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Optical Behaviour of Copper Phthalocyanine Preparations for Inkjet Inks

机译:喷墨用铜酞菁制剂的光学行为

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The present study investigates the preparation of the copper phthalocyanine pigment for inkjet printing inks. The pigment particle size distribution was measured with laser diffraction at different times of wet milling. Simultaneously, the absorbance spectra in a visible-near infrared spectral region of the corresponding diluted pigment dispersions were measured. At the beginning of the milling process, the particle size distribution is bimodal, showing the presence of aggregates and agglomerates. During the second hour of milling, the particle size distribution changes to unimodal due to the breaking of agglomerates, and the corresponding absorbance spectra change accordingly. Further milling diminishes the size of pigment aggregates up to the steady state value of around 130 nm, where also the absorbance in the corresponding spectra does not increase. A detailed analysis of intensity and position of the absorbance peak at 340 nm in dependence on the milling time and pigment concentration confirms the idea that an optical spectroscopy could be used for the assessment of optimal milling time required for the preparation of pigments with the maximum absorption ability.
机译:本研究研究了用于喷墨印刷油墨的铜酞菁颜料的制备。在湿磨的不同时间通过激光衍射测量颜料粒度分布。同时,测量了相应的稀释的颜料分散体在可见-近红外光谱区域中的吸收光谱。在研磨过程开始时,粒度分布是双峰的,表明存在聚集体和附聚物。在研磨的第二个小时内,由于附聚物的破裂,粒度分布变为单峰,并且相应的吸收光谱相应地变化。进一步研磨可减小颜料聚集体的尺寸,直至达到约130 nm的稳态值,其中相应光谱中的吸光度也不会增加。取决于研磨时间和颜料浓度,对340 nm处的吸收峰强度和位置进行了详细分析,证实了以下想法:可以使用光谱法评估制备具有最大吸收率的颜料所需的最佳研磨时间能力。

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