Mechanism of Formation of Monodispersed Colloids by Aggregation of Nanosize Precursors
Overview
Authors
Affiliations
It has been experimentally established in numerous cases that precipitation of monodispersed colloids from homogeneous solutions is a complex process. Specifically, it was found that in many systems nuclei, produced rapidly in a supersaturated solution, grow to nanosize primary particles (singlets), which then coagulate to form much larger final colloids in a process dominated by irreversible capture of these singlets. This paper describes a kinetic model that explains the formation of dispersions of narrow size distribution in such systems. Numerical simulations of the kinetic equations, with experimental model parameter values, are reported. The model was tested for a system involving formation of uniform spherical gold particles by reduction of auric chloride in aqueous solutions. The calculated average size, the width of the particle size distribution, and the time scale of the process agreed reasonably well with the experimental values. Copyright 1999 Academic Press.
Tuning Textural Properties by Changing the Morphology of SBA-15 Mesoporous Materials.
Silva F, Rigoti E, Mello M, Pergher S Materials (Basel). 2024; 17(12).
PMID: 38930197 PMC: 11204648. DOI: 10.3390/ma17122827.
Cai B, Jiang N, Tan P, Hou Y, Li Y, Zhang L RSC Adv. 2022; 9(70):41311-41318.
PMID: 35540057 PMC: 9076429. DOI: 10.1039/c9ra08168b.
Motlochova M, Slovak V, Plizingrova E, Lidin S, Subrt J RSC Adv. 2022; 10(7):3694-3704.
PMID: 35492627 PMC: 9048722. DOI: 10.1039/c9ra08737k.
Luminescent Colloidal InSb Quantum Dots from Generated Single-Source Precursor.
Busatto S, de Ruiter M, Jastrzebski J, Albrecht W, Pinchetti V, Brovelli S ACS Nano. 2020; 14(10):13146-13160.
PMID: 32915541 PMC: 7596776. DOI: 10.1021/acsnano.0c04744.
Periodic Nucleation of Calcium Phosphate in a Stirred Biocatalytic Reaction.
Bohner B, Bansagi Jr T, Toth A, Horvath D, Taylor A Angew Chem Int Ed Engl. 2019; 59(7):2823-2828.
PMID: 31833161 PMC: 7027757. DOI: 10.1002/anie.201911213.