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Special Issue Articles

Size Control Mechanism for Bio-Nanoparticle Fabricated by Electrospray Deposition

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REFERENCES

  • Jiang, W.L.; Gupta, R.K.; Deshpande, M.C.; Schwendeman, S.P. Biodegradable poly(lactic-co-glycolic acid) microparticles for injectable delivery of vaccine antigens. Advanced Drug Delivery Reviews 2005, 57(3), 391–410.
  • Kreuter, J. Nanoparticulate systems for brain delivery of drugs. Advanced Drug Delivery Reviews 2001, 47(1), 65–81.
  • Yang, W.; Peter, J.I.; Williams, R.O. III. Inhaled nanoparticles—A current review. International Journal of Pharmaceutics 2008, 356(1–2), 239–247.
  • Soppimath, K.S.; Aminabhavi, T.M.; Kulkarni, A.R.; Rudzinski, W.E. Biodegradable polymeric nanoparticles as drug delivery devices. Journal of Controlled Release 2001, 70(1–2), 1–20.
  • Chithrani, B.D.; Ghazani, A.A.; Chan, W.C.W. Determining the size and shape dependence of gold nanoparticle uptake into mammalian cells. Nano Letter 2006, 6(4), 662–668.
  • Win, K.Y.; Feng, S.S. Effects of particle size and surface coating on cellular uptake of polymeric nanoparticles for oral delivery of anticancer drugs. Biomaterials 2005, 26(15), 2713–2722.
  • Gomez, A.; Bingham, D.; de Juan, L.; Tang, K. Production of protein nanoparticles by electrospray drying. Journal of Aerosol Science 1998, 29(5–6), 561–574.
  • Eltayeb, M.; Bakhshi, P.K.; Stride, E.; Edirisinghe, M. Preparation of solid lipid nanoparticles containing active compound by electrohydrodynamic spraying. Food Research International 2013, 53(1), 88–95.
  • Zhang, S.L.; Kawakami, K. One-step preparation of chitosan solid nanoparticles by electrospray deposition. International Journal of Pharmaceutics 2011, 397(1–2), 211–217.
  • Xie, J.W.; Lim, L.K.; Phua, Y.; Hua, J.; Wang, C.H. Electrohydrodynamic atomization for biodegradable polymeric particle production. Journal of Colloid Interface Science 2006, 302(1), 103–112.
  • Jaworek, A. Micro- and nanoparticle production by electrospraying. Powder Technology 2007, 176(1), 18–35.
  • Fernandez de la Mora, J.; Loscertales, I.G. The current emitted by highly conducting Taylor cones. Journal of Fluid Mechanics 1994, 260, 155–184.
  • Gañán-Calvo, A.M. Cone-jet analytical extension of Taylor's electrostatic solution and the asymptotic universal scaling laws in electrospraying. Physical Review Letter 1997, 79(2), 217–220.
  • MacKerell, A.D.; Bashford, D.; Bellott, M.; Dunbrack, R.L.; Evanseck, J.D.; Field, M.J.; Fischer, S.; Gao, J.; Guo, H.; Ha, S.; Joseph-McCarthy, D.; Kuchnir, L.; Kuczera, K.; Lau, F.T.K.; Mattos, C.; Michnick, S.; Ngo, T.; Nguyen, D.T.; Prodhom, B.; Reiher, W.E.; Roux, B.; Schlenkrich, M.; Smith, J.C.; Stote, R.; Straub, J.; Watanabe, M.; Wirkiewicz-Kuczera, J.; Yin, D.; Karplus, M. All-atom empirical potential for molecular modeling and dynamics studies of proteins. The Journal of Physical Chemistry B 1998, 102(18), 3586–3616.
  • Jorgensen, W.L.J.; Chandrasekhar, J.; Madura, J.D.; Impey, R.W.; Klein, M.L. Comparison of simple potential functions for simulating liquid water. The Journal Chemical Physics 1983, 79(1), 926–935.
  • Chowdhuri, S.; Chandra, A. Molecular dynamics simulations of aqueous NaCl and KCl solutions: Effects of ion concentration on the single-particle, pair, and collective dynamical properties of ions and water molecules. The Journal Chemical Physics 2001, 115(8), 3732–3740.
  • Kohler, F.; Quirke, N.; Perram, J.W. Perturbation theory with a hard dumbbell reference system: I. Application to liquid nitrogen. The Journal Chemical Physics 1979, 71(1), 4128–4131.
  • Wang, B.B.; Wang, X.D.; Duan, Y.Y.; Chen, M. Molecular dynamics simulation on evaporation of water and aqueous droplets in the presence of electric field. International Journal of Heat and Mass Transfer 2014, 73, 533–541.
  • Beckers, J.V.L.; Lowe, C.P.; De Leeuw, S.W. An iterative PPPM method for simulating Coulombic systems on distributed memory parallel computers. Molecular Simulation 1998, 20(6), 369–383.
  • Ryckaert, J.P.; Ciccotti, G.; Berendsen, H.J.C. Numerical integration of the Cartesian equations of motion of a system with constraints: Molecular dynamics of n-alkanes. The Journal Chemical Physics 1977, 23(3), 327–341.
  • Plimpton, S. Fast parallel algorithms for short-range molecular dynamics. Journal of Computational Physics 1995, 117(1), 1–19.
  • Swope, W.C.; Andersen, H.C.; Berens, P.H.; Wilson, K.R. A computer simulation method for the calculation of equilibrium constants for the formation of physical clusters of molecules: Application to small water clusters. The Journal Chemical Physics 1982, 76(1), 637–649.
  • Sumardiono, S.; Fischer, J. Molecular simulations of droplet evaporation by heat transfer. Microfluid Nanofluid 2007, 3(2), 127–140.
  • Luedtke, W.D.; Landman, U.; Chiu, Y.-H.; Levandier, D.J.; Dressier, R.A.; Sok, S.; Gordon, M.S. Nanojets, electrospray, and ion field evaporation: Molecular dynamics simulations and laboratory experiments. The Journal of Physical Chemistry A 2008, 112(40), 9628–9649.
  • Robinson, R.A.; Stokes, R.H. Electrolyte Solution, 2nd ed.; London: Butterworth, 1959.
  • Bjerrum, N. Untersuchungen über Ionenassoziation. Det Kgl. Danske Videnskabernes Selskab. Mathematisk-fysisike Meddelelser 1926, VII, 9.

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