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Controlled liquid antisolvent precipitation using a rapid mixing device
Christian Beck
, Sameer V. Dalvi
,
Rajesh N. Dave
Chemical and Materials Engineering
New Jersey Center for Engineered Particulates
New Jersey Institute of Technology
Research output
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Contribution to journal
›
Article
›
peer-review
63
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Scopus citations
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Keyphrases
Rapid Mixing
100%
Nucleation Rate
100%
Antisolvent Precipitation
100%
Ultrafine Particles
100%
Mixing Device
100%
Supersaturation
66%
Mixing Conditions
66%
Particle Size
33%
Ethanol
33%
Control Process
33%
Active Pharmaceutical Ingredients
33%
Classical Theory
33%
Particle Formation
33%
Condensation
33%
Coagulation
33%
Acetone
33%
Tetrahydrofuran
33%
Dimethyl Sulfoxide
33%
Narrow Particle Size Distribution
33%
Homogeneous nucleation
33%
Experimental Determination
33%
Organic Solution
33%
Itraconazole
33%
Fenofibrate
33%
Fine Particle Size
33%
Griseofulvin
33%
Anti-solvent Process
33%
Solvent Polarity
33%
T-shaped
33%
High Supersaturation
33%
Supersaturation Ratio
33%
Sulfamethoxazole
33%
Uniform Mixing
33%
Ascorbyl Palmitate
33%
Continuous Operation Mode
33%
Material Science
Nucleation
100%
Fine Particle
80%
Supersaturation
80%
Particle Formation
20%
Particle Size Analysis
20%
Uniform Mixing
20%
Chemical Engineering
Fine Particles
100%
Dimethyl Sulfoxide
25%
Ascorbyl Palmitate
25%
Alcohol
25%
Ethanol
25%
Acetone
25%