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Biomimetic synthesis of calcium carbonate with different morphologies under the direction of different amino acids

机译:在不同氨基酸的指导下仿生合成不同形态的碳酸钙

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Using three different amino acids (AAs) as organic matrices, including the highly nonpolar hydrophobic l-valine, the positively charged l-arginine and the less polar uncharged l-serine, calcium carbonate (CaCO_3) with different morphologies and polymorphs were synthesized by a facile gas diffusion reaction based on biomimetic strategy. Compared with the control cubic calcite obtained in the absence of AAs, the product from l-valine was cubic calcite aggregates assembled by nano-platelets. The product from l-arginine was spherical vaterite aggregates assembled by spherical nanoparticles. The product from l-serine was the mixture of cubic calcite and spherical vaterite. The structures and properties of the side chains of the AAs exerted the significant effects on the nucleation and growth of the CaCO_3. The formation mechanisms of the CaCO_3 in the presence of AAs are preliminarily discussed. The results suggest that the polymorphs and morphologies of the inorganic nanomaterials might be easily adjusted through the careful selection of the organic matrices.
机译:使用三种不同的氨基酸(AAs)作为有机基质,包括高度非极性的疏水性l-缬氨酸,带正电荷的l-精氨酸和极性较小的不带电荷的l-丝氨酸,通过不同的形态合成了具有不同形态和多晶型的碳酸钙(CaCO_3)。基于仿生策略的轻度气体扩散反应。与不含AA的对照方解石相比,L-缬氨酸的产物是通过纳米片组装的方解石聚集体。来自1-精氨酸的产物是由球形纳米颗粒组装的球形球ate石聚集体。来自左旋丝氨酸的产物是立方方解石和球形球ate石的混合物。 AAs侧链的结构和性质对CaCO_3的成核和生长具有重要影响。初步讨论了在AA存在下CaCO_3的形成机理。结果表明,通过精心选择有机基质,可以轻松地调节无机纳米材料的多晶型物和形态。

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