Open Access Research Article

Effects of (complementary) Polyelectrolytes Characteristics on Composite Calcium Carbonate Microparticles Properties

Cristian Barbu Mic, Marcela Mihai, Cristian Dragos Varganici, Simona Schwarz, Dan Scutaru, Bogdan C. Simionescu
Published 30 Dec 2017
Pages 708–714

Abstract

This study follows the possibility to tune the thermal stability of some CaCO3/polymer composites by crystal growth from supersaturated solutions controlled by polymer structure or by using nonstoichiometric polyelectrolyte complexes (NPECs). As the ratio between the organic and inorganic parts in the composites controls the Ca2+/polymer network crosslinking density, the CaCO3/polymer weight ratio was kept constant at 50/1, varying the initial concentration of the polyanions solutions (0.05 or 0.06 wt.%), the NPECs molar ratio , n+/n- (0.2 or 0.4), or the inorganic precursors concentration (0.25 or 0.3 M). Poly(2-acrylamido-2-methylpropanesulfonic acid-co-acrylic acid) (PSA) and chondroitin-4-sulfate (CSA) were used as polyanions. Some NPEC dispersions, prepared with the same polyanions and poly(allylamine hydrochloride) (PAH), were also used for calcium carbonate crystallization. The characteristics of the prepared composites were investigated by scanning electron microscopy (SEM), flow particle image analysis (FPIA), particles charge density (CD), zeta-potential (ZP). The thermal stability of the composite particles was investigated as compared to bare CaCO3 microparticles prepared at the same initial inorganic concentrations.

Keywords: CaCO3/polymer composites; polyanions; polyelectrolyte complexes; thermal stability

How to Cite this Article

Mic, C., Mihai, M., Varganici, C., Schwarz, S., Scutaru, D., & Simionescu, B. (2017). Effects of (complementary) Polyelectrolytes Characteristics on Composite Calcium Carbonate Microparticles Properties. Materiale Plastice, 54(4), 708–714. https://doi.org/10.37358/MP.17.4.4929
Mic C, Mihai M, Varganici C, Schwarz S, Scutaru D, Simionescu B. Effects of (complementary) Polyelectrolytes Characteristics on Composite Calcium Carbonate Microparticles Properties. Materiale Plastice. 2017;54(4):708–714. doi: 10.37358/MP.17.4.4929
C. Mic, M. Mihai, C. Varganici, S. Schwarz, D. Scutaru, and B. Simionescu, "Effects of (complementary) Polyelectrolytes Characteristics on Composite Calcium Carbonate Microparticles Properties,” Materiale Plastice, vol. 54, no. 4, pp. 708–714, 2017. doi: 10.37358/MP.17.4.4929
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