Additive-induced morphological tuning of self-assembled silica-barium carbonate crystal aggregates

Matthias Kellermeier, Fabian Glaab, Anna M. Carnerup, Markus Drechsler, Benjamin Gossler, Stephen T. Hyde, Werner Kunz*

*Corresponding author for this work

    Research output: Contribution to journalArticlepeer-review

    31 Citations (Scopus)

    Abstract

    Crystallisation of barium carbonate from alkaline silica solutions results in the formation of extraordinary micron-scale architectures exhibiting non-crystallographic curved shapes, such as helical filaments and worm-like braids. These so-called "silica biomorphs" consist of a textured assembly of uniform elongated witherite nanocrystallites, which is occasionally sheathed by a skin of amorphous silica. Although great efforts have been devoted to clarifying the physical origin of these fascinating materials, to date little is known about the processes underlying the observed self-organisation. Herein, we describe the effect of two selected additives, a cationic surfactant and a cationic polymer, on the morphology of the forming crystal aggregates, and relate changes to experiments conducted in the absence of additives. Minor amounts of both substances are shown to exert a significant influence on the growth process, leading to the formation of predominantly flower-like spherulitic aggregates. The observed effects are discussed in terms of feasible morphogenesis pathways. Based on the assumption of a template membrane steering biomorph formation, it is proposed that the two additives are capable of performing specific bridging functions promoting the aggregation of colloidal silica which constitutes the membrane. Morphological changes are tentatively ascribed to varying colloid coordination effecting distinct membrane curvatures.

    Original languageEnglish
    Pages (from-to)2530-2541
    Number of pages12
    JournalJournal of Crystal Growth
    Volume311
    Issue number8
    DOIs
    Publication statusPublished - 1 Apr 2009

    Fingerprint

    Dive into the research topics of 'Additive-induced morphological tuning of self-assembled silica-barium carbonate crystal aggregates'. Together they form a unique fingerprint.

    Cite this