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Functionalized Multiwalled CNTs in Classical and Nonclassical CaCO 3 Crystallization

机译:经典和非经典CaCO 3结晶中的功能化多壁CNT

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摘要

Multiwalled carbon nanotubes (MWCNTs) are interesting high-tech nanomaterials. MWCNTs oxidized and functionalized with itaconic acid and monomethylitaconate were demonstrated to be efficient additives for controlling nucleation of calcium carbonate (CaCO 3 ) via gas diffusion (GD) in classical as well as nonclassical crystallization, yielding aragonite and truncated calcite. For the first time, all amorphous calcium carbonate (ACC) proto-structures, such as proto calcite-ACC, proto vaterite-ACC and proto aragonite-ACC, were synthesized via prenucleation cluster (PNC) intermediates and stabilized at room temperature. The MWCNTs also showed concentration-dependent nucleation promotion and inhibition similar to biomolecules in nature. Incorporation of fluorescein-5-thiosemicarbazide (5-FTSC) dye-labeled MWCNTs into the CaCO 3 lattice resulted in fluorescent hybrid nanosized CaCO 3 . We demonstrate that functionalized MWCNTs offer a good alternative for controlled selective crystallization and for understanding an inorganic mineralization process.
机译:多壁碳纳米管(MWCNT)是有趣的高科技纳米材料。衣康酸和单衣康酸酯氧化和官能化的MWCNT被证明是通过经典和非经典结晶中的气体扩散(GD)控制碳酸钙(CaCO 3)成核的有效添加剂,生成文石和截短方解石。首次通过预成核簇(PNC)中间体合成了所有无定形碳酸钙(ACC)原型结构,例如方解石-ACC,球v石-ACC和文石-ACC,并在室温下稳定下来。 MWCNTs也表现出与自然界相似的浓度依赖性成核促进和抑制作用。荧光素5-硫代氨基脲(5-FTSC)染料标记的MWCNTs掺入CaCO 3晶格导致荧光杂化纳米级CaCO 3。我们证明功能化的MWCNTs为受控的选择性结晶和了解无机矿化过程提供了一个很好的选择。

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