The effects of Cu and Au ion implantation on the structural and electron field emission (EFE) properties of ultrananocrystalline diamond (UNCD) films were investigated. High electrical conductivity of 186 (Ω•cm)<sup>‑1</sup> and enhanced EFE properties with low turn-on field of 4.5 V/μm and high EFE current density of 6.70 mA/cm<sup>2</sup> have been detected for Au-ion implanted UNCD (Au-UNCD) films that are superior to those of Cu-ion implanted UNCD (Cu-UNCD) ones. Transmission electron microscopic investigations revealed that Au-ion implantation induced a larger proportion of nanographitic phases at the grain boundaries for the Au-UNCD films in addition to the formation of uniformly distributed spherically shaped Au nanoparticles. In con...
[[abstract]]The improvement on the electron field emission (EFE) properties of duplex-structured dia...
[[abstract]]Enhanced electron field emission (EFE) properties for ultrananocrystalline diamond (UNCD...
[[abstract]]In the present work, Au-Si eutectic layer was used to enhance the electrical conductivit...
The effects of Cu and Au ion implantation on the structural and electron field emission (EFE) proper...
The effects of Cu and Au ion implantation on the structural and electron field emission (EFE) proper...
[[abstract]]The effects of Cu and Au ion implantation on the structural and electron field emission ...
[[abstract]]Copper ion implantation and subsequent annealing at 600 °C achieved high electrical cond...
[[abstract]]The effects of B and N ion implantation on structural and electron field emission (EFE) ...
[[abstract]]Fabrication of free-standing/highly conducting ultrananocrystalline diamond (fc-UNCD) fi...
[[abstract]]The effects of N and C ion implantations on modifying the structural and field emission ...
Silver (Ag) ions are implanted in ultrananocrystalline diamond (UNCD) films to enhance the electron ...
[[abstract]]We observe that an Au interlayer markedly enhances the electrical field emission (EFE) p...
[[abstract]]Enhanced electron field emission (EFE) properties for ultrananocrystalline diamond (UNCD...
[[abstract]]Nitrogen (N) ion implantation induced modification on structural and electron field emis...
[[abstract]]Nitrogen (N) ion implantation induced modification on structural and electron field emis...
[[abstract]]The improvement on the electron field emission (EFE) properties of duplex-structured dia...
[[abstract]]Enhanced electron field emission (EFE) properties for ultrananocrystalline diamond (UNCD...
[[abstract]]In the present work, Au-Si eutectic layer was used to enhance the electrical conductivit...
The effects of Cu and Au ion implantation on the structural and electron field emission (EFE) proper...
The effects of Cu and Au ion implantation on the structural and electron field emission (EFE) proper...
[[abstract]]The effects of Cu and Au ion implantation on the structural and electron field emission ...
[[abstract]]Copper ion implantation and subsequent annealing at 600 °C achieved high electrical cond...
[[abstract]]The effects of B and N ion implantation on structural and electron field emission (EFE) ...
[[abstract]]Fabrication of free-standing/highly conducting ultrananocrystalline diamond (fc-UNCD) fi...
[[abstract]]The effects of N and C ion implantations on modifying the structural and field emission ...
Silver (Ag) ions are implanted in ultrananocrystalline diamond (UNCD) films to enhance the electron ...
[[abstract]]We observe that an Au interlayer markedly enhances the electrical field emission (EFE) p...
[[abstract]]Enhanced electron field emission (EFE) properties for ultrananocrystalline diamond (UNCD...
[[abstract]]Nitrogen (N) ion implantation induced modification on structural and electron field emis...
[[abstract]]Nitrogen (N) ion implantation induced modification on structural and electron field emis...
[[abstract]]The improvement on the electron field emission (EFE) properties of duplex-structured dia...
[[abstract]]Enhanced electron field emission (EFE) properties for ultrananocrystalline diamond (UNCD...
[[abstract]]In the present work, Au-Si eutectic layer was used to enhance the electrical conductivit...