovered a new class of promising thermoelectric materials.

Scientists have probed the complex interactions between quantum particles such as excitons and polarons in halide organic-inorganic perovskites.

Researchers have shown that a damage-resistant rechargeable zinc battery with a cartilage-like solid electrolyte makes an effective 'structural battery'.

Incorporating advanced catalysts made from 2D materials into lithium-air batteries allows them to hold up to 10 times more energy.

Using a powerful new analytical technique, scientists have uncovered a distinct pattern of electron spins within a cuprate superconductor.

Yolk@Shell SiOx/C microspheres with semi-graphitic carbon coating on the exterior and interior surfaces for durable lithium storage

light-emitting diodes based on perovskites that have surpassed a milestone in efficiency

Disordered magnesium chromium oxide crystals just 5nm in size can make an effective cathode material for magnesium batteries.

Pristine graphene formed into geometric shapes such as narrow ribbons connected to wide-open regions can efficiently convert light into electricity.

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Disordered rocksalt made of lithium, vanadium and oxygen makes a safe, powerful. long-lasting anode material for lithium-ion batteries.

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Scientists have shown that films of carbon nanotubes can effectively stop dendrites from growing from the anodes in lithium-metal batteries.