Electron transport

LEDs

Breakthrough in Quantum Dot Technology: Dual Synergistic Passivation Strategy Yields Record Efficiency

Researchers at the Nanjing University of Science and Technology have made a significant advancement in quantum dot technology, achieving a record maximum external quantum efficiency (EQE) of 24.35% in inverted perovskite quantum dot light-emitting diodes (Pe-QLEDs). This breakthrough is attributed to a dual synergistic interfacial passivation strategy employing pentaerythritol

LEDs

Breakthrough in Quantum Dot Technology: Dual Synergistic Passivation Strategy Yields Record Efficiency

Researchers at the Nanjing University of Science and Technology have made a significant advancement in quantum dot technology, achieving a record maximum external quantum efficiency (EQE) of 24.35% in inverted perovskite quantum dot light-emitting diodes (Pe-QLEDs). This breakthrough is attributed to a dual synergistic interfacial passivation strategy employing pentaerythritol

Electron transport

Revisiting the Design of Direct-electron-transfer Oxidation Systems: Synergistic Roles of Thermodynamic and Hydrodynamic Properties

A recent study published in Applied Catalysis B-environment and Energy has shed new light on the design of direct-electron-transfer (DET) mediated peroxide-based systems for water purification. Researchers from the Harbin Institute of Technology in China have demonstrated the critical role of thermodynamic and hydrodynamic optimizations in activating peroxide of peracetic

Technical institutes

Ultrafast Science Breakthroughs in Metal-Insulator-Metal Tunneling Nanojunctions

Researchers at the Technion-Israel Institute of Technology have made significant progress in the field of ultrafast science, specifically in the area of metal-insulator-metal (MIM) tunneling nanojunctions. According to a recent study, these nanojunctions have the potential to operate at petahertz frequencies and allow for attosecond-scale scanning tunneling microscopy. The research