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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Continuous Production of Quinacridone Nanocrystals and Control of Crystal Form by High-Temperature Water Crystallization Method
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Continuous Production of Quinacridone Nanocrystals and Control of Crystal Form by High-Temperature Water Crystallization Method

机译:高温水结晶法连续生产喹ac啶酮纳米晶及控制晶型

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摘要

A high-temperature water (HTW) crystallization method was applied to produce size- and form-controlled organic nanocrystals without the use of any organic solvents. HTW and room-temperature water (RTW) were used as the extraction and cooling solvents, respectively. Nanocrystals are precipitated by mixing a high-temperature quinacridone aqueous solution in a newly developed micromixing unit with RTW from another line. Quinacridone nanocrystals having an average diameter of ca. 9 nm as determined from transmission electron microscopy observations and ca. 83 nm from dynamic light scattering measurements were produced at 250.6℃ and 24MPa with a flow rate of 10g/min for HTW and 20g/min for RTW. In addition, it was found that nanocrystals having different crystal sizes and forms could be obtained by changing the temperature and flow rate of RTW. This new method promises an environmentally sustainable process for the continuous production of organic nanocrystals.
机译:应用高温水(HTW)结晶方法来生产尺寸和形状受控的有机纳米晶体,而无需使用任何有机溶剂。 HTW和室温水(RTW)分别用作萃取和冷却溶剂。通过在新开发的微混合装置中将高温喹ac啶酮水溶液与另一条生产线的RTW混合,可以沉淀出纳米晶体。喹ac啶酮纳米晶体的平均直径约为。根据透射电子显微镜观察结果确定的约9 nm。在250.6℃和24MPa下,通过动态光散射测量得到83 nm,HTW的流速为10g / min,RTW的流速为20g / min。另外,发现可以通过改变RTW的温度和流速来获得具有不同晶体尺寸和形式的纳米晶体。这种新方法有望为连续生产有机纳米晶体提供一个环境可持续的过程。

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