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Original Article

Generation of TiO2 Aerosols from Liquid Suspensions: Influence of Colloid Characteristics

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Pages 1383-1392 | Received 20 Jun 2013, Accepted 10 Aug 2013, Published online: 28 Apr 2014

REFERENCES

  • Bahadur, J., Sen, D., Mazumder, S., Paul, B., Khan, A., and Ghosh, G. (2010). Evaporation-Induced Self Assembly of Nanoparticles in Non-Buckling Regime: Volume Fraction Dependent Packing. J. Coll. Int. Sci., 351:357–364.
  • Beck-Broichsitter, M., Knuedeler, M.C., Schmehl, T., and Seeger, W. (2013). Following the Concentration of Polymeric Nanoparticles During Nebulization. Pharm Res 30:16–24.
  • Borm, P.J. A. (2002). Particle Toxicology: From Coal Mining to Nanotechnology. Inhal. Toxicol., 14:311–324.
  • Eninger, R.M., Hogan, C.J., Biswas, P., Adhikari, A., Reponen, T., and Grinshpun, S.A. (2009). Electrospray versus Nebulization for Aerosolization and Filter Testing with Bacteriophage Particles. Aerosol Sci. Technol., 43:298–304.
  • Gomez, V., Balu, A.M., Serrano-Ruiz, J.C., Irusta, S., Dionysiou, D.D., Luque, R., et al. (2012). Microwave-Assisted Mild-Temperature Preparation of Neodymium-Doped Titania for the Improved Photodegradation of Water Contaminants. Appl. Catal. A Gen., 441–442:47–53.
  • Henning, A., Hein, S., Schneider. M., Bur, M., and Lehr, C.-M. (2010). Pulmonary Drug Delivery: Medicines for Inhalation Drug Delivery. Schäfer-Korting, M. (ed), Springer, Berlin Heidelberg, 197:171–192.
  • Hernández-Trejo, N., Kayser, O., Steckel, H., and Müller, R.H. (2005). Characterization of Nebulized Buparvaquone Nanosuspensions—Effect of Nebulization Technology. J. Drug Target., 13:499–507.
  • Hinds, W.C. (1999). Aerosol Technology: Properties, Behavior, and Measurement of Airborne Particles. Wiley, New York.
  • Iskandar, F., Mikrajuddin, and Okuyama, K. (2001). In Situ Production of Spherical Silica Particles Containing Self-Organized Mesopores. Nano Lett., 1:231–234.
  • Kodas, T.T., and Hampden-Smith, M.J. (1999). Aerosol Processing of Materials. Wiley-VCH, New York.
  • Krarnes, J., Büttner, H., and Ebert, F. (1991). Submicron Particle Generation by Evaporation of Water Droplets. J. Aerosol Sci., 22(Suppl. 1):S15–S18.
  • Lee, S.Y., Gradoń, L., Janeczko, S., Iskandar, F., and Okuyama, K. (2010). Formation of Highly Ordered Nanostructures by Drying Micrometer Colloidal Droplets. ACS Nano., 4:4717–4724.
  • Lee, S.Y., Widiyastuti, W., Iskandar, F., Okuyama, K., and Gradoń, L. (2009). Morphology and Particle Size Distribution Controls of Droplet-to-Macroporous/Hollow Particles Formation in Spray Drying Process of Colloidal Mixtures Precursor. Aerosol Sci. Technol., 43:1184–1191.
  • McJilton, L., Horton, C., Kittrell, C., Ogrin, D., Peng, H., Liang, F., et al.. (2009). Nebulization of Single-Walled Carbon Nanotubes for Respiratory Toxicity Studies. Carbon, 47:2528–2530.
  • Mohammadi, M.R., Cordero-Cabrera, M.C., Ghorbani, M., and Fray, D.J.  (2006). Synthesis of High Surface Area Nanocrystalline Anatase-TiO2 Powders Derived from Particulate Sol-Gel Route by Tailoring Processing Parameters. J. Sol-Gel Sci. Technol., 40:15–23.
  • Napierska, D., Thomassen, L., Lison, D., Martens, J., and Hoet, P. (2010). The Nanosilica Hazard: Another Variable Entity. Particle Fibre Toxicol., 7:39.
  • Noël, A., Cloutier, Y., Wilkinson, K.J., Dion, C., Hallé, S., Maghni, K., et al.. (2012). Generating Nano-Aerosols from TiO2 (5 nm) Nanoparticles Showing Different Agglomeration States. Application to Toxicological Studies. J. Occup. Environ. Hyg., 10:86–96.
  • Oberdörster, G., Sharp, Z., Atudorei, V., Elder, A., Gelein, R., Kreyling, W., and Cox, C. (2004). Translocation of Inhaled Ultrafine Particles to the Brain. Inhal. Toxicol. 16:437–445.
  • Oberdörster, G., Sharp, Z., Atudorei, V., Elder, A., Gelein, R., Lunts, A., Kreyling, W., and Cox, C. (2002). Extrapulmonary Translocation of Ultrafine Carbon Particles Following Whole-Body Inhalation Exposure of Rats. J. Toxicol. Environ. Health A, 65:1531–1543.
  • Park, J.Y., McMurry, P.M., and Park, K. (2012). Production of Residue-Free Nanoparticles by Atomization of Aqueous Solutions. Aerosol Sci. Technol., 46:354–360.
  • Rossi, E., Pylkkanen, L., Koivisto, A., Nykasenoja, H., Wolff, H., Savolainen, K., et al. (2010). Inhalation Exposure to Nanosized and Fine TiO2 Particles Inhibits Features of Allergic Asthma in a Murine Model. Particle Fibre Toxicol., 7:35.
  • Sen, D., Mazumder, S., Melo, J.S., Khan, A., Bhattyacharya, S., and D’Souza, S.F. (2009). Evaporation Driven Self-Assembly of a Colloidal Dispersion during Spray Drying: Volume Fraction Dependent Morphological Transition. Langmuir, 25:6690–6695.
  • Shimada, M., Wang, W.-N., Okuyama, K., Myojo, T., Oyabu, T., Morimoto, Y., et al. (2009). Development and Evaluation of an Aerosol Generation and Supplying System for Inhalation Experiments of Manufactured Nanoparticles. Environ. Sci. Technol., 43:5529–5534.
  • Sotto, A., Boromand, A., Zhang, R., Luis, P., Arsuaga, J.M., Kim, J., et al. (2011). Effect of Nanoparticle Aggregation at Low Concentrations of TiO2 on the Hydrophilicity, Morphology, and Fouling Resistance of PES-TiO2 Membranes. J. Coll. Int. Sci., 363:540–550.
  • Suttiponparnit, K., Jiang, J., Sahu, M., Suvachittanont, S., Charinpanitkul, T., and Biswas, P. (2011). Role of Surface Area, Primary Particle Size, and Crystal Phase on Titanium Dioxide Nanoparticle Dispersion Properties. Nanoscale Res. Lett., 6:27.
  • Swift, D. (1993). Aerosol Measurement in the Health Care Field, in Aerosol Measurement Principles, Techniques and Applications. Wiley, New York.
  • Verma, N.K., Crosbie-Staunton, K., Satti, A., Gallagher, S., Ryan, K.B., Doody, T., McAtamney, C., MacLoughlin, R., Galvin, P., Burke, C.S., Volkov, Y., and Gun’ko Y.K. (2013). Magnetic Core-Shell Nanoparticles for Drug Delivery by Nebulization. J Nanotechnol, 11:1–13.
  • Wang, W.-N., Purwanto, A., Lenggoro, I.W., Okuyama, K., Chang, H., and Jang, H.D. (2008). Investigation on the Correlations between Droplet and Particle Size Distribution in Ultrasonic Spray Pyrolysis. Ind. Eng. Chem. Res., 47:1650–1659.
  • Widiyastuti, W., Lee, S.Y., Iskandar, F., and Okuyama, K. (2009). Sintering Behavior of Spherical Aggregated Nanoparticles Prepared by Spraying Colloidal Precursor in a Heated Flow. Adv. Powder Technol., 20:318–326.
  • Wiesner, M.R., Lowry, G.V., Alvarez, P., Dionysiou, D., and Biswas, P. (2006). Assessing the Risks of Manufactured Nanomaterials. Env. Sci. Technol., 40:4336–4345.
  • Yeo, L.Y., Friend, J.R., McIntosh, M.P., Meeusen, E.N. T., and Morton, D.A. V. (2010). Ultrasonic Nebulization Platforms for Pulmonary Drug Delivery. Expert Opinion on Drug Delivery, 7:663–679.
  • Yi, G.R., Manoharan, V.N., Michel, E., Elsesser, M.T., Yang, S.M., and Pine, D.J. (2004). Colloidal Clusters of Silica or Polymer Microspheres. Adv. Mater., 16:1204–1208.
  • Zhang, Y., Ali, S.F., Dervishi, E., Xu, Y., Li, Z., Casciano, D., et al. (2010). Cytotoxicity Effects of Graphene and Single-Wall Carbon Nanotubes in Neural Phaeochromocytoma-Derived PC12 Cells. ACS Nano., 4:3181–3186.

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