Chemists Make Breakthrough on Road to Creating a Rechargeable Lithium-Oxygen Battery

Lithium.
Credit: © vchalup / Fotolia

Chemists from the University of Waterloo have successfully resolved two of the most challenging issues surrounding lithium-oxygen batteries, and in the process created a working battery with near 100% coulombic efficiency. The new work, which appears this week in Science, proves that four-electron conversion for lithium-oxygen electrochemistry is highly reversible. The team is the first to achieve four-electron conversion, which doubles the electron storage of lithium-oxygen, also known as lithium-air, batteries.

“There are limitations based on thermodynamics,” said Linda Nazar, Canada Research Chair of Solid State Energy Materials and senior author on the project...

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Ending a 40-year quest, scientists reveal the Identity of ‘Hearing’ Protein

The snail-shell-shaped part of the inner ear that houses hair cells. Credit: Holt lab/Harvard Medical School

The snail-shell-shaped part of the inner ear that houses hair cells. Credit: Holt lab/Harvard Medical School

Scientists at Harvard Medical School say they have ended a 40-year-quest for the elusive identity of the sensor protein responsible for hearing and balance. The results of their research, reported Aug. 22 in Neuron, reveal that TMC1, a protein discovered in 2002, forms a sound- and motion-activated pore that allows the conversion of sound and head movement into nerve signals that travel to the brain – a signaling cascade that enables hearing and balance.

Scientists have long known that when the delicate cells in our inner ear detect sound and movement, they convert them into signals. Where and how this conversion occurs has been the subject of intense scientific debate...

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New Material could Improve Efficiency of Computer Processing and Memory

This cross-sectional transmission electron microscope image shows a sample used for the charge-to-spin conversion experiment. The nano-sized grains of less than 6 nanometers in the sputtered topological insulator layer created new physical properties for the material that changed the behavior of the electrons in the material.
Credit: Wang Group, University of Minnesota

Discovery could have major impact on semiconductor industry...

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Laser Breakthrough has Physicists Close to Cooling down Antimatter

Ti:Sapphire laser system built at the University of British Columbia. Credit: University of British Columbia

Ti:Sapphire laser system built at the University of British Columbia.
Credit: University of British Columbia

For the first time, physicists at CERN have observed a benchmark atomic energy transition in anithydrogen, a major step toward cooling and manipulating the basic form of antimatter. “The Lyman-alpha transition is the most basic, important transition in regular hydrogen atoms, and to capture the same phenomenon in antihydrogen opens up a new era in antimatter science,” said Takamasa Momose, the University of British Columbia chemist and physicist who led the development of the laser system used to manipulate the anithydrogen...

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