1,084
Views
115
CrossRef citations to date
0
Altmetric
Original Articles

Electrical conductivity of amorphous carbon and amorphous hydrogenated carbon

, &
Pages 1255-1266 | Received 18 Sep 1990, Accepted 27 Sep 1990, Published online: 20 Aug 2006

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (6)

P. N. Vishwakarma & S. V. Subramanyam. (2007) Metal–insulator transition in boron-doped amorphous carbon films. Philosophical Magazine 87:6, pages 811-821.
Read now
C. Godet, Sushil Kumar & V. Chu. (2003) Field-enhanced electrical transport mechanisms in amorphous carbon films . Philosophical Magazine 83:29, pages 3351-3365.
Read now
C. Godet. (2001) Hopping model for charge transport in amorphous carbon. Philosophical Magazine B 81:2, pages 205-222.
Read now
A. Helmbold, P. Hammer, J.U. Thiele, K. Rohwer & D. Meissner. (1995) Electrical conductivity of amorphous hydrogenated carbon. Philosophical Magazine B 72:3, pages 335-350.
Read now
F. Demichelis, G. Crovini, C.F. Pirri & E. Tresso. (1993) Infrared vibrational spectra of hydrogenated amorphous and microcrystalline silicon-carbon alloys. Philosophical Magazine B 68:3, pages 329-340.
Read now
F. Demtchelis, C.F. Pirri & E. Tresso. (1993) Degree of crystallinity and electrical transport properties of microcrystalline silicon-carbon alloys. Philosophical Magazine B 67:3, pages 331-346.
Read now

Articles from other publishers (109)

Arul Varman Kesavan, Atul C. Khot, Tukaram D. Dongale, Kyung Rock Son, Praveen C. Ramamurthy & Tae Geun Kim. (2022) Graphite–metal composite electrodes with a tunable work function for use in optoelectronic devices. Journal of Materials Chemistry C 10:41, pages 15358-15366.
Crossref
I. A. Zavidovskiy, O. A. Streletskiy & O. Yu. Nishchak. (2022) Effect of Ion Assistance on the Formation of Composite Carbon–Silver Coatings Obtained by Pulsed-Plasma Deposition. Journal of Surface Investigation: X-ray, Synchrotron and Neutron Techniques 16:5, pages 864-869.
Crossref
Theresa Grünleitner, Alex Henning, Michele Bissolo, Armin Kleibert, Carlos A.F. Vaz, Andreas V. Stier, Jonathan J. Finley & Ian D. Sharp. (2022) Electronically Tunable Transparent Conductive Thin Films for Scalable Integration of 2D Materials with Passive 2D–3D Interfaces. Advanced Functional Materials 32:21, pages 2111343.
Crossref
Georgi Borislavov Hadjichristov & Tzvetan Emilov Ivanov. (2022) Near-Surface Nanostructuring of Polymethylmethacrylate by Silicon Ion Implantation. Journal of Nano Research 72, pages 95-112.
Crossref
Jie Li, Sun J. Kim, Seunghun Han, Yongjae Kim & Heeyeop Chae. (2021) Etching characteristics of hydrogenated amorphous carbon with different sp 2 /sp 3 hybridization ratios in CF 4 /O 2 plasmas . Plasma Processes and Polymers 18:11, pages 2100075.
Crossref
L. Lavagna, R. Nisticò, S. Musso & M. Pavese. (2021) Functionalization as a way to enhance dispersion of carbon nanotubes in matrices: a review. Materials Today Chemistry 20, pages 100477.
Crossref
Michal Delkowski, Christopher T.G. Smith, José V. Anguita & S. Ravi P. Silva. (2021) Increasing the robustness and crack resistivity of high-performance carbon fiber composites for space applications. iScience 24:6, pages 102692.
Crossref
Mauro Giorcelli, Mattia Bartoli, Alessandro Sanginario, Elisa Padovano, Carlo Rosso, Massimo Rovere & Alberto Tagliaferro. (2021) High-Temperature Annealed Biochar as a Conductive Filler for the Production of Piezoresistive Materials for Energy Conversion Application. ACS Applied Electronic Materials 3:2, pages 838-844.
Crossref
Felix Rosenburg, Benjamin Balke, Norbert Nicoloso, Ralf Riedel & Emanuel Ionescu. (2020) Effect of the Content and Ordering of the sp2 Free Carbon Phase on the Charge Carrier Transport in Polymer-Derived Silicon Oxycarbides. Molecules 25:24, pages 5919.
Crossref
Ke Pan, Feng Zou, Marcello Canova, Yu Zhu & Jung-Hyun Kim. (2020) Comprehensive electrochemical impedance spectroscopy study of Si-Based anodes using distribution of relaxation times analysis. Journal of Power Sources 479, pages 229083.
Crossref
Randeep Gabhi, Luca Basile, Donald W. Kirk, Mauro Giorcelli, Alberto Tagliaferro & Charles Q. Jia. (2020) Electrical conductivity of wood biochar monoliths and its dependence on pyrolysis temperature. Biochar 2:3, pages 369-378.
Crossref
Byoung-Sun Lee & Woong-Ryeol Yu. (2020) Electrospun carbon nanofibers as a functional composite platform: a review of highly tunable microstructures and morphologies for versatile applications. Functional Composites and Structures 2:1, pages 012001.
Crossref
So-Yeon Lee, Kyung-Tae Jang, Min-Woo Jeong, Sungtae Kim, Hwanyeol Park, Kuntae Kim, Gun-Do Lee, Miyoung Kim & Young-Chang Joo. (2019) Bonding structure and etching characteristics of amorphous carbon for a hardmask deposited by DC sputtering. Carbon 154, pages 277-284.
Crossref
Yujun Jia, Jinshan Yang, Kewei Wang, Md Atiqur Rahman Chowdhury, Banghao Chen, Yifeng Su, Bill C Nickerson & Chengying Xu. (2019) Aligned carbon nanotube/carbon (CNT/C) composites with exceptionally high electrical conductivity at elevated temperature to 400 °C. Materials Research Express 6:11, pages 116302.
Crossref
Qingbo Wen, Zhaoju Yu, Xingmin Liu, Sebastian Bruns, Xiaowei Yin, Mirva Eriksson, Zhijian James Shen & Ralf Riedel. (2019) Mechanical properties and electromagnetic shielding performance of single-source-precursor synthesized dense monolithic SiC/HfC x N 1−x /C ceramic nanocomposites . Journal of Materials Chemistry C 7:34, pages 10683-10693.
Crossref
Adrian Beda, Haijime Yamada, Aleksandr Egunov, Camélia Matei Ghimbeu, Jean-Pierre Malval, Yukie Saito & Valeriy Luchnikov. (2019) Carbon microtubes derived from self-rolled chitosan acetate films and graphitized by joule heating. Journal of Materials Science 54:16, pages 11345-11356.
Crossref
Xin Jiang, Zhenhui Kang, Xiaoning Guo & Hao ZhuangNianjun Yang & Xin Jiang. 2019. Novel Carbon Materials and Composites. Novel Carbon Materials and Composites 1 33 .
Tommi Palomäki, Miguel A. Caro, Niklas Wester, Sami Sainio, Jarkko Etula, Leena‐Sisko Johansson, Jeon G. Han, Jari Koskinen & Tomi Laurila. (2019) Effect of Power Density on the Electrochemical Properties of Undoped Amorphous Carbon (a‐C) Thin Films. Electroanalysis 31:4, pages 746-755.
Crossref
Max Stelzer, Moritz Jung, Ursula Wurstbauer, Alexander Holleitner & Franz Kreupl. (2019) Highly Reliable Contacts to Silicon Enabled by Low Temperature Sputtered Graphenic Carbon. IEEE Journal of the Electron Devices Society 7, pages 252-260.
Crossref
N. Boubiche, J. El Hamouchi, J. Hulik, M. Abdesslam, C. Speisser, F. Djeffal & F. Le Normand. (2019) Kinetics of graphitization of thin diamond-like carbon (DLC) films catalyzed by transition metal. Diamond and Related Materials 91, pages 190-198.
Crossref
Jingshan S. Du, Peng-Cheng Chen, Brian Meckes, Edward J. Kluender, Zhuang Xie, Vinayak P. Dravid & Chad A. Mirkin. (2018) Windowless Observation of Evaporation-Induced Coarsening of Au–Pt Nanoparticles in Polymer Nanoreactors. Journal of the American Chemical Society 140:23, pages 7213-7221.
Crossref
A.A. Solovyev, K.V. Oskomov, A.S. Grenadyorov & P.D. Maloney. (2018) Preparation of nickel-containing conductive amorphous carbon films by magnetron sputtering with negative high-voltage pulsed substrate bias. Thin Solid Films 650, pages 37-43.
Crossref
Qingbo Wen, Zhaoju Yu, Yeping Xu, Yan Lu, Claudia Fasel, Koji Morita, Olivier Guillon, Gerd Buntkowsky, Emanuel Ionescu & Ralf Riedel. (2018) SiC/Hf y Ta 1−y C x N 1−x /C ceramic nanocomposites with Hf y Ta 1−y C x N 1−x -carbon core–shell nanostructure and the influence of the carbon-shell thickness on electrical properties . Journal of Materials Chemistry C 6:4, pages 855-864.
Crossref
Ye Fan, Alex W. Robertson, Yingqiu Zhou, Qu Chen, Xiaowei Zhang, Nigel D. Browning, Haimei Zheng, Mark H. Rümmeli & Jamie H. Warner. (2017) Electrical Breakdown of Suspended Mono- and Few-Layer Tungsten Disulfide via Sulfur Depletion Identified by in Situ Atomic Imaging . ACS Nano 11:9, pages 9435-9444.
Crossref
Xiao Zeng, Zhanhong Yang, Fengliang Liu, Jun Long, Zhaobin Feng & Maokui Fan. (2017) An in situ recovery method to prepare carbon-coated Zn–Al–hydrotalcite as the anode material for nickel–zinc secondary batteries. RSC Advances 7:70, pages 44514-44522.
Crossref
Alexey Zaikovskii & Sergey Novopashin. (2017) Effects of the arc-discharge parameters on the morphology and the electrical conductivity of the synthesized carbon materials. Materials Today: Proceedings 4:11, pages 11406-11410.
Crossref
Qingbo Wen, Yao Feng, Zhaoju Yu, Dong-Liang Peng, Norbert Nicoloso, Emanuel Ionescu & Ralf Riedel. (2016) Microwave Absorption of SiC/HfC x N 1− x /C Ceramic Nanocomposites with HfC x N 1− x -Carbon Core-Shell Particles . Journal of the American Ceramic Society 99:8, pages 2655-2663.
Crossref
J Krauser, H-G Gehrke, H Hofsäss, J Amani, C Trautmann & A Weidinger. (2015) Electrical conduction of ion tracks in tetrahedral amorphous carbon: temperature, field and doping dependence and comparison with matrix data. New Journal of Physics 17:12, pages 123009.
Crossref
Jinyun Liu, Junjie Wang, Jinwoo Kim, Hailong Ning, Zeng Pan, Sean J. Kelly, Eric S. Epstein, Xingjiu Huang, Jinhuai Liu & Paul V. Braun. (2015) High Full-Electrode Basis Capacity Template-Free 3D Nanocomposite Secondary Battery Anodes. Small 11:47, pages 6265-6271.
Crossref
Ming Fu, Florian Ehrat, Yu Wang, Karolina Z. Milowska, Claas Reckmeier, Andrey L. Rogach, Jacek K. Stolarczyk, Alexander S. Urban & Jochen Feldmann. (2015) Carbon Dots: A Unique Fluorescent Cocktail of Polycyclic Aromatic Hydrocarbons. Nano Letters 15:9, pages 6030-6035.
Crossref
Hao Zhuang, Nianjun Yang, Lei Zhang, Regina Fuchs & Xin Jiang. (2015) Electrochemical Properties and Applications of Nanocrystalline, Microcrystalline, and Epitaxial Cubic Silicon Carbide Films. ACS Applied Materials & Interfaces 7:20, pages 10886-10895.
Crossref
Tetsuya Osaka, Daikichi Mukoyama & Hiroki Nara. (2015) Review—Development of Diagnostic Process for Commercially Available Batteries, Especially Lithium Ion Battery, by Electrochemical Impedance Spectroscopy. Journal of The Electrochemical Society 162:14, pages A2529-A2537.
Crossref
Dingchang Lin, Zhenda Lu, Po-Chun Hsu, Hye Ryoung Lee, Nian Liu, Jie Zhao, Haotian Wang, Chong Liu & Yi Cui. (2015) A high tap density secondary silicon particle anode fabricated by scalable mechanical pressing for lithium-ion batteries. Energy & Environmental Science 8:8, pages 2371-2376.
Crossref
Vitali Brand & Maarten P de Boer. (2014) Oxygen-induced graphitization of amorphous carbon deposit on ohmic switch contacts improves their electrical conductivity and protects them from wear. Journal of Micromechanics and Microengineering 24:9, pages 095029.
Crossref
H. Wang, J.Q. Guo & Y.S. Zhou. (2013) Understanding terahertz optical properties of amorphous carbon thin films. Carbon 64, pages 67-71.
Crossref
P. Hubík, J.J. Mareš, H. Kozak, A. Kromka, B. Rezek, J. Krištofik & D. Kindl. (2012) Transport properties of hydrogen-terminated nanocrystalline diamond films. Diamond and Related Materials 24, pages 63-68.
Crossref
K. A. Seid, J.-C. Badot, O. Dubrunfaut, S. Levasseur, D. Guyomard & B. Lestriez. (2012) Multiscale electronic transport mechanism and true conductivities in amorphous carbon–LiFePO 4 nanocomposites . J. Mater. Chem. 22:6, pages 2641-2649.
Crossref
Pavel Hubík & Jiří J. Mareš. 2013. Thermal analysis of Micro, Nano- and Non-Crystalline Materials. Thermal analysis of Micro, Nano- and Non-Crystalline Materials 371 397 .
J Krauser, A-K Nix, H-G Gehrke, H Hofsäss, C Trautmann & A Weidinger. (2011) Highly conductive ion tracks in tetrahedral amorphous carbon by irradiation with 30 MeV C 60 projectiles . New Journal of Physics 13:8, pages 083023.
Crossref
Jan Philipp Schmidt, Thorsten Chrobak, Moses Ender, Jörg Illig, Dino Klotz & Ellen Ivers-Tiffée. (2011) Studies on LiFePO4 as cathode material using impedance spectroscopy. Journal of Power Sources 196:12, pages 5342-5348.
Crossref
F. Alibart, M. Lejeune, O. Durand Drouhin, K. Zellama & M. Benlahsen. (2010) Influence of disorder on localization and density of states in amorphous carbon nitride thin films systems rich in π-bonded carbon atoms. Journal of Applied Physics 108:5.
Crossref
Pitamber Mahanandia, P. N. Viswakarma, Prasad Vishnu Bhotla, S. V. Subramanyam & Karuna Kar Nanda. (2010) Electron field emission from sp 2-induced insulating to metallic behaviour of amorphous carbon (a-C) films. Bulletin of Materials Science 33:3, pages 215-220.
Crossref
Antonio Madroñero De La Cal, Juan Aguado‐Serrano, Maria Luisa Rojas‐Cervantes, Elena V. Rosa Adame, Belen Sarmiento Marron, Africa Castro Rosende & Roman Nevshupa. (2009) A study of hydrogenated carbon fibers by scanning electron microscopy and confocal laser scanning microscopy. Microscopy Research and Technique 72:6, pages 447-453.
Crossref
P.N. Vishwakarma. (2009) Ac conductivity in boron doped amorphous carbon films. Solid State Communications 149:3-4, pages 115-120.
Crossref
G.B. Hadjichristov, V.K. Gueorguiev, Tz.E. Ivanov, Y.G. Marinov, V.G. Ivanov & E. Faulques. (2008) Silicon ion implanted PMMA for soft electronics. Organic Electronics 9:6, pages 1051-1060.
Crossref
Giovanni Fanchini, Varun Gupta, Adrian B. Mann & Manish Chhowalla. (2008) In Situ Monitoring of Structural Changes in Boron Carbide Under Electric Fields . Journal of the American Ceramic Society 91:8, pages 2666-2669.
Crossref
B.J. Jones, S. Wright, R.C. Barklie, J. Tyas, J. Franks & A.J. Reynolds. (2008) Nanostructure and paramagnetic centres in diamond-like carbon: Effect of Ar dilution in PECVD process. Diamond and Related Materials 17:7-10, pages 1629-1632.
Crossref
F. Alibart, O. Durand Drouhin, M. Lejeune, M. Benlahsen, S.E. Rodil & E. Camps. (2008) Evolution of the opto-electronic properties of amorphous carbon films as a function of nitrogen incorporation. Diamond and Related Materials 17:6, pages 925-930.
Crossref
A. D. Bozhko, E. A. Kataeva, T. Takagi, M. G. Mikheev & M. B. Guseva. (2007) Electron transport in amorphous metal-carbon nanocomposite films. Moscow University Physics Bulletin 62:4, pages 229-232.
Crossref
Ryuichiro Maruyama. (2007) The electrical transport properties of C60 treated by argon plasma. Journal of Molecular Structure 831:1-3, pages 10-17.
Crossref
P. N. Vishwakarma & S. V. Subramanyam. (2006) Hopping conduction in boron doped amorphous carbon films. Journal of Applied Physics 100:11.
Crossref
Yasuhiko Hayashi, N. Kamada, T. Soga & T. Jimbo. (2006) Characterization of amorphous carbon nitride by bottom-gated thin-film structure. Diamond and Related Materials 15:4-8, pages 1015-1018.
Crossref
Giovanni Fanchini & Alberto Tagliaferro. 2006. Carbon. Carbon 95 105 .
Somnath Bhattacharyya & S.R.P. Silva. (2005) Transport properties of low-dimensional amorphous carbon films. Thin Solid Films 482:1-2, pages 94-98.
Crossref
E. Staryga & G.W. Bąk. (2005) Relation between physical structure and electrical properties of diamond-like carbon thin films. Diamond and Related Materials 14:1, pages 23-34.
Crossref
G. Lazar, K. Zellama, M. Clin & C. Godet. (2004) Band tail hopping conduction mechanism in highly conductive amorphous carbon nitride thin films. Applied Physics Letters 85:25, pages 6176-6178.
Crossref
A Bozhko, T Takagi, T Takeno & M Shupegin. (2004) Electron transport in W-containing amorphous carbon–silicon diamond-like nanocomposites. Journal of Physics: Condensed Matter 16:46, pages 8447-8458.
Crossref
Somnath Bhattacharyya. (2004) Mechanism of high -type conduction in nitrogen-doped nanocrystalline diamond . Physical Review B 70:12.
Crossref
E. Staryga, G.W. Bąk & M. Dłużniewski. (2004) Some electrical properties of diamond-like carbon thin films. Vacuum 74:2, pages 325-330.
Crossref
Sushil Kumar & C. Godet. (2004) Electronic transport in amorphous carbon nitride (a-CNx:H) and carbon oxide (a-COx:H) films. Solid State Communications 130:5, pages 331-334.
Crossref
W.Y. Luk, O. Kutsay, I. Bello, Y. Lifshitz, C.W. Lam, X. Meng & S.T. Lee. (2004) Transformation of semiconducting tetrahedral carbon films to semimetal nanocomposite materials by ion implantation. Diamond and Related Materials 13:4-8, pages 1427-1432.
Crossref
J. D. Carey, R. D. Forrest, C. H. Poa & S. R. P. Silva. (2003) Role of nanostructure on electron field emission from amorphous carbon thin films. Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures Processing, Measurement, and Phenomena 21:4, pages 1633-1639.
Crossref
R. U. A. Khan, S. R. P. Silva & R. A. C. M. M. van Swaaij. (2003) Polymeric amorphous carbon as p -type window within amorphous silicon solar cells . Applied Physics Letters 82:22, pages 3979-3981.
Crossref
N. F. Fahim, N. Kojima, M. Yamaguchi, Y. Ohshita, B. N. Barsoum & A. E. Eid. (2003) Temperature dependence of electron spin resonance and electrical conductivity in P+-implanted C60 films and their derivatives. Journal of Applied Physics 93:5, pages 2671-2675.
Crossref
C Godet. (2003) Physics of bandtail hopping in disordered carbons. Diamond and Related Materials 12:2, pages 159-165.
Crossref
S.R.P Silva & J.D Carey. (2003) Enhancing the electrical conduction in amorphous carbon and prospects for device applications. Diamond and Related Materials 12:2, pages 151-158.
Crossref
T. Takeno, T. Takagi, A. Bozhko, M. Shupegin & T. Sato. (2011) Metal-containing diamond-like carbon-silicon nanocomposite films as temperature sensors. MRS Proceedings 785.
Crossref
C. Godet. (2002) Electronic Localization and Bandtail Hopping Charge Transport. physica status solidi (b) 231:2, pages 499-511.
Crossref
C. Godet, N. M. J. Conway, J. E. Bourée, K. Bouamra, A. Grosman & C. Ortega. (2002) Structural and electronic properties of electron cyclotron resonance plasma deposited hydrogenated amorphous carbon and carbon nitride films. Journal of Applied Physics 91:7, pages 4154-4162.
Crossref
G. Fanchini, A. Tagliaferro, D. Dasgupta, E. Laurenti, A.C. Ferrari, K.B.K. Teo, W.I. Milne & J. Robertson. (2002) Low-temperature investigation of paramagnetic centres in tetrahedral amorphous carbon deposited by S-bend FCVA. Journal of Non-Crystalline Solids 299-302, pages 840-845.
Crossref
C Godet. (2002) Variable range hopping revisited: the case of an exponential distribution of localized states. Journal of Non-Crystalline Solids 299-302, pages 333-338.
Crossref
G. Fanchini, S.C. Ray, A. Tagliaferro & E. Laurenti. (2002) Paramagnetic centres and microstructure of reactively sputtered amorphous carbon nitride thin films. Diamond and Related Materials 11:3-6, pages 1143-1148.
Crossref
S.R.P. Silva, J.D. Carey, R.U.A. Khan, E.G. Gerstner & J.V. Anguita. 2002. Handbook of Thin Films. Handbook of Thin Films 403 506 .
A. Ilie, A. C. Ferrari, T. Yagi, S. E. Rodil, J. Robertson, E. Barborini & P. Milani. (2001) Role of sp2 phase in field emission from nanostructured carbons. Journal of Applied Physics 90:4, pages 2024-2032.
Crossref
R. U. A. Khan, J. D. Carey, S. R. P. Silva, B. J. Jones & R. C. Barklie. (2001) Electron delocalization in amorphous carbon by ion implantation. Physical Review B 63:12.
Crossref
R.U.A. Khan & S.R.P. Silva. (2001) A review of the effects of carbon self-implantation into amorphous carbon. Diamond and Related Materials 10:2, pages 224-229.
Crossref
A. Ilie. (2001) Electronic transport, photoconductivity and photoluminescence in amorphous carbons. Diamond and Related Materials 10:2, pages 207-215.
Crossref
M. Tabbal, S. Isber, T. C. Christidis, M. A. El Khakani & M. Chaker. (2000) Effect of deposition temperature on the optical transmission and paramagnetic centers in pulsed laser deposited amorphous silicon carbide thin films. Journal of Applied Physics 88:9, pages 5127-5133.
Crossref
J. D. Carey, R. D. Forrest, R. U. A. Khan & S. R. P. Silva. (2000) Influence of sp2 clusters on the field emission properties of amorphous carbon thin films. Applied Physics Letters 77:13, pages 2006-2008.
Crossref
E. B. Maiken & P. Taborek. (2000) Amorphous carbon films deposited from carbon ions extracted from a discharge in fullerene vapor. Journal of Applied Physics 87:9, pages 4223-4229.
Crossref
S.L. Maeng, S. Uchikoga, F.J. Clough, A. Tagliaferro, A.J. Flewitt, J. Robertson & W.I. Milne. (2000) A carbon based bottom gate thin film transistor. Diamond and Related Materials 9:3-6, pages 805-810.
Crossref
Elżbieta Staryga. (1999) Structure and Some Electrical Properties of Amorphous Diamond-like Carbon Films fn1 fn1Communicated by Prof. Mitura.. Chaos, Solitons & Fractals 10:12, pages 2075-2086.
Crossref
M. Koós, S.H.S. Moustafa, E. Szilágyi & I. Pócsik. (1999) Non-Arrhenius temperature dependence of direct-current conductivity in amorphous carbon (a-C:H) above room temperature. Diamond and Related Materials 8:10, pages 1919-1926.
Crossref
Chang Hyun Lee & Koeng Su Lim. (1999) Carrier transport through boron-doped amorphous diamond-like carbon p layer of amorphous silicon based p–i–n solar cells . Applied Physics Letters 75:4, pages 569-571.
Crossref
Norikazu Kobayashi, Toshiaki Enoki, Chiaki Ishii, Katsumi Kaneko & Morinobu Endo. (1998) Gas adsorption effects on structural and electrical properties of activated carbon fibers. The Journal of Chemical Physics 109:5, pages 1983-1990.
Crossref
S.H Moustafa, M Koós & I Pócsik. (1998) DC electrical properties of amorphous carbon with different bonding hybridization. Journal of Non-Crystalline Solids 227-230, pages 1087-1091.
Crossref
J. P. Sullivan, T. A. Friedmann, R. G. Dunn, E. B. Stechel, P. A. Schultz, M. P. Siegal & N. Missert. (2011) The Electronic Transport Mechanism in Amorphous Tetrahedrally-Coordinated Carbon Films. MRS Proceedings 498.
Crossref
T.-M. John, J. Bläsing, P. Veit & T. Drüsedau. (2011) Crystallization of Germanium-Carbon Alloys - Structure and Electronic Transport. MRS Proceedings 467.
Crossref
J. Besold, R. Thielsch, N. Matz, C Frenzel, R. Born & A. Möbius. (1997) Surface and bulk properties of electron beam evaporated carbon films. Thin Solid Films 293:1-2, pages 96-102.
Crossref
M. Dłużniewski, P. Stępnik, E. Staryga, G. W. Bak & S. Mitura. 1997. Diamond Based Composites. Diamond Based Composites 277 284 .
O. Alvarez-Fregoso, J. G. Mendoza-Alvarez, O. Zelaya-Angel & F. Morales. (1996) Structure and electrical properties of CdNiTe nanostructured thin films. Journal of Applied Physics 80:5, pages 2833-2837.
Crossref
M Basu, AB Maity, B Maiti, S Chaudhuri & AK Pal. (1996) Photoconductivity of amorphous hydrogenated carbon films prepared by plasma CVD of acetylene. Vacuum 47:9, pages 1047-1051.
Crossref
Kwang Bae Lee, Duck Jung Lee & Yong Woo Shin. (2011) Effect of Reactive Nitrogen Gas on the Electrical and Optical Properties of Rf-Sputtered Amorphous Carbon Films. MRS Proceedings 446.
Crossref
E. B. Maiken & P. Taborek. (1995) Ion-beam deposition of hard, amorphous carbon from a fullerene discharge. Journal of Applied Physics 78:1, pages 541-549.
Crossref
Richard Lossy, David L. Pappas, Ronnen A. Roy, James P. Doyle, Jerome J. Cuomo & John Bruley. (1995) Properties of amorphous diamond films prepared by a filtered cathodic arc. Journal of Applied Physics 77:9, pages 4750-4756.
Crossref
C. Ronning, U. Griesmeier, M. Gross, H.C. Hofsäss, R.G. Downing & G.P. Lamaze. (1995) Conduction processes in boron- and nitrogen-doped diamond-like carbon films prepared by mass-separated ion beam deposition. Diamond and Related Materials 4:5-6, pages 666-672.
Crossref
F. Demichelis, X.F. Rong, S. Schreiter, A. Tagliaferro & C. De Martino. (1995) Deposition and characterization of amorphous carbon nitride thin films. Diamond and Related Materials 4:4, pages 361-365.
Crossref
Francesca Demichelis, Steffen Schreiter & Alberto Tagliaferro. (1995) Photoluminescence in a -C:H films . Physical Review B 51:4, pages 2143-2147.
Crossref
Chan-Chiung Liu, A.B. Walters & M.A. Vannice. (1995) Measurement of electrical properties of a carbon black. Carbon 33:12, pages 1699-1708.
Crossref
Giuseppe Compagnini & Lucia Calcagno. (1994) Structural disorder in ion irradiated carbon materials. Materials Science and Engineering: R: Reports 13:5-6, pages 193-263.
Crossref
E. Ech-chamikh, E.L. Ameziane, M. Azizan, A. Bennouna, J.L. Fave, J. Cernogora, Y. Bounouh & M.L. Théye. (1994) Structural, electrical and optical properties of RF sputtered a-C films. Solar Energy Materials and Solar Cells 33:4, pages 443-452.
Crossref
E. Ech-chamikh, E.L. Ameziane, A. Bennouna, M. Azizan, Y. Bounouh, M.L. Thèye, J. Cernogora & J.L. Faye. (1994) Optical and structural properties of RF sputtered a-C:H films. Solar Energy Materials and Solar Cells 33:3, pages 361-368.
Crossref
F. Demichelis, C. De Martino, A. Tagliaferro & M. Fanciulli. (1994) Temperature dependence analysis of the electron paramagnetic resonance signal and electrical conductivity in a-C and a-C:H. Diamond and Related Materials 3:4-6, pages 844-848.
Crossref
D. Dasgupta, C. De Martino, F. Demichelis & A. Tagliaferro. (1993) The role of π and π gaussian-like density-of-states bands in the interpretation of the physical properties of a-C and a-C:H films. Journal of Non-Crystalline Solids 164-166, pages 1147-1150.
Crossref
O. Stenzel, M. Vogel, S. Pönitz, R. Petrich, T. Wallendorf, C. V. Borczyskowski, F. Rozploch, Z. Krasilnik & N. Kalugin. (1993) The effect of nitrogenation on the electrical properties of amorphous hydrogenated carbon layers. Physica Status Solidi (a) 140:1, pages 179-188.
Crossref
M. Vogel, O. Stenzel, R. Petrich, G. Schaarschmidt & W. Scharff. (1993) The position of the fundamental absorption edge and activation energies for thermally activated electrical conductivity in amorphous carbon layers. Thin Solid Films 227:1, pages 74-89.
Crossref
F. Demichelis, C.F. Pirri, A. Tagliaferro, G. Benedetto, L. Boarino, R. Spagnolo, E. Dunlop, J. Haupt & W. Gissler. (1993) Mechanical and thermophysical properties of diamond-like carbon (DLC) films with different ratios. Diamond and Related Materials 2:5-7, pages 890-892.
Crossref
H.C. hofsäss, J. Biegel, C. Ronning, R.G. Downing & G.P. Lamaze. (2011) Characterization of Doped Diamondlike Carbon Films and Multilayers. MRS Proceedings 316.
Crossref
F. Demichelis, G. Crovini, c. Osenga, C. F. Pirri, E. Tresso & L. Boarino. (2011) Crystallinity and Optoelectronic Properties of μc-SiC:H. MRS Proceedings 283.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.