[[abstract]]A diamond-based nano-carbon composite (d/NCC) material, which contains needle-like diamond grains encased with the nano-graphite layers, was synthesized at low substrate temperature via a bias enhanced growth process using CH4/N2 plasma. Such a unique granular structure renders the d/NCC material very conductive (σ = 714.8 S/cm), along with superior electron field emission (EFE) properties (E0 = 4.06 V/μm and Je = 3.18 mA/cm2) and long lifetime (τ = 842 min at 2.41 mA/cm2). Moreover, the electrical conductivity and EFE behavior of d/NCC material can be tuned in a wide range that is especially useful for different kind of applications.[[notice]]補正完
We review the principles of formation, physical properties, and current or envisaged applications fo...
Ultrananocrystalline diamond is a unique form of carbon with grain sizes in the 3–5 nm region. This ...
[[abstract]]Ultra-nano-crystalline diamond (UNCD) nano-emitters were prepared by coating UNCD films ...
[[abstract]]Needle-like diamond grains encased in nano-graphitic layers are an ideal granular struct...
[[abstract]]Electron field emission properties of diamond films synthesized by microwave CVD were ex...
[[abstract]]This Feature Article gives an account of the different pieces of work conducted by vario...
[[abstract]]Fabrication of free-standing/highly conducting ultrananocrystalline diamond (fc-UNCD) fi...
[[abstract]]The enhancement of the plasma illumination characteristics of capacitive-type plasma dev...
[[abstract]]For the purpose of improving the electron field emission properties of ultra-nanocrystal...
This paper summarizes our research related to Q-carbon and Q-BN and direct conversion of carbon into...
Consisted of dense amorphous carbon or hydrocarbon, diamond-like carbon (DLC) mechanical properties ...
[[abstract]]The electron field emission (EFE) properties of microcrystalline diamond (MCD) films wer...
[[abstract]]Hybrid diamond materials (HBDs) were synthesized using a two-step bias enhanced nucleati...
The origin of low threshold field-emission (threshold field 1.25 V/μm) in nanocrystalline diamond-li...
[[abstract]]Field emission characteristics of ultra-nanocrystalline diamond (UNCD) have recently cau...
We review the principles of formation, physical properties, and current or envisaged applications fo...
Ultrananocrystalline diamond is a unique form of carbon with grain sizes in the 3–5 nm region. This ...
[[abstract]]Ultra-nano-crystalline diamond (UNCD) nano-emitters were prepared by coating UNCD films ...
[[abstract]]Needle-like diamond grains encased in nano-graphitic layers are an ideal granular struct...
[[abstract]]Electron field emission properties of diamond films synthesized by microwave CVD were ex...
[[abstract]]This Feature Article gives an account of the different pieces of work conducted by vario...
[[abstract]]Fabrication of free-standing/highly conducting ultrananocrystalline diamond (fc-UNCD) fi...
[[abstract]]The enhancement of the plasma illumination characteristics of capacitive-type plasma dev...
[[abstract]]For the purpose of improving the electron field emission properties of ultra-nanocrystal...
This paper summarizes our research related to Q-carbon and Q-BN and direct conversion of carbon into...
Consisted of dense amorphous carbon or hydrocarbon, diamond-like carbon (DLC) mechanical properties ...
[[abstract]]The electron field emission (EFE) properties of microcrystalline diamond (MCD) films wer...
[[abstract]]Hybrid diamond materials (HBDs) were synthesized using a two-step bias enhanced nucleati...
The origin of low threshold field-emission (threshold field 1.25 V/μm) in nanocrystalline diamond-li...
[[abstract]]Field emission characteristics of ultra-nanocrystalline diamond (UNCD) have recently cau...
We review the principles of formation, physical properties, and current or envisaged applications fo...
Ultrananocrystalline diamond is a unique form of carbon with grain sizes in the 3–5 nm region. This ...
[[abstract]]Ultra-nano-crystalline diamond (UNCD) nano-emitters were prepared by coating UNCD films ...