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2016 Vol.35, Issue 6 Preview Page
30 November 2016. pp. 445-451
Abstract
References
1
1.S. K. Sahoo and V. Labhasetwar, “Nanotech approaches to drug delivery and imaging,” Drug Discovery Today, 8, 1112-1120 (2003).
2
2.R. T. Ahujab and D. Kumarb, “Recent progress in the development of nano-structured conducting polymers/ nanocomposites for sensor applications,” Sens. Actuators, B: Chemical, 136, 275-286 (2009).
3
3.F. T. Rothaermel and M. Thursby, “The nanotech versus the biotech revolution: Sources of productivity in incumbent firm research,” Res. Policy 36, 832-849 (2007).
4
4.J. Stoffer and M. Fahim, “Ultrasonic dispersion of pigment in water based paints,” J. Coat. Technol. 63, 61-68 (1991).
5
5.H. Akira, J. Taura, and T. Ogawa, “Heat conduction in nano-environment observed in cooling processes of colloidal silver nanoparticles in water,” Jpn. Appl. phys. 39, 2909-2912 (2000).
6
6. T. Uchida, T. Sato, S. Takeuchi, N. Kuramochi, and N. Kawashima, “Basic study on dispersion and surface modification of diamond powders by sonochemical reaction,” Jpn. J. Appl. Phys. 42, 2967-2970 (2003).
7
7.K. Kawabata, N. Sugita, H. Yoshikawa, T. Azuma, and A. Umemura, “Nanoparticles with multiple perfluorocarbons for controllable ultrasonically induced phase shifting,” Jpn. J. Appl. Phys. 44, 4548-4552 (2005).
8
8.M. Inkyo, T. Tahara, T. Iwaki, F. Iskandar, C. Hogan Jr., and K. Okuyama, “Experimental investigation of nanoparticle dispersion by beads milling with centrifugal bead separation,” J. Colloid Interface Sci. 304, 535-540 (2006).
9
9.K. Higashitani, K. Yoshida, N. Tanise, and H. Murata, “Dispersion of coagulated colloids by ultrasonication,” Colloids Surf., A: Physicochemical and Engineering Aspects, 81 167-175 (1993).
10
10.J. Mir, “Cavitation-induced capillary waves in ultrasonic atomization,” J. Acoust. Soc. Am. 67, 201-205 (1980).
11
11.D. Lobdell, “Particle size-amplitude relations for the ultrasonic atomizer,” J. Acoust. Soc. Am. 43, 229-231 (1968).
12
12.C. Rodes, T. Smith, R. Crouse, and G. Ramachandran, “Measurements of the size distribution of aerosols produced by ultrasonic humidification,” Aerosol Sci. Technol. 13, 220-229 (1990).
13
13.H. Fogler and K. Timmerhaus, “Ultrasonic atomization studies,” J. Acoust. Soc. Am. 39, 515-518 (1966).
14
14.C. Goodridge, W. TaoShi, H. Hentschel, and D. Lathrop, “Viscous effects in droplet-ejecting capillary waves,” Phys. Rev. E 56, 472-475 (1997).
15
15.R. A. Serway and C. Vuille, College physics, 9th Ed. (Cengage Learning Korea Ltd, Seoul, 2006), pp. 208-211.
16
16.B. Munson and D. Young, Fundamentals of Fluid Mechanics, 4th Ed. (John Wiley & Sons, Inc. USA, 2012), pp. 534-608.
17
17.Y. Yuan and T. Lee, Surface Science Techniques, ( Springer, New York, 2013), pp. 3-33.
18
18.S. R. Cho and H. G.  Cho, “Determination of surface energy by means of home-made goniometer and image analyzing software for contact angle measurement,” J. Korean Chem. Soc. 57, 432-438 (2013).
Information
  • Publisher :The Acoustical Society of Korea
  • Publisher(Ko) :한국음향학회
  • Journal Title :The Journal of the Acoustical Society of Korea
  • Journal Title(Ko) :한국음향학회지
  • Volume : 35
  • No :6
  • Pages :445-451
  • Received Date : 2016-08-06
  • Revised Date : 2016-09-02
  • Accepted Date : 2016-11-25