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A flexible nanoribbon developed abroad can significantly increase the capacity of 602030 lipo battery
A flexible nanoribbon developed abroad can greatly increase the capacity of 602030 lipo battery - According to foreign media reports, researchers at University College London (UCL) are the first in the world to create flexible nanoribbons made of crystalline phosphorus, which are expected to be widely used in energy In the field of storage and electronics, it realizes fast charging, large-capacity batteries and the recovery of electrical energy from waste heat.
According to foreign media reports, researchers at University College London (UCL) are the first in the world to create flexible nanoribbons made of crystalline phosphorus, which are expected to be widely used in energy storage and electronic fields to achieve fast charging, large-capacity batteries and recovery from waste heat. Recover electrical energy, etc.
In a paper published in the journal Nature, researchers from the school, together with team members from the University of Bristol, Virginia Commonwealth University, and Ecole Polytechnique Fédérale de Lausanne, describe how they unexpectedly created this Tiny ribbons of phosphorus.
The researchers tried to create two-dimensional phosphorene sheets by mixing black phosphorus with lithium ions dissolved in liquid ammonia at minus 50 degrees Celsius. After 24 hours, they removed the ammonia and replaced it with an organic solvent. The researchers kept fine-tuning until they produced samples, mostly ribbons.
Such ribbons have a typical height of a single atomic layer, a width of 4-50 nanometers, and a measured length of up to 75 microns. They're extremely flat, transparent and incredibly flexible, said Mitch Watts, lead author of the paper.
"What's more, by changing the width or number of layers of the ribbon, you can actually tune the electronic properties for a specific application," Watts said.
Using phosphorene ribbons in batteries could allow lithium ions to diffuse extremely quickly, allowing for fast charging. Chris Howard of University College London, one of the paper's authors, said batteries containing phosphorene ribbons have almost twice the capacity of traditional 602030 lipo battery.
He said calculations show the material could be valuable as a thermoelectric material, converting waste heat into electricity, and is flexible enough to power wearable devices.
Nanoribbons also have a range of properties that allow them to split water into oxygen and hydrogen under light, and can also be used in optoelectronics and nanoelectronics.
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