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Homogeneous calcium carbonate coating obtained by electrodeposition: in situ atomic force microscope observations

机译:电沉积获得的均质碳酸钙涂层:原位原子力显微镜观察

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摘要

The evolution of the first stages of the crystallization of an electrochemically deposited calcium carbonate on indium tin oxide (ITO) electrode has been investigated. The electrodeposition was driven applying a constant negative potential a NaHCO{sub}3 and CaCl{sub}2 solution saturated with molecular oxygen. By this way, novel data about the kinetics of the crystal growth of CaCO{sub}3 were collected from the AFM images. The results show that at the solution super saturation levels used, the crystal growth occurred by a uniform surface nucleation mechanism. During the growth of the initial nuclei, the surface of the electrode was covered progressively by the growth of flat multilayers having triangular faces. The height of these structures ranged from one to several molecular layers of calcium carbonate. At the end of the crystallization process, the roughness of the electrode surface is reduced in average to two monolayers. Thus, our method provides a useful way to electrodeposit a nearly uniform layer of calcium carbonate on a variety of surfaces of potential applications.
机译:已经研究了在铟锡氧化物(ITO)电极上电化学沉积的碳酸钙结晶第一阶段的演变。通过施加恒定的负电位NaHCO {sub} 3和CaCl {sub} 2溶液(分子氧饱和)驱动电沉积。通过这种方式,从AFM图像中收集了有关CaCO {sub} 3晶体生长动力学的新数据。结果表明,在所使用的溶液超饱和水平下,晶体生长是通过均匀的表面成核机制发生的。在初始核的生长过程中,电极表面被具有三角形面的平坦多层的生长逐渐覆盖。这些结构的高度范围是碳酸钙的一层至几分子层。在结晶过程结束时,电极表面的粗糙度平均减少到两个单层。因此,我们的方法提供了一种在各种潜在应用的表面上电沉积几乎均匀的碳酸钙层的有用方法。

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