This special issue honors Professor Yasuo Koide's retirement, with a preface by Nobel laureate Hiroshi Amano. The collection showcases his pioneering work on diamond and III-nitride semiconductors that enabled blue LEDs and next-gen power electronics.👇
https://t.co/ODC1fhsikl
AI is now a baseline tool in semiconductor manufacturing, but evolving pilots into real results can be a challenge. As the market is projected to exceed $1 trillion by 2030, there’s never been a bigger demand for skilled talent.
Visit @IEEEeducation to read more: https://t.co/hOJ5KXqvtn
#Diamond works as a super-cooler for next-gen chips, breaking #silicon's heat barrier. Check 10 papers published under the special issue of “Diamond and III-Nitride Wide Bandgap #Semiconductors”.😀
@Funct_diamond
https://t.co/ODC1fhsikl
A heart procedure using tiny grinders to clear artery blockages creates debris that risks clogging capillaries. Optimizing the grinder's surface texture reduces large particles, improving patient safety and surgical outcomes.
@Funct_diamond@WeAreTandF
https://t.co/REM3bDlQHV
#Laser stealth dicing creates large #diamond wafers quickly, with little damage, advancing tech for #electronics and sensors.🧐
@Funct_diamond
https://t.co/eAJBX5cj9b
Twisted rhombohedral trilayer graphene hosts programmable #quantum anomalous Hall insulators, enabling electrical switching between topological states with integer Chern numbers at both integer and fractional moiré fillings.
Learn more: https://t.co/DBZCydKWDI
A new technique using Focused Ion Beam (FIB) processing finely tunes #diamonds for micro-devices, enhancing precision in sensors and #semiconductors.👇
@Funct_diamond@WeAreTandF
https://t.co/oBiGmYNvxS
Making diamonds conductive with #beryllium and #nitrogen doping could create more efficient, high-power electronic devices, a big step up from current tech!👍
Article in the collection: #Diamond and III-Nitrides Wide Bandgap Semiconductor #Materials 👇
https://t.co/JZjfuuYe0W
X-ray photoelectron spectroscopy (XPS) studies on diamond heterojunctions are often flawed. Correcting these issues is key for accurate Valence band offset readings, crucial in semiconductor research.😀
#diamond#semiconductor@Funct_diamond@WeAreTandF
https://t.co/StFnF3lM6z
🥳Happy New Year to our brilliant community of researchers, readers, and partners!
As we step into 2026, we're grateful for a year of groundbreaking discoveries in diamond science. May this new chapter be filled with innovative research and collaborative success.
@Funct_diamond
Researchers introduce new computational tools that can reconstruct the magnetic interactions of atoms close to spin defects using only short measurements that take hours instead of days, enabling faster use of atomic #qubits for #quantum sensing. https://t.co/GnMPVb7CON
Diamond-based nuclear batteries offer long-lasting, stable power. Recent review covers their development and potential future advancements in energy technology.🧐
#diamond#energy@WeAreTandF@Funct_diamond
https://t.co/Djv1F2r6J7