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首页> 外文期刊>AIP Advances >Urea controlled hydrothermal synthesis of ammonium aluminum carbonate hydroxide rods
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Urea controlled hydrothermal synthesis of ammonium aluminum carbonate hydroxide rods

机译:尿素控制的水热法合成碳酸氢铝铵棒

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In this study, ammonium aluminum carbonate hydroxide (AACH) rods were controllably prepared using the hydrothermal method by manipulating the amount of urea in the reaction system. The experimental results showed that AACH in rod shape was able to be gradually transformed from γ-AlOOH in cluster shape during the molar ratios of urea to Al in the reactants were ranged from 8 to 10, and the yield of AACH has increased accordingly. When the molar ratio of urea to Al reaches 11, pure AACH rods with a diameter of 500 nm and a length of 10 μm approximately was able to be produced. Due to the slow decomposition of urea during the hydrothermal reaction, the nucleation and growth of AACH crystal proceed step by step. Therefore, the crystal can fully grow on each crystal plane and eventually produce a highly crystalline rod-shaped product. The role of urea in controlling the morphology and yield of AACH was also discussed in this paper systematically.
机译:在这项研究中,通过控制反应体系中尿素的量,使用水热法可控制地制备了碳酸氢氧化铝铝(AACH)棒。实验结果表明,当反应物中尿素与铝的摩尔比为8〜10时,棒状AACH能够从团簇状γ-AlOOH逐渐转化,从而提高了AACH的收率。当尿素与Al的摩尔比达到11时,能够生产出直径为500nm,长度约为10μm的纯AACH棒。由于尿素在水热反应过程中缓慢分解,AACH晶体的成核和生长逐步进行。因此,晶体可以在每个晶体平面上充分生长,并最终产生高度结晶的棒状产物。本文还系统地讨论了尿素在控制AACH形态和产量中的作用。

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