Credit: Curtin University
Discover the key to brighter TV screens, improved medical diagnostics, and more efficient solar panels with groundbreaking research led by Curtin University. This research has unveiled a method to enhance
Associate Professor Guohua Jia from Curtin’s School of Molecular and Life Sciences spearheaded the study on how the shape of zinc sulfide nanocrystals influences ligands’ ability to adhere to their surface. The full study titled “Deciphering surface ligand density of colloidal semiconductor nanocrystals: Shape
“Ligands are crucial in regulating zinc sulfide nanocrystals’ behavior and performance across various technologies,” explained Associate Professor Jia.
The research
By manipulating particle shapes, researchers can optimize interactions with surroundings, leading to advancements in LED lights, screens, solar panels, and medical imaging. The ability to control particle shapes could revolutionize product efficiency across industries.”
Associate Professor Jia emphasized that this discovery could elevate optoelectronic device performance significantly.
2024-10-13 19:15:02
Post from phys.org