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Approach for detecting localization of inkjet ink components using dynamic-SIMS analysis

机译:使用动态SIMS分析检测喷墨墨水组件定位的方法

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Organic compounds having high boiling points included in inkjet inks remain in the printed media after printing. It has been said that these residual organic compounds influenced the fastness of pigment ink prints, but details of the analytical methods have not been reported, yet. In this paper, a new analytical method was applied for detecting localization of those organic compounds in inkjet prints after printing. Glycerin was chosen as a typical example of those organic compounds. To analyze the position within the printed paper, deuterated glycerin was formulated in the ink as a probe and dynamic Secondary Ion Mass Spectroscopy was applied to detect the deuterium peak in the whole printed paper thickness. It was found that glycerin remained in the range from the bottom of the pigment ink layer to the pigment coating layer of the printed media. This peak was sufficiently detectable for at least 7 days after printing. The maximum peak of residual glycerin was located at the surface of the coating layer of paper.
机译:印刷后,在喷墨油墨中包含高沸点的有机化合物保留在印刷介质中。据说这些残留的有机化合物影响了颜料油墨印刷的牢度,但尚未报道分析方法的细节。本文采用了一种新的分析方法,用于检测喷墨印刷后喷墨印刷中这些有机化合物的定位。选择甘油作为这些有机化合物的典型实例。为了分析印刷纸内的位置,在油墨中配制氘代甘油,作为探针,施加动态二次离子质谱,以检测整个印刷纸厚度的氘峰。发现甘油在颜料墨水层的底部到印刷介质的颜料涂层的范围内。印刷后至少7天内至少7天获得该峰。残留甘油的最大峰位于涂布层的表面。

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