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Seeding effect on crystal growth in hydrothermal synthesis of layered octosilicate

机译:水热合成层状硅酸钙中晶种对晶种生长的影响

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In the hydrothermal synthesis process of layered octosilicate ilerite, seed crystals were added to the starting solution (water glass) for control of the crystallization rate. Octosilicate platelets of 4.4 mu m and their ground products with a size less than 1 mu m were used as the seed. The crystallization rate increased with an increase in the additional amount of platelet seed. The crystalline products were obtained even if the seed had a relatively low crystallinity. The size of products depended strongly on both the additional amount and size of seed. When the seed-loading mass ratio of seed to the starting solution was 0.01, the crystal growth was a maximum and the size of products was about twice of that of seed. However, in the use of the ground seed, a finer product was obtained at the optimum seed-loading mass ratio due to increase in the number of seed crystals. To control crystal growth for reducing synthesis time and for obtaining crystals of a specific size, both number and size of seed crystals must be optimized because the silanol groups on the edge of seed crystals added become new reaction sites of crystallization.
机译:在层状八硅酸盐ilerite的水热合成过程中,将晶种添加到起始溶液(水玻璃)中以控制结晶速率。种子使用4.4微米的八硅酸盐薄片及其粉碎的产品,尺寸小于1微米。结晶速率随着血小板种子的额外量的增加而增加。即使晶种具有较低的结晶度,也获得了结晶产物。产品的大小在很大程度上取决于种子的额外数量和大小。当种子与起始溶液的种子装载质量比为0.01时,晶体的生长最大,产物的尺寸约为种子的两倍。但是,在使用磨碎的种子时,由于晶种数量的增加,在最佳种子负载质量比下获得了更精细的产品。为了控制晶体生长以减少合成时间并获得特定尺寸的晶体,必须优化种晶的数量和尺寸,因为添加的种晶边缘的硅烷醇基团成为新的结晶反应位点。

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