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Regular Articles

Films of Graphene Nanomaterials Formed by Ultrasonic Spraying of Their Stable Suspensions

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Pages 45-56 | Received 03 Jun 2014, Accepted 09 Nov 2014, Published online: 02 Dec 2014

REFERENCES

  • Baby, T. T., and Ramaprabhu, S. (2010). Investigation of Thermal and Electrical Conductivity of Graphene Based Nanofluids. J. Appl. Phys., 108:124308 (6 pp).
  • Balandin, A. A., Ghosh, S., Bao, W., Calizo, I., Teweldebrhan, D., Miao, F., et al. (2008). Superior Thermal Conductivity of Single-Layer Graphene. Nano Lett., 8(3):902–907.
  • Blake, P., Brimicombe, P. D., Nair, R. R., Booth, T. J., Jiang, D., Schedin, F., et al. (2008). Graphene-Based Liquid Crystal Device. Nano Lett., 8(6):1704–1708.
  • Bussmann, M., Chandra, S., and Mostaghimi, J. (2000). Modeling the Splash of a Droplet Impacting a Solid Surface. Phys. Fluids, 12:3121–3132.
  • Chen, C., LaRue, J. C., Nelson, R. D., Kulinsky, L., and Madou, M. J. (2012). Electrical Conductivity of Polymer Blends of Poly(3,4-ethylenedioxythiophene):Poly(styrenesulfonate):N-Methyl-2-pyrrolidinone and Polyvinyl Alcohol. J. Appl. Polym. Sci., 125(4):3134–3141.
  • Dang, T. T., Pham, V. H., Hur, S. H., Kim, E. J., Kong, B. S., and Chung, J. S. (2012). Superior Dispersion of Highly Reduced Graphene Oxide in N,N-dimethylformamide. J. Colloid Interf. Sci., 376:91–96.
  • Dean, J. A. (1999). Lange's Handbook of Chemistry, 15th ed. McGraw-Hill, Inc., United States of America.
  • Deegan, R. D., Bakajin, O., Dupont, T. F., Huber, G., Nagel, S. R., and Witten, T. A. (1997). Capillary Flow as the Cause of Ring Stains from Dried Liquid Drops. Nature, 389:827–829.
  • Donnelly, T. D., Hogan, J., Mugler, A., Schumbmehl, M., Schommer, N., Bernoff, A. J., et al. (2005). Using Ultrasonic Atomization to Produce an Aerosol of Micron-Scale Particles. Rev. Sci. Instrum., 76:113301.
  • Ferrari, A. (2007). Raman Spectroscopy of Graphene and Graphite: Disorder, Electron–Phonon Coupling, Doping and Nonadiabatic Effects. Solid State Commun., 143:47–57.
  • Filipovic, L., Selberherr, S., Mutinati, G. C., Brunet, E., Steinhauer, S., Köck, A., et al. (2013). Modeling Spray Pyrolisis Deposition. Proceedings of the World Congress on Engineering 2013, London, U. K., ISSN:2078-0966.
  • Geim, A. K. (2009). Graphene: Status and Prospects. Science, 324:1530–1539.
  • Gilje, S., Han, S., Wang, M., Wang, K. L., and Kaner, R. B. (2007). A Chemical Route to Graphene for Device Applications. Nano Lett., 7(11):3394–3398.
  • Haggenmacher, J. E. (1946). The Heat of Vaporization as a Function of Pressure and Temperature. J. Am. Chem. Soc., 68(8):1633–1634.
  • Jang, S.-Y., Kim, Y.-G., Kim, D. Y., Kim, H.-G., and Jo, S. M. (2012). Electrodynamically Sprayed Thin Films of Aqueous Dispersible Graphene Nanosheets: Highly Efficient Cathodes for Dye-Sensitized Solar Cells. Appl. Mater. Inter., 4:3500–3507.
  • Janssen, D., De Palma, R., Verlaak, S., Heremans, P., and Dehaen, W. (2006). Static Solvent Contact Angle Measurements, Surface Free Energy and Wettability Determination of Various Self-assembled Monolayers on Silicon Dioxide. Thin Solid Films, 515:1433–1438.
  • Ju, M. J., Kim, J. C., Choi, H.-J., Choi, I. T., Kim, S. G., Lim, K., et al. (2013). N‑Doped Graphene Nanoplatelets as Superior Metal-Free Counter Electrodes for OrganicDye-SensitizedSolarCells. ACS Nano, 7(6):5243–5250.
  • Kauppila, J., Lund, L., Laiho, T., Salomäki, M., Kankare, J., and Lukkari, J. (2014). Effective Low Temperature Reduction of Graphene Oxide with Vanadium(III). J. Mater. Chem. C, 2:3602–3609.
  • Lang, R. J. (1962). Ultrasonic Atomization of Liquids. J. Acoust. Soc. Am., 34:6.
  • Law, C. K. (2006). Combustion Physics. Cambridge University Press, New York, United States of America.
  • Lee, H., Rajagopalan, R., Robinson, J., and Pantano, C. G. (2009). Processing and Characterization of Ultrathin Carbon Coatings on Glass. Appl. Mater. Interf., 1(4):927–933.
  • Macfie, G., Compton, R. G., and Corti, H. R. (2001). Electrical Conductivity and Solubility of KF in N,N-Dimethylformamide up to 125°C. J. Chem. Eng. Data, 46:1300–1304.
  • Majumder, M., Rendall, C., Li, M., Behabtu, N., Eukel, J. A., Hauge, R. H., et al. (2010). Insights into the Physics of Spray Coating of SWNT Films. Chem. Eng. Sci., 65:2000–2008.
  • Malard, L. M., Pimenta, M. A., Dresselhaus, G., and Dresselhaus, M. S. (2009). Raman Spectroscopy in Graphene. Phys. Rep., 473:51–87.
  • Mayorov, A. S., Gorbachev, R. V., Morozov, S. V., Britnell, L., Jalil, R., Ponomarenko, L. A., et al. (2011). Micrometer-Scale Ballistic Transport in Encapsulated Graphene at Room Temperature. Nano Lett., 11:2396–2399.
  • Miettinen, M., Hokkinen, J., Karhunen, T., Torvela, T., Pfüller, C., Ramsteiner, M., et al. (2014). Synthesis of Novel Carbon Nanostructures by Annealing of Silicon-Carbon Nanoparticles at Atmospheric Pressure. J. Nanopart. Res., 16:2168 (11 pp).
  • Miettinen, M., Johansson, M., Suvanto, S., Riikonen, J., Tapper, U., Pakkanen, T. T., et al. (2011). Atmospheric Pressure Chemical Vapour Synthesis of Silicon–Carbon Nanoceramics from Hexamethyldisilane in High Temperature Aerosol Reactor. J. Nanopart Res., 13:4631–4645.
  • Modesto-López, L. B., Bilousov, O. V., Carvajal, J. J., Díaz, F., and Rosell-Llompart, J. (2012). Electrospray Deposition of Graphene Nanosheets, in European Aerosol Conference EAC-2012(Granada, Spain, September 2012).
  • Modesto-López, L. B., Bilousov, O. V., Serres, J. M., Carvajal, J. J., Díaz, F., and Rosell-Llompart, J. (2013). Towards Deposition of Single Layer Graphene by an Electrospray Ion-Assisted Method, in European Aerosol Conference EAC-2013(Prague, Czech Republic, September 2013).
  • Modesto-López, L. B., and Biswas, P. (2010). Role of the Effective Electrical Conductivity of Nanosuspensions in the Generation of TiO2 Agglomerates with Electrospray. J. Aerosol. Sci., 41(8):790–834.
  • Modesto-López, L. B., Pasteris, J. D., and Biswas, P. (2009). Sensitivity of Micro-Raman Spectrum to Crystallite Size of Electrospray-Deposited and Post-Annealed Films of Iron-Oxide Nanoparticle Suspensions. Appl. Spectrosc., 63(6):627–635.
  • Moreira, A. L. N., Moita, A. S., and Panao, M. R. (2010). Advances and Challenges in Explaining Fuel Spray Impingement: How Much of Single Droplet Impact Research is Useful? Prog. Energy Comb. Sci., 36(5):554–580.
  • Muecke, U. P., Messing, G. L., and Gauckler, L. J. (2009). The Leidenfrost Effect during Spray Pyrolysis of Nickel Oxide-Gadolinia Doped Ceria Composite Thin Films. Thin Solid Films, 517:1515–1521.
  • Nair, R. R., Wu, H. A., Jayaram, P. N., Grigorieva, I. V., and Geim, A. K. (2012). Unimpeded Permeation of Water Through Helium-Leak–Tight Graphene-Based Membranes. Science, 335:442–444.
  • Neagu, R., Perednis, D., Princivalle, A., and Djurado, E. (2005). Initial Stages in Zirconia Coatings Using ESD. Chem. Mater., 17:902–910.
  • Nguyen, D. D., Tai, N. H., Chueh, Y. L., Chen, S. Y., Chen, Y. J., Kuo, W. S., et al. (2011). Synthesis of Ethanol-Soluble Few-Layer Graphene Nanosheets for Flexible and Transparent Conducting Composite Films. Nanotechnology, 22:295606 (8pp).
  • Novoselov, K. S., Geim, A. K., Morozov, S. V., Jiang, D., Zhang, Y., Dubonos, S. V., et al. (2004). Electric Field Effect in Atomically Thin Carbon Films. Science, 306:666–669.
  • Ou, J., Wang, J., Liu, S., Mu, B., Ren, J., Wang, H., et al. (2010). Tribology Study of Reduced Graphene Oxide Sheets on Silicon Substrate Synthesized via Covalent Assembly. Langmuir, 26:15830–15836.
  • O’Neill, A., Khan, U., Nirmalraj, P. N., Boland, J., and Coleman, J. N. (2011). Graphene Dispersion and Exfoliation in Low Boiling Point Solvents. J. Phys. Chem. C, 115:5422–5428.
  • Perednis, D. (2003). Thin Film Deposition by Spray Pyrolysis and the Application in Solid Oxide Fuel Cells. Ph.D. Thesis (Diss. No. 15190), Swiss Federal Institute of Technology, Zürich, Switzerland.
  • Rajan, A., and Pandit, A. B. (2001). Correlations to Predict Droplet Size in Ultrasonic Atomisation. Ultrasonics, 39:235–255.
  • Taylor, K. M. G., and McCallion, O. N. M. (1997). Ultrasonic Nebulisers for Pulmonary Drug Delivery. Int. J. Pharm., 153:93–104.
  • Theron, S. A., Zussman, E., and Yarin, A. L. (2004). Experimental Investigation of the Governing Parameters in the Electrospinning of Polymer Solutions. Polymer, 45:2017–2030.
  • Wei, D., and Kivioja, J. (2013). Graphene for Energy Solutions and its Industrialization. Nanoscale, 5:10108–10126.
  • Wolf, E. L. (2014). Applications of Graphene: An overview (Springer International Publishing AG).
  • Zábranský, M., and Růžička, V. Jr. (2004). Estimation of the Heat Capacities of Organic Liquids as a Function of Temperature Using Group Additivity: An Amendment. J. Phys. Chem. Ref. Data, 33(4):1071–1081.
  • Zhang, W., Yu, T., Liao, L., and Cao, Z. (2013). Ring Formation from a Drying Sessile Colloidal Droplet. AIP Adv., 3:102109.

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