Ostwald ripening of beta-carotene nanoparticles. 2007

Ying Liu, and Kendra Kathan, and Walid Saad, and Robert K Prud'homme
Department of Chemical Engineering, Princeton University, Princeton, New Jersey 08544, USA.

Ostwald ripening, the interfacial-energy-driven dissolution and reprecipitation of solutes, becomes an increasingly significant problem for nanoparticle formulations. We present the first quantitative study of Ostwald ripening for nanoparticle dispersions. The Lifshitz-Slyozov-Wagner (LSW) theory of particle growth driven by diffusion is applied to study beta-carotene nanoparticles with sizes of O(100 nm) formed by our block-copolymer protected Flash Nanoprecipitation process. A numerical implementation of the LSW theory that accounts for the original particle size distribution is presented. The predicted particle sizes from the numerical simulation are compared with the experimental results measured by dynamical light scattering. The results show quantitative agreement with no adjustable parameters. The addition of antisolvent results in the reduction of the ripening rate by dramatically decreasing bulk solubility.

UI MeSH Term Description Entries
D008027 Light That portion of the electromagnetic spectrum in the visible, ultraviolet, and infrared range. Light, Visible,Photoradiation,Radiation, Visible,Visible Radiation,Photoradiations,Radiations, Visible,Visible Light,Visible Radiations
D008956 Models, Chemical Theoretical representations that simulate the behavior or activity of chemical processes or phenomena; includes the use of mathematical equations, computers, and other electronic equipment. Chemical Models,Chemical Model,Model, Chemical
D011092 Polyethylene Glycols Polymers of ETHYLENE OXIDE and water, and their ethers. They vary in consistency from liquid to solid depending on the molecular weight indicated by a number following the name. They are used as SURFACTANTS, dispersing agents, solvents, ointment and suppository bases, vehicles, and tablet excipients. Some specific groups are NONOXYNOLS, OCTOXYNOLS, and POLOXAMERS. Macrogols,Polyoxyethylenes,Carbowax,Macrogol,Polyethylene Glycol,Polyethylene Oxide,Polyethyleneoxide,Polyglycol,Glycol, Polyethylene,Glycols, Polyethylene,Oxide, Polyethylene,Oxides, Polyethylene,Polyethylene Oxides,Polyethyleneoxides,Polyglycols,Polyoxyethylene
D011137 Polystyrenes Polymerized forms of styrene used as a biocompatible material, especially in dentistry. They are thermoplastic and are used as insulators, for injection molding and casting, as sheets, plates, rods, rigid forms and beads. Polystyrol,Polystyrene,Polystyrols
D011232 Chemical Precipitation The formation of a solid in a solution as a result of a chemical reaction or the aggregation of soluble substances into complexes large enough to fall out of solution. Precipitation, Chemical
D012542 Scattering, Radiation The diversion of RADIATION (thermal, electromagnetic, or nuclear) from its original path as a result of interactions or collisions with atoms, molecules, or larger particles in the atmosphere or other media. (McGraw-Hill Dictionary of Scientific and Technical Terms, 6th ed) Radiation Scattering,Radiation Scatterings,Scatterings, Radiation
D012995 Solubility The ability of a substance to be dissolved, i.e. to form a solution with another substance. (From McGraw-Hill Dictionary of Scientific and Technical Terms, 6th ed) Solubilities
D053758 Nanoparticles Nanometer-sized particles that are nanoscale in three dimensions. They include nanocrystaline materials; NANOCAPSULES; METAL NANOPARTICLES; DENDRIMERS, and QUANTUM DOTS. The uses of nanoparticles include DRUG DELIVERY SYSTEMS and cancer targeting and imaging. Nanocrystalline Materials,Nanocrystals,Material, Nanocrystalline,Materials, Nanocrystalline,Nanocrystal,Nanocrystalline Material,Nanoparticle
D019207 beta Carotene A carotenoid that is a precursor of VITAMIN A. Beta carotene is administered to reduce the severity of photosensitivity reactions in patients with erythropoietic protoporphyria (PORPHYRIA, ERYTHROPOIETIC). Betacarotene,BellaCarotin,Carotaben,Max-Caro,Provatene,Solatene,Vetoron,beta-Carotene,Carotene, beta,Max Caro,MaxCaro

Related Publications

Ying Liu, and Kendra Kathan, and Walid Saad, and Robert K Prud'homme
April 2019, Nanoscale,
Ying Liu, and Kendra Kathan, and Walid Saad, and Robert K Prud'homme
August 2013, Accounts of chemical research,
Ying Liu, and Kendra Kathan, and Walid Saad, and Robert K Prud'homme
July 1987, Physical review. A, General physics,
Ying Liu, and Kendra Kathan, and Walid Saad, and Robert K Prud'homme
September 2016, Nanoscale,
Ying Liu, and Kendra Kathan, and Walid Saad, and Robert K Prud'homme
July 2013, Physical review. E, Statistical, nonlinear, and soft matter physics,
Ying Liu, and Kendra Kathan, and Walid Saad, and Robert K Prud'homme
November 2020, The journal of physical chemistry. B,
Ying Liu, and Kendra Kathan, and Walid Saad, and Robert K Prud'homme
December 1995, Physical review. B, Condensed matter,
Ying Liu, and Kendra Kathan, and Walid Saad, and Robert K Prud'homme
October 2006, Physical review letters,
Ying Liu, and Kendra Kathan, and Walid Saad, and Robert K Prud'homme
July 2020, Soft matter,
Ying Liu, and Kendra Kathan, and Walid Saad, and Robert K Prud'homme
January 2024, Langmuir : the ACS journal of surfaces and colloids,
Copied contents to your clipboard!