comparemela.com

Latest Breaking News On - Pooja goddard - Page 1 : comparemela.com

CdTe breakthrough could lead to more efficient solar cells, UK researchers say

CdTe breakthrough could lead to more efficient solar cells, UK researchers say
pv-tech.org - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from pv-tech.org Daily Mail and Mail on Sunday newspapers.

The FINANCIAL - Significant Progress in Lithium-Air Battery Development

Share This The FINANCIAL Research led by the University of Liverpool, in partnership with Johnson Matthey PLC and Loughborough University, is making significant progress in the development of stable and practical electrolytes for lithium-oxygen batteries. The lithium-oxygen (Li-O2) battery (or lithium-air battery), consisting of Li-metal and a porous conductive framework as its electrode’s releases energy from the reaction of oxygen from the air and lithium. The technology is in its infancy, but in theory could provide much greater energy storage than the conventional lithium-ion battery. In a paper published in the journal Advanced Functional Materials, Professor Laurence Hardwick from the University of Liverpool’s Stephenson Institute for Renewable Energy (SIRE) and colleagues meticulously characterised and developed electrolyte formulations that significantly minimises side reactions within the battery to enable improved longer cycle stability, University of Liverpool

A Big Step Toward Creating the Next Generation of Rechargeable Batteries

A Big Step Toward Creating the Next Generation of Rechargeable Batteries Written by AZoCleantechMay 7 2021 Researchers have taken a crucial stride toward making next-generation rechargeable batteries, which will substitute present energy storage technology if successful. Dr Pooja Goddard. Image Credit: Loughborough University. Scientists from Loughborough University and the University of Liverpool have been collaborating with the British company Johnson Matthey a pioneer in sustainable technologies to enhance the lithium-oxygen (Li-O 2) battery performance. A new study published by the researchers in the Advanced Functional Materials journal describes a combination of materials developed by them, which are stable with a Li metal anode the cell’s negative part.

© 2025 Vimarsana

vimarsana © 2020. All Rights Reserved.