Once disruptive, phonons now improve quantum dots’ behavior, making them more reliable for quantum communication and cryptography.
Once disruptive, phonons now improve quantum dots’ behavior, making them more reliable for quantum communication and cryptography.
Quantum dots are key to a new laser that could transform medical imaging, diagnostics, and boost communication.
Scientists pioneer mixed-valence molecules in quantum-dot automata for faster, room-temperature operation, overcoming transistor limits.
Harnessing quantum dots to produce low-energy single photons for applications in secure communications and quantum computing.
Predicting the experimental conditions that enhance coherence times for semiconducting quantum dot hybrid qubits.
By matching the absorption of chloroplasts, dual-wavelength-emitting carbon dots can enhance the efficiency of the biological photosynthetic system both in vivo and in vitro.
This month’s Advanced Engineering Materials covers and top papers!
A novel technology to display information on transparent screens offers new opportunities in next-generation electronics, such as augmented reality devices, smart surgical glasses, and smart windows.
Electroluminescence caused by the transport of interacting electrons through parallel quantum dots in a photon cavity is presented.
Highly efficient, red-emissive carbon quantum dots (R-CQDs) with a quantum yield of 53% are prepared and a CQD-phosphors-based warm white-light-emitting diode (WLED) is realized for the first time.