Enhancing Near‐Infrared Photoluminescence of Ag8GeS6 Quantum Dots Through Compositional Fine‐Tuning and ZnS Coating for In Vivo Bioimaging - Rismaningsih - Small - Wiley Online Library https://t.co/6kp9S4ther
Enhancing Near‐Infrared Photoluminescence of Ag8GeS6 Quantum Dots Through Compositional Fine‐Tuning and ZnS Coating for In Vivo Bioimaging - Rismaningsih - Small - Wiley Online Library https://t.co/6kp9S4ther
Tailoring Energy Structure of Low-Toxic Ternary Ag-Bi-S Quantum Dots through Solution-Phase Synthesis for Quantum-Dot-Sensitized #SolarCells (K. Akiyoshi et al.) https://t.co/nKaKS4sWaV
Magnetic Co nanoparticles were chemically alloyed with Pt and their magnetic circular dichroism (MCD) in ambient air was stabilized and enhanced.
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The 2023 #NobelPrize in Chemistry rewards the discovery and development of quantum dots, nanoparticles so tiny that their size determines their properties.
These particles have unique properties and now spread their light from television screens and LED lamps. They catalyse chemical reactions and their clear light can illuminate tumour tissue for a surgeon.
Researchers have primarily utilised quantum dots to create coloured light. They believe that in the future quantum dots can contribute to flexible electronics, miniscule sensors, slimmer solar cells and perhaps encrypted quantum communication.
BREAKING NEWS
The Royal Swedish Academy of Sciences has decided to award the 2023 #NobelPrize in Chemistry to Moungi G. Bawendi, Louis E. Brus and Alexei I. Ekimov “for the discovery and synthesis of quantum dots.”
We fabricated chiral plasmonic nanoparticles consisting solely of Ag on a glass plate by combining chiral electric field distribution induced by circularly polarized light and hot electron reduction of Ag+ ions at the electric field. https://t.co/X7pqJfCKDg