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DAFTAR PUSTAKA

Asano, H.; Muraki, S.; Endo, H.; Bandow, S.; Iijima, S. Strong magnetism

observed in carbon nanoparticles produced by the laser vaporization of a

carbon pellet in hydrogen-containing Ar balance gas. J. Phys. Condens.

Matt. 2010, 22, 1–6.

Balandin, A.A., S. Ghosh, W. Bao, I. Calizo, D. Teweldebrhan, F. Miao, and C.N.

Lau. Superior Thermal Conductivity of Single-Layer Graphene. Nano

Letters 2008, 8, 3, 902-907.

Braga, S.F., V.R. Coluci, S.B. Legoas, R. Giro, D.S. Galvão, and R.H. Baughman.

Structure and Dynamics of Carbon Nanoscrolls. Nano Letters 2004, 4, 5,

881-884.

Chen, Humao and Guangchao Zhao. Nanocomposite of polimeried ionic liquid

and graphene used as modifier for direct electrochemistry of cytochrome c

and nitric oxide biosensing. Journal Solid State Electrochemical 2012,

3289-3297.

Chen, Yichen. Graphene Synthesis and Assembly for Graphene Actuators.

(Desertation): University of Florida 2012.

Chung, D.D.L. Review Graphite. Journal of Materials Science 2002, 37, 8,

1475-1489.

Cousin, C.S.G. Formal elasticity of four carbon allotropes: I. The inner elastic

constants, internal strain tensors, and zone-centre optic mode frequencies

and their pressure dependences. Journal of Physics: Condensed Matter

2002, 14, 20, 5091-5113.

Daenen, M., de Fouw, R. D., Hamers, B., Janssen, P. G. A., Schoutedon, K. and

Veld, M. A. J. The Wondrous World of Carbon Nanotubes. Academic Press.

Eindhoven University of Technology 2003. Available source:

(2)

Ding, L.H.; Olesik, S.V. Carbon microbeads produced through synthesis and

pyrolysis of poly(1,8-dibutyl-1,3,5,7-octatetrayne). Chem. Mater. 2005, 17,

2353–2360.

Ding, L.H.; Olesik, S.V. Synthesis of polymer nanospheres and carbon

nanospheres using the monomer 1,8-dihydroxymethyl-1,3,5,7-octatetrayne.

Nano Lett. 2004, 4, 2271–2276.

Dominko, R.; Gaberscek, M.; Drofenik, J.; Bele, M.; Jamnik, J. Influence of

carbon black distribution on performance of oxide cathodes for Li ion

batteries. Electrochim. Acta 2003, 48, 3709–3716.

Ewels, C.P. and M. Glerup. Nitrogen Doping in Carbon Nanotubes. Journal of

Nanoscience and Nanotechnology 2005, 5, 9, 1345-1363.

Frescativagen, Lilla. Journal The royal Society of Chemistry. chem.commun, The

royal swedish academy of science 2010, 1-10.

Geim, A.K. and K.S. Novoselov. The rise of graphene. Nature Materials 2007, 6,

3, 183-191.

Geim, A.K. and P. Kim. Carbon Wonderland. Scientific American 2008, 298.

Gherghel, L.; Kubel, C.; Lieser, G.; Rader, H.J.; Mullen, K. Pyrolysis in the mesophase: A chemist’s approach toward preparing carbon nano- and microparticles. J. Am. Chem. Soc. 2002, 124, 13130–13138.

Gonugunta, P. Synthesis and Characterization of Biobased Carbon Nanoparticles

from Lignin. (Thesis): The University of Guelph 2012.

Hsu, W.K.; Terrones, M.; Hare, J.P.; Terrones, H.; Kroto, H.W.; Walton,

D.R.M. Electrolytic formation of carbon nanostructures. Chem. Phys. Lett.

1996, 262, 161–166.

J. Gallego, G. Sierra, F. Mondragon, J. Barrault, D. C. Batiot. Synthesis of

MWCNTs and hydrogen from ethanol catalytic decomposition over a

Ni/La2O3 catalyst produced by the reduction of LaNiO3. Appl. Catal. A:

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J. Lu, J. Yang; J. Wang; A. Lim; S. Wang; K. P. Loh. One-pot synthesis of

fluorescent carbon nanoribbons, nanoparticles, and graphene by the

exfoliation of graphite in ionic liquids. ACS Nano. 2009, 3, 2367-2375.

Jan, P., et al. Methods for carbon nanotubes synthesis—review. Journal of Materials Chemistry 2011, 21, 15872-15884.

Jang, J.; Oh, J.H.; Stucky, G.D. Fabrication of ultrafine conducting polymer and

graphite nanoparticles. Angew. Chem. Int. Ed. 2002, 41, 4016–4019. Kalyoncu, Rustu S. Graphite. U.S. Geological Survey Minerals Book, 2000,

35.1-35.4.

Kannan, B. and Marko B. Chemically Functionalized Carbon nanotubes. Small

2005, 180-192.

Kelly, B.T. Physics of graphite. 1981: Applied Science Publishers.

Kuchibhatla, S., Karakoti, A. S., Seal, S. Hierarchical assembly of inorganic

nanostructure building blocks to octahedral superstructures – a true template-free self-assembly. Nanotechnology 2007, 18.

L. S. Ying, M. A. M. Salleh, H. M. Yusoff, S. B. A. Rashid, J. A. Razak,

"Continuous production of carbon nanotubes– a review. J. Ind. and Eng. Chem. 2011, 17, 3, 367-376.

Laforgue, A.; Simon, P.; Fauvarque, J.F.; Mastragostino, M.; Soavi, F.; Sarrau,

J.F.; Lailler, P.; Conte, M.; Rossi, E.; Saguatti, S. Activated

carbon/conducting polymer hybrid supercapacitors. J Electrochem. Soc.

2003, 150, A645–A651.

Leary, F. Liquefied petroleum gas: gasfitting. 1st Ed. Victoria: Wike and company

limited 1980.

Lee, C., X. Wei, J.W. Kysar, and J. Hone. Measurement of the Elastic Properties

and Intrinsic Strength of Monolayer Graphene. Science 2008, 321,5887,

385-388.

Li, H.T.; He, X.D.; Liu, Y.; Huang, H.; Lian, S.Y.; Lee, S.T.; Kang, Z.H.

(4)

Linares, R.C. and P.J. Doering. System And Method For Producing Synthetic

Diamond US Patent 2003. 6582513.

Lu, Y., Li, J., Han, J.,Binder, C., Partridge C., and Meyyappan, M. Room

temperature methane detection using palladium loaded single-walled carbon

nanotubes sensors. Chemical Physical Letters 2004, 391, 344-348.

Luciano, A.M. and Jose, M.R. A Multi-Step Treatment to Effective Purification of

Single-walled Carbon nanotubes. Carbon 2006, 44, 3293-3301.

M. Kapil, E. I. Sunny, M. Meyyappan, and F. Rosemary. Coal as a carbon source

for carbon nanotube synthesis. Carbon 2012, 50, 8, 2679-2690.

Mansurov, Z. Soot and Nanomaterials Synthesis in the Flame. Journal of

Materials Science and Chemical Engineering. 2014, 2, 1-6.

Nanda, G.H. et al. Polymer nanocomposites based on functionalized carbon

nanotubes. Progress in Polymer Science 2010, 35, 7, 837-86.

Néabo, J.R.; Gagné, S.R.; Carrière, C.V.; Morin, J.F. Soluble conjugated

one-dimensional nanowires prepared by topochemical polymerization of a

butadiynes-containing star-shaped molecule in the xerogel state. Langmuir

2013, 29, 3446–3452.

Novoselov, K.S., A.K. Geim, S.V. Morozov, D. Jiang, Y. Zhang, S.V. Dubonos,

I.V. Grigorieva, and A.A. Firsov. Electric Field Effect in Atomically Thin

Carbon Films. Science 2004. 306, 5696, 666-669.

Novoselov, K.S., D. Jiang, F. Schedin, T.J. Booth, V.V. Khotkevich, S.V.

Morozov, and A.K. Geim. Two-dimensional atomic crystals. Proc. Natl

Acad. Sci. USA 2005, 102, 30.

Nur, A., dkk. Sintesis dan purifikasi carbon nanotube dari etanol. Ekuilibrium

2008, 7 (1).

O. Shenderova; V. Zhirnov; D. Brenner. Carbon nanostructures. Critical reviews

in solid state and mateial sciences. 2002, 27, 227-356.

Peter, J.H. Carbon Nanotube Science: Synthesis, Properties, and Applications.

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Pan, D., et. al. Blue Fluorescent Carbon Thin Films Fabricated from

Dodecylaminecapped Carbon Nanoparticles. The Royal Society of

Chemistry 2011.

Purkayastha, B. and Kansal P. K. An experimental study HC290 and a

commercial liquefied petroleum gas (LPG) mix as suitable replacements for

HCFC22. International journal of refrigeration 1998, 21 (1), 3-17.

Raman, V., Fox, R.O, and Gordon, M. Development of a Predictive Multiphysics

Computational Model for Nanoparticle Synthesis Using Flame-Spray

Pyrolysis, NSF Research Proposal 2007.

Rand, Brian. Graphite: Structure, Properties and manufacture. Nuclear

Graphite-Materials Technology 2009, 1-49. University of Petoria.

Ribeiro, F.J., P. Tangney, S.G. Louie, and M.L. Cohen. Structural and electronic

properties of carbon in hybrid diamond-graphite structures. Physical Review

B 2005, 72, 21,. 214109.

Ribeiro, F.J., P. Tangney, S.G. Louie, and M.L. Cohen. Structural and electronic

properties of carbon in hybrid diamond-graphite structures. Physical Review

B, 2005, 72(21), 214109.

Robert, C. and J.D. Patrick. Apollo Diamond Inc Files Patent Application for

Tunable CVD Diamond Structures. Indian Patents News, 2011.

S. Niyogi, M. A. Hamon, H. Hu, B. Zhao, P. Bhowmik, R. Sen, M.E.Itkis and R.

C. Haddon. Chemistry of Single Walled Carbon Nanotubes. Accouts of

Chemical Research 2002, 35, 12, 1105-1113.

Sathreanranon, K.. Synthesis and control of layer numbers of carbon nanotubes.

(Thesis): Kasetsart University, Bangkok, Thailand 2005.

Setiabudi A., Hardian, R, & Mudzakir, A. Karakterisasi material: prinsip dan

aplikasinya dalam penelitian kimia. Bandung: UPI Press 2012.

Smart, Lesley E. and Moore, Elaine A. Solid state chemistry: an introduction,

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Terrones, M., A. Jorio, M. Endo, A.M. Rao, Y.A. Kim, T. Hayashi, H. Terrones,

J.C. Charlier, G. Dresselhaus, and M.S. Dresselhaus. New direction in

nanotube science. Materials Today 2004, 7, 10, 30-45.

Viboon, P. Metal-loaded Multi-walled Carbon Nanotubes Based Gas Sensor for

LPG Detection. (Thesis): Kasetsart University 2008.

Vikas, M. Surface Modification of Nanotube Filler, 1st Ed. Wiley-VCH 2011,

1-24

W. Yang, W. J. Sun, W. Chu, C. F. Jiang, J. Wen. Synhesis of carbon nanotubes

using scrap tyre rubber as cabon source. Chin. Chem. Lett. 2012, 23, 3,

363-366.

Wang, X.Z.; Hu, Z.; Chen, X.; Chen, Y. Preparation of carbon nanotubes and

nanoparticles by microwave plasma-enhanced chemical vapor deposition.

Scr. Mater. 2001, 44, 1567–1570.

Werner, M. and R. Locher. Growth and application of undoped and doped

diamond films. Reports on Progress in Physics 1998, 61, 12.

Y. Wang; S. Serrano; J. Santiago-Aviles. Conductivity measurement of

electrospun PAN-based carbon nanfber. J. Mater. Sci. Lett. 2002, 21,

1055-1057.

Yang, X.G.; Li, C.; Wang, W.; Yang, B.J.; Zhang, S.Y.; Qian, Y.T. A chemical

route from PTFE to amorphous carbon nanospheres in supercritical water.

Chem. Commun. 2004, 3, 342–343.

Yu, J.; Ahn, J.; Zhang, Q.; Yoon, S.F.; Rusli; Li, Y.J.; Gan, B.; Chew, K.; Tan,

K.H. Catalyzed growth of carbon nanoparticles by microwave plasma

chemical vapor deposition and their field emission properties. J. Appl. Phys.

2002, 91, 433–436.

Yuan, L. et. al. Carbon Nanoparticles on Carbon Fabric for Flexible and

High-Performance Field Emitters. Adv. Funct. Mater. 2011, XX, 1–7.

Yuan L. et. al. Ethylene flame synthesis of well aligned multi-walled carbon

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Yuan, L. et. al. Nanotubes from methane flames. Chem. Phys. Lett. 2001, 324,

217-23.

Yue, Y. A Comparative Study of Cellulose I and II Fibers and Nanocrystals.

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