Publication | Open Access
Zr/oxidized diamond interface for high power Schottky diodes
162
Citations
28
References
2014
Year
Diamond-like CarbonElectrical EngineeringSemiconductor DeviceDiamond InterfaceEngineeringPhysicsDiamond DiodesNanoelectronicsElectronic EngineeringCubic Boron NitrideApplied PhysicsIb SubstratePower Semiconductor DevicePower ElectronicsMicroelectronicsOptoelectronicsPseudo-vertical Architecture
High forward current density of 103 A/cm2 (at 6 V) and a breakdown field larger than 7.7 MV/cm for diamond diodes with a pseudo-vertical architecture, are demonstrated. The power figure of merit is above 244 MW/cm2 and the relative standard deviation of the reverse current density over 83 diodes is 10% with a mean value of 10−9 A/cm2. These results are obtained with zirconium as Schottky contacts on the oxygenated (100) oriented surface of a stack comprising an optimized lightly boron doped diamond layer on a heavily boron doped one, epitaxially grown on a Ib substrate. The origin of such performances are discussed.
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