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[HTML][HTML] Surface transfer do** of diamond: A review
Ultra-wide bandgap materials show great promise as a solution to some of the limitations of
current state of the art semiconductor technology. Among these, diamond has exhibited …
current state of the art semiconductor technology. Among these, diamond has exhibited …
CVD diamond—Research, applications, and challenges
Diamond is a unique material that often exhibits extreme properties compared to other
materials. Discovered about 30 years ago, the use of hydrogen in plasma-enhanced …
materials. Discovered about 30 years ago, the use of hydrogen in plasma-enhanced …
A perspective on the electro-thermal co-design of ultra-wide bandgap lateral devices
Fundamental research and development of ultra-wide bandgap (UWBG) semiconductor
devices are under way to realize next-generation power conversion and wireless …
devices are under way to realize next-generation power conversion and wireless …
Progress toward diamond power field‐effect transistors
MW Geis, TC Wade, CH Wuorio… - … status solidi (a), 2018 - Wiley Online Library
Diamond's properties (highest thermal conductivity, high hole & electron mobilities, & high
electric breakdown field) predict that diamond field‐effect transistors (FETs) will have …
electric breakdown field) predict that diamond field‐effect transistors (FETs) will have …
Centimeter-Scale Synthesis of Ultrathin Layered MoO3 by van der Waals Epitaxy
We report on the large-scale synthesis of highly oriented ultrathin MoO3 layers using a
simple and low-cost atmospheric pressure, van der Waals epitaxy growth on muscovite mica …
simple and low-cost atmospheric pressure, van der Waals epitaxy growth on muscovite mica …
Oxidized Si terminated diamond and its MOSFET operation with SiO2 gate insulator
W Fei, T Bi, M Iwataki, S Imanishi… - Applied Physics …, 2020 - pubs.aip.org
During selective epitaxial growth of diamond through SiO 2 masks, silicon terminations were
formed on a diamond surface by replacing oxygen terminations under the masks. The high …
formed on a diamond surface by replacing oxygen terminations under the masks. The high …
[HTML][HTML] Hydrogen sulfide sensors based on PANI/f-SWCNT polymer nanocomposite thin films prepared by electrochemical polymerization
Hydrogen sulfide (H 2 S) gas sensors in the form of thin films based on polyaniline (PAN)
incorporated with various concentrations of functionalized single wall carbon nanotubes (f …
incorporated with various concentrations of functionalized single wall carbon nanotubes (f …
Neutral silicon vacancy centers in undoped diamond via surface control
Neutral silicon vacancy centers (SiV 0) in diamond are promising candidates for quantum
applications; however, stabilizing SiV 0 requires high-purity, boron-doped diamond, which is …
applications; however, stabilizing SiV 0 requires high-purity, boron-doped diamond, which is …
Electronic band offset in a diamond| cBN| diamond system for modulation do**
Diamond is a material with promising electronics applications but with challenges in
effective do**. Cubic boron nitride (cBN), due to its similar lattice structure, is ideal for …
effective do**. Cubic boron nitride (cBN), due to its similar lattice structure, is ideal for …
Gas-sensing performance of In2O3@ MoO3 hollow core-shell nanospheres prepared by a two-step hydrothermal method
Core-shell semiconductor nanostructures can be suitable for high-performance gas sensors
due to their unique structural features. In this study, In 2 O 3@ MoO 3 core-shell hollow …
due to their unique structural features. In this study, In 2 O 3@ MoO 3 core-shell hollow …