International audienceDifferent metals W, Al, Ni and Cr were evaluated as Schottky contacts on the same p-type lightly boron doped homoepitaxial diamond layer. The current-voltage (I-V) characteristics, the series resistance and the thermal stability are discussed in the range of RT to 625 K for all Schottky devices. High current densities close to 3.2 kA/cm2 are displayed and as the series resistance decreases with increasing temperature, proving the potential of diamond for high power and high temperature devices. The thermal stability of metal/diamond interface investigated with regards to the Schottky barrier height (SBH) and ideality factor n fluctuations indicated that Ni and W are thermally stable in the range of RT to 625 K. Current...
International audienceThe electrical properties of Schottky contacts on the (100) surface of Boron d...
International audienceOwing to its outstanding electro-thermal properties, such as the highest therm...
International audienceDiamond is a very promising material for power electronics and electrical ener...
International audienceDifferent metals W, Al, Ni and Cr were evaluated as Schottky contacts on the s...
Different metals W, Al, Ni and Cr were evaluated as Schottky contacts on the same p-type lightly bor...
International audienceDifferent metals W, Al, Ni and Cr were evaluated as Schottky contacts on the s...
Diamond as wide band-gap material is promising for high-voltage, high-power, high-frequency, and hig...
A review of diamond-metal contacts is presented with reference to reported values of interfacial pot...
Diamond as wide band-gap material is promising for high-voltage, high-power, high-frequency, and hig...
A review of diamond-metal contacts is presented with reference to reported values of interfacial pot...
International audienceIn this paper, we present current-voltage characteristics of vertical and pseu...
International audienceIn this paper, we present current-voltage characteristics of vertical and pseu...
International audienceIn this paper, we present current-voltage characteristics of vertical and pseu...
International audienceIn this paper, we present current-voltage characteristics of vertical and pseu...
International audienceIn this paper, we present current-voltage characteristics of vertical and pseu...
International audienceThe electrical properties of Schottky contacts on the (100) surface of Boron d...
International audienceOwing to its outstanding electro-thermal properties, such as the highest therm...
International audienceDiamond is a very promising material for power electronics and electrical ener...
International audienceDifferent metals W, Al, Ni and Cr were evaluated as Schottky contacts on the s...
Different metals W, Al, Ni and Cr were evaluated as Schottky contacts on the same p-type lightly bor...
International audienceDifferent metals W, Al, Ni and Cr were evaluated as Schottky contacts on the s...
Diamond as wide band-gap material is promising for high-voltage, high-power, high-frequency, and hig...
A review of diamond-metal contacts is presented with reference to reported values of interfacial pot...
Diamond as wide band-gap material is promising for high-voltage, high-power, high-frequency, and hig...
A review of diamond-metal contacts is presented with reference to reported values of interfacial pot...
International audienceIn this paper, we present current-voltage characteristics of vertical and pseu...
International audienceIn this paper, we present current-voltage characteristics of vertical and pseu...
International audienceIn this paper, we present current-voltage characteristics of vertical and pseu...
International audienceIn this paper, we present current-voltage characteristics of vertical and pseu...
International audienceIn this paper, we present current-voltage characteristics of vertical and pseu...
International audienceThe electrical properties of Schottky contacts on the (100) surface of Boron d...
International audienceOwing to its outstanding electro-thermal properties, such as the highest therm...
International audienceDiamond is a very promising material for power electronics and electrical ener...