International audienceThis paper presents a review of the properties induced by the presence of hydrogen in monocrystalline borondoped diamond (BDD) and proposes a comparison with results obtained on polycrystalline materials. Hydrogen diffusion, luminescence and electrical properties show the passivation of boron acceptors in diamond by the formation of (B,H) complexes, in both monocrystalline and polycrystalline forms, but at a different level. This behaviour raises open questions concerning the role of structural defects in the passivation of boron impurities by hydrogenation. Based on the assessment of the high thermal stability of (B,H) complexes, this approach leads to a route to provide patterned diamond conductive structures for mic...
Hydrogen plasma treatment of diamond renders the surface p-type, with the carriers emerging with lit...
Hydrogen plasma treatment of diamond renders the surface p-type, with the carriers emerging with lit...
Diamond has many extreme properties that make it an ideal candidate for high performance electronics...
International audienceThis paper presents a review of the properties induced by the presence of hydr...
International audienceThis paper presents a review of the properties induced by the presence of hydr...
International audienceThis paper presents a review of the properties induced by the presence of hydr...
International audienceThis paper presents a review of the properties induced by the presence of hydr...
A homoepitaxial boron-doped diamond single layer is investigated by means of Fourier transformed inf...
International audienceA homoepitaxial boron-doped diamond single layer is investigated by means of F...
A homoepitaxial boron-doped diamond single layer is investigated by means of Fourier transformed inf...
Hydrogen is a key impurity in diamond since it is unintentionally incorporated in all chemical vapor...
Hydrogen surface conductivity has been a controversial subject since its discovery. Initial plasma t...
Hydrogen surface conductivity has been a controversial subject since its discovery. Initial plasma t...
Hydrogen surface conductivity has been a controversial subject since its discovery. Initial plasma t...
Hydrogen plasma treatment of diamond renders the surface p-type, with the carriers emerging with lit...
Hydrogen plasma treatment of diamond renders the surface p-type, with the carriers emerging with lit...
Hydrogen plasma treatment of diamond renders the surface p-type, with the carriers emerging with lit...
Diamond has many extreme properties that make it an ideal candidate for high performance electronics...
International audienceThis paper presents a review of the properties induced by the presence of hydr...
International audienceThis paper presents a review of the properties induced by the presence of hydr...
International audienceThis paper presents a review of the properties induced by the presence of hydr...
International audienceThis paper presents a review of the properties induced by the presence of hydr...
A homoepitaxial boron-doped diamond single layer is investigated by means of Fourier transformed inf...
International audienceA homoepitaxial boron-doped diamond single layer is investigated by means of F...
A homoepitaxial boron-doped diamond single layer is investigated by means of Fourier transformed inf...
Hydrogen is a key impurity in diamond since it is unintentionally incorporated in all chemical vapor...
Hydrogen surface conductivity has been a controversial subject since its discovery. Initial plasma t...
Hydrogen surface conductivity has been a controversial subject since its discovery. Initial plasma t...
Hydrogen surface conductivity has been a controversial subject since its discovery. Initial plasma t...
Hydrogen plasma treatment of diamond renders the surface p-type, with the carriers emerging with lit...
Hydrogen plasma treatment of diamond renders the surface p-type, with the carriers emerging with lit...
Hydrogen plasma treatment of diamond renders the surface p-type, with the carriers emerging with lit...
Diamond has many extreme properties that make it an ideal candidate for high performance electronics...