The choice of dopant determines what properties the finished semiconductor will have. There exist a huge number of exotic semiconductor materials, almost as many as there are material science ...
The study of electronic properties in semiconductors and crystalline materials is crucial for advancing technology in electronics, optoelectronics, and materials science. Recent research has ...
Researchers at Kyoto University have developed a machine learning model integrated with neural networks to predict the band ...
Ion irradiation is a powerful technique used to modify the structural properties of materials, particularly in the field of semiconductors. This process involves bombarding a material with ions ...
Previously, boron-doped diamonds were known to conduct electricity and become superconductors, but not to have plasmonic properties. Unlike metals or even other doped semiconductors, boron-doped ...
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Band gap cookout
Imagine you're cooking. You're trying to develop a unique flavor by mixing spices you've never combined before. Predicting how this will turn out could be tricky. You want to create something ...
A research team led by Dr. Jae Hwa Seo at Advanced Semiconductor Research Center of KERI has developed technology to evaluate ...
A new hydrogel material combines the characteristics of biological tissues with the electronic functionalities of ...
This core-shell structure helps passivate the surface of the nanoparticle, reducing surface defects and enhancing its optical and electronic properties. One of the most fascinating aspects of ...
Excitons, encountered in technologies like solar cells and TVs, are quasiparticles formed by an electron and a positively charged "hole," moving together in a semiconductor. Created when an electron ...
"This collaboration highlights UB's leadership in cutting-edge semiconductor research and ... "This happens regardless of the specific properties of the 2D material. So, whether you use ...