The effect of initial drop size on particle size in the supercritical antisolvent precipitation (SAS) technique

Author:

Rantakylä Markku,Jäntti Matti,Aaltonen Olli,Hurme Markku

Publisher

Elsevier BV

Subject

Physical and Theoretical Chemistry,Condensed Matter Physics,General Chemical Engineering

Reference35 articles.

1. T. Sze, F. Dehghani, A. Dillow, N. Foster, Applications of dense gases in pharmaceutical processing, in: M. Perrut, P. Subra (Eds.), Proceedings of the 5th Meeting on Supercritical Fluids, Materials and Natural Products Processing, Tome 1: Materials, Nice, France, 17–19 October, 1998, pp. 263–269.

2. P. Gallagher, M. Coffey, V. Krukonis, N. Klasutis, Gas antisolvent recrystallization: new process to recrystallize compounds insoluble in supercritical fluids, in: K. Johnston, J. Penninger (Eds.), ACS Symposium Series 406, Supercritical Fluid Science and Technology, American Chemical Society, Washington, DC, 1989, pp. 334–354.

3. E. Reverchon, Supercritical antisolvent precipitation: its application to microparticle generation and products fractionation, in: M. Perrut, P. Subra (Eds.), Proceedings of the 5th Meeting on Supercritical Fluids, Materials and Natural Products Processing, Tome 1: Materials, Nice, France, 17–19 October, 1998, pp. 221–236.

4. A. Weber, J. Tschernjaew, R. Kümmel, Coprecipitation with compressed antisolvents for the manufacture of microcomposites, M. Perrut, P. Subra (Eds.), Proceedings of the 5th Meeting on Supercritical Fluids, Materials and Natural Products Processing, Tome 1: Materials, Nice, France, 17–19 October, 1998, pp. 243–248.

5. Application of supercritical fluids for the production of sustained delivery devices;Debenedetti;J. Controlled Release,1993

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