O3 films with bandgaps exceeding 7 electronvolts and conductivities over 100 million times higher than any previous ...
A research team has successfully developed a new technology to control doping at the nucleus (seed) phase to increase the performance of semiconductor nanocrystals. The study uncovered how the doping ...
Organic semiconductors are paving the way for a new generation of lightweight, flexible electronics, including bendable displays, printable circuits, wearable sensors and devices that harvest energy ...
Cavendish physicists have discovered two new ways to improve organic semiconductors. They found a way to remove more electrons from the material than previously possible and used unexpected properties ...
Researchers have developed a new way to dope organic semiconductors that can produce up to 100 times more mobile electrical charges than conventional methods, potentially making these lightweight ...
(Nanowerk News) Professor Jiwoong Yang and his research team at the Department of Energy Science and Engineering, Daegu Gyeongbuk Institute of Science & Technology (DGIST; President Kunwoo Lee) ...
A study revealed that a simple thermal reaction of gallium nitride with metallic magnesium results in the formation of a distinctive superlattice structure. This represents the first time researchers ...
A research team from the Department of Energy Science and Engineering at Daegu Gyeongbuk Institute of Science & Technology, led by Professor Jiwoong Yang, has developed a new technique to regulate ...
A material that was previously assumed to be an electrical insulator has been shown to be a semiconductor, with potential ...
Researchers have observed a doping-tunable charge density wave (CDW) in a single-layer semiconductor, extending the CDW phenomenon from metals to doped semiconductors. (Nanowerk News) Researchers at ...
Doping in semiconductors is adding a small amount of impurities into a very pure semiconductor material. It might sound strange to add impurities on purpose, but this is a critical to make ...
Results that may be inaccessible to you are currently showing.
Hide inaccessible results