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Size-controlled production of quinacridone nanocrystals using hot compressed water recrystallization method

机译:热压缩水重结晶法控制喹controlled啶酮纳米晶体的尺寸

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摘要

Continuous production of quinacridone nanocrystals via a hot compressed water (HCW) recrystallization method was studied using a flow-through experimental apparatus at 24 MPa at temperatures from 523 K to 573 K. Quinacridone crystals were dissolved in HCW and precipitation was initiated by mixing with room temperature water (RTW), which gave the nanocrystalline product. Polyoxyethylene lauryl ether and sodium dodecyl sulfate were found to be useful for reducing aggregation of the nanocrystals. The effects of temperature and flow rate on the size of the crystals were examined; increasing the degree of supersaturation caused crystals to decrease in size. Nanocrystals that had an average diameter of ca. 36 nm could be obtained at 573.8 K and 24 MPa at a flow rate of 10 g/min for HCW and 100 g/min for RTW.
机译:研究了使用流通式实验设备在523 K至573 K的温度下,24 MPa下通过热压缩水(HCW)重结晶法连续生产喹ac啶酮纳米晶体的方法。将喹ac啶酮晶体溶解在HCW中,并通过与室内混合开始沉淀高温水(RTW),得到纳米晶体产物。发现聚氧乙烯月桂基醚和十二烷基硫酸钠可用于减少纳米晶体的聚集。研究了温度和流速对晶体尺寸的影响。增加过饱和度会导致晶体尺寸减小。纳米晶体的平均直径约为在HCW为10 g / min,RTW为100 g / min的流速下,在573.8 K和24 MPa下可获得36 nm。

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