Controlling particle size in the Stöber process and incorporation of calcium

SL Greasley, SJ Page, S Sirovica, S Chen… - Journal of colloid and …, 2016 - Elsevier
SL Greasley, SJ Page, S Sirovica, S Chen, RA Martin, A Riveiro, JV Hanna, AE Porter…
Journal of colloid and interface science, 2016Elsevier
The Stӧber process is commonly used for synthesising spherical silica particles. This article
reports the first comprehensive study of how the process variables can be used to obtain
monodispersed particles of specific size. The modal particle size could be selected within in
the range 20–500 nm. There is great therapeutic potential for bioactive glass nanoparticles,
as they can be internalised within cells and perform sustained delivery of active ions.
Biodegradable bioactive glass nanoparticles are also used in nanocomposites. Modification …
Abstract
The Stӧber process is commonly used for synthesising spherical silica particles. This article reports the first comprehensive study of how the process variables can be used to obtain monodispersed particles of specific size. The modal particle size could be selected within in the range 20–500 nm. There is great therapeutic potential for bioactive glass nanoparticles, as they can be internalised within cells and perform sustained delivery of active ions. Biodegradable bioactive glass nanoparticles are also used in nanocomposites. Modification of the Stӧber process so that the particles can contain cations such as calcium, whilst maintaining monodispersity, is desirable. Here, whilst calcium incorporation is achieved, with a homogenous distribution, careful characterisation shows that much of the calcium is not incorporated. A maximum of 10 mol% CaO can be achieved and previous reports are likely to have overestimated the amount of calcium incorporated.
Elsevier
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