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Controlling Low Temperature Aqueous Synthesis of ZnO. 2. A Novel Continuous Circulation Reactor

机译:控制ZnO的低温水合成。 2.新型连续循环反应器

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A novel low temperature continuous circulation reactor for synthesizing ZnO from aqueous solutions has been developed. The reactor is based on the solubility behavior of ZnO predicted by the thermodynamic calculations presented in part I of this series. The chemistry used is simple and nontoxic, and because the reactor operates in a closed loop, no waste byproducts are produced. Experimental results confirm that the reactor is capable of synthesizing epitaxial ZnO at atmospheric pressure and temperatures well below the boiling point of water. It was possible to control the growth rate, yield, and morphology of the ZnO produced by adjusting variables, such as pH, ammonia concentration, temperature, heating rate, hold time, and recirculation rate. The experimental results obtained are shown to be in qualitative agreement with the calculations reported in part 1.
机译:已经开发了一种从水溶液合成ZnO的新型低温连续循环反应器。该反应器基于该系列第一部分中介绍的热力学计算预测的ZnO溶解性行为。所使用的化学物质简单且无毒,而且由于反应器是闭环运行的,因此不会产生废副产物。实验结果证实,该反应器能够在大气压和远低于水沸点的温度下合成外延ZnO。通过调节pH,氨浓度,温度,加热速率,保持时间和再循环速率等变量可以控制ZnO的生长速率,产率和形态。实验结果表明,该结果与第1部分报道的计算在质量上吻合。

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