Field-Induced Electron Emission from Nanoporous Carbons

被引:13
作者
Arkhipov, Alexander [1 ]
Davydov, Sergey [1 ]
Gabdullin, Pavel [1 ]
Gnuchev, Nikolay [1 ]
Kravchik, Alexandr [2 ]
Krel, Svyatoslav [1 ]
机构
[1] St Petersburg State Polytech Univ, St Petersburg 195251, Russia
[2] AF Ioffe Phys Tech Inst, St Petersburg 194021, Russia
关键词
DIAMOND-LIKE CARBON; X-RAY; CARBIDE; MECHANISM; CATHODE; FILMS;
D O I
10.1155/2014/190232
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Influence of fabrication technology on field electron emission properties of nanoporous carbon (NPC) was investigated. Samples of NPC derived from different carbides via chlorination at different temperatures demonstrated similar low-field emission ability with threshold electric field 2-3V/mu m. This property correlated with presence of nanopores with characteristic size 0.5-1.2 nm, determining high values of specific surface area (>800m(2)/g) of the material. Inmost cases, current characteristics of emission were approximately linear in Fowler-Nordheim coordinates (excluding a low-current part near the emission threshold), but the plots' slope angles were in notable disagreement with the known material morphology and electronic properties, unexplainable within the frames of the classical emission theory. We suggest that the actual emission mechanism for NPC involves generation of hot electrons at internal boundaries and that emission centers may be associated with relatively large (20-100 nm) onion-like particles observed in many microscopic images. Such particles can serve two functions: to provide additional "internal" enhancement of the electric field and to inhibit relaxation of hot charge carriers due to the "phonon bottleneck" effect.
引用
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页数:9
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共 48 条
[1]   Enhancement of electron field emission property with silver incorporation into diamondlike carbon matrix [J].
Ahmed, Sk. Faruque ;
Moon, Myoung-Woon ;
Lee, Kwang-Ryeol .
APPLIED PHYSICS LETTERS, 2008, 92 (19)
[2]   Two-process model of electron field emission from nanocarbons: Temperature effect [J].
Altman, IS ;
Pikhitsa, PV ;
Choi, M .
JOURNAL OF APPLIED PHYSICS, 2004, 96 (06) :3491-3493
[3]   Hysteresis of pulsed characteristics of field emission from nanocarbon materials [J].
Arkhipov, A. V. ;
Mishin, M. V. ;
Parygin, I. V. .
SURFACE AND INTERFACE ANALYSIS, 2007, 39 (2-3) :149-154
[4]   On Possible Structure of Field-Induced Electron Emission Centers of Nanoporous Carbon [J].
Arkhipov, A. V. ;
Gabdullin, P. G. ;
Mishin, M. V. .
FULLERENES NANOTUBES AND CARBON NANOSTRUCTURES, 2011, 19 (1-2) :86-91
[5]   Structural degradation mechanism of multiwalled carbon nanotubes in electrically treated field emission [J].
Baik, Chan-Wook ;
Lee, Jeonghee ;
Choi, Jun Hee ;
Jung, Insun ;
Choi, Hye Ran ;
Jin, Yong Wan ;
Kim, Jong Min .
APPLIED PHYSICS LETTERS, 2010, 96 (02)
[6]   REDUCED ELECTRON-PHONON RELAXATION RATES IN QUANTUM-BOX SYSTEMS - THEORETICAL-ANALYSIS [J].
BENISTY, H .
PHYSICAL REVIEW B, 1995, 51 (19) :13281-13293
[7]   Degradation of a CNT-Based Field Emission Cathode due to Ion Sputtering [J].
Bocharov, G. S. ;
Eletskii, A. V. .
FULLERENES NANOTUBES AND CARBON NANOSTRUCTURES, 2012, 20 (4-7) :444-450
[8]   Emissivity of powders prepared from nanoporous carbon [J].
Bondarenko, VB ;
Gabdullin, PG ;
Gnuchev, NM ;
Davydov, SN ;
Korablev, VV ;
Kravchik, AE ;
Sokolov, VV .
TECHNICAL PHYSICS, 2004, 49 (10) :1360-1363
[9]   Performance of nanocrystalline graphite field emitters [J].
Busta, HH ;
Espinosa, RJ ;
Rakhimov, AT ;
Suetin, NV ;
Timofeyev, MA ;
Bressler, P ;
Schramme, M ;
Fields, JR ;
Kordesch, ME ;
Silzars, A .
SOLID-STATE ELECTRONICS, 2001, 45 (06) :1039-1047
[10]   Disorder, clustering, and localization effects in amorphous carbon [J].
Carey, JD ;
Silva, SRP .
PHYSICAL REVIEW B, 2004, 70 (23) :1-8