首页> 外文会议>The Third International Conference of the Kolloid-Gesellschaft (Germany) Sep 25-28, 2000 Budapest >The mechanism of the morphogenesis of CaCO_3 in the presence of poly(ethylene glycol)-b-poly(methacrylic acid)
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The mechanism of the morphogenesis of CaCO_3 in the presence of poly(ethylene glycol)-b-poly(methacrylic acid)

机译:聚乙二醇-b-聚甲基丙烯酸存在下CaCO_3形态形成的机理

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The morphogenesis of crystalline CaCO_3 in calcite modification was systematically investigated in the presence of poly(ethylene glycol)-b-poly(methacrylic acid) with respect to pH, polymer and mineral concentration. A variety of different particle morphologies was observed and at least two different mechanisms for the formation of the final CaCO_3 structures are proposed. At low polymer concentration or pH, the basis of the mechanism is that the polymer could selectively adsorb onto specific crystal surfaces leading to morphologies elongated along the crystal c-axis. At low pH, macroscopic elongated crystals were found resulting from a slow growth pro-cess, whereas at high pH or high polymer concentration, spherical structures dominated originating from a more complicated growth scenario: polymer adsorption onto the nanocrystals with subsequent defined aggregation into a superstructure. Here, the elongated crystal is stabilized on the nanometer scale with a growth self-termination and an acting electric multipole field arranges later nucleated particles into the observed superstructures.
机译:在pH值,聚合物和矿物质浓度方面,在聚乙二醇-b-聚甲基丙烯酸存在下,系统地研究了方解石改性过程中结晶CaCO_3的形貌。观察到各种不同的粒子形态,并提出了至少两种不同的机制来形成最终的CaCO_3结构。在低聚合物浓度或pH值下,机理的基础是聚合物可以选择性地吸附到特定的晶体表面上,从而导致晶体沿晶体c轴伸长。在低pH下,发现缓慢生长过程导致宏观的细长晶体,而在高pH或高聚合物浓度下,球形结构占主导地位,原因是更复杂的生长情况:聚合物吸附到纳米晶体上,随后确定的聚集成超结构。在此,细长的晶体通过生长自终止而稳定在纳米级,并且作用的电多极场将随后的成核颗粒排列成观察到的超结构。

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