Conversion of polypropylene to two-dimensional graphene, one-dimensional carbon nano tubes and zero-dimensional C-dots, all exhibiting typical sp2-hexagonal carbon rings (English)
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- New search for: Sharon, Madhuri
- New search for: Mishra, Neeraj
- New search for: Patil, Bhushan
- New search for: Mewada, Ashmi
- New search for: Gurung, Raju
- New search for: Sharon, Maheshwar
- New search for: Sharon, Madhuri
- New search for: Mishra, Neeraj
- New search for: Patil, Bhushan
- New search for: Mewada, Ashmi
- New search for: Gurung, Raju
- New search for: Sharon, Maheshwar
In:
IET Circuits, Devices & Systems
;
9
, 1
;
59-66
;
2015
- Article (Journal) / Electronic Resource
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Title:Conversion of polypropylene to two-dimensional graphene, one-dimensional carbon nano tubes and zero-dimensional C-dots, all exhibiting typical sp2-hexagonal carbon rings
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Contributors:Sharon, Madhuri ( author ) / Mishra, Neeraj ( author ) / Patil, Bhushan ( author ) / Mewada, Ashmi ( author ) / Gurung, Raju ( author ) / Sharon, Maheshwar ( author )
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Published in:IET Circuits, Devices & Systems ; 9, 1 ; 59-66
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Publisher:
- New search for: The Institution of Engineering and Technology
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Publication date:2015-01-01
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Size:8 pages
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ISSN:
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DOI:
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Type of media:Article (Journal)
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Type of material:Electronic Resource
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Language:English
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Keywords:scanning electron microscopy , carbon nanotubes , XRD , carbon materials , sp3 content , Raman spectroscopy , two-dimensional graphene , graphene , 0D carbon dots , transmission electron microscopy , hexagonal lattice , polymers , SEM , PP polymer , one-dimensional carbon nanotubes , electrical fields , ultraviolet-visible spectroscopy , visible spectroscopy , tertiary carbon atoms , polypropylene , 2D graphene , ultraviolet spectroscopy , thermal cracking , 1D CNT , TEM , zero-dimensional C-dots , electronic fields , X-ray diffraction , sp2-hexagonal carbon rings , low activation energy , morphology
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Source:
Metadata by IET is licensed under CC BY 3.0
Table of contents – Volume 9, Issue 1
The tables of contents are generated automatically and are based on the data records of the individual contributions available in the index of the TIB portal. The display of the Tables of Contents may therefore be incomplete.
- 1
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Graphene ElectronicsWatts, Stephen et al. | 2015
- 2
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Editorial: Graphene electronicsMabrook, Mohammed / Zeze, Dagou et al. | 2015
- 4
-
Thermal properties of graphene and few-layer graphene: applications in electronicsYan, Zhong / Nika, Denis L. / Balandin, Alexander A. et al. | 2015
- 13
-
Electronic signatures of topological disorder in amorphous grapheneLi, Yuting / Drabold, David A. et al. | 2015
- 19
-
Fractal butterflies of Dirac fermions in monolayer and bilayer grapheneChakraborty, Tapash / Apalkov, Vadym M. et al. | 2015
- 30
-
Approximate calculation of the potential profile in a graphene-based deviceMarconcini, Paolo / Macucci, Massimo et al. | 2015
- 39
-
Doping stability and opto-electronic performance of chemical vapour deposited graphene on transparent flexible substratesKang, Moon H. / Milne, William I. / Cole, Matthew T. et al. | 2015
- 46
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Radio-frequency transport Electromagnetic Properties of chemical vapour deposition graphene from direct current to 110 MHzAwan, Shakil A. / Pan, Genhua / Al Taan, Laith M. / Li, Bing / Jamil, Nawfal et al. | 2015
- 52
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Origin of 1/f noise in graphene produced for large-scale applications in electronicsKochat, Vidya / Sahoo, Anindita / Pal, Atindra Nath / Eashwer, Sneha / Ramalingam, Gopalakrishnan / Sampathkumar, Arjun / Tero, Ryugu / Viet Thu, Tran / Kaushal, Sanjeev / Okada, Hiroshi et al. | 2015
- 59
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Conversion of polypropylene to two-dimensional graphene, one-dimensional carbon nano tubes and zero-dimensional C-dots, all exhibiting typical sp2-hexagonal carbon ringsSharon, Madhuri / Mishra, Neeraj / Patil, Bhushan / Mewada, Ashmi / Gurung, Raju / Sharon, Maheshwar et al. | 2015
- 67
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Graphene oxide-based non-volatile organic field effect memory transistorsAlaabdlqader, Homod S. / Sleiman, Adam / Sayers, Paul / Mabrook, Mohammed F. et al. | 2015