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首页> 外文期刊>Dyes and Pigments >Molecular stacks as a common characteristic in the crystal lattice of organic pigment dyes A contribution to the 'soluble-insoluble' dichotomy of dyes and pigments from the technological point of view
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Molecular stacks as a common characteristic in the crystal lattice of organic pigment dyes A contribution to the 'soluble-insoluble' dichotomy of dyes and pigments from the technological point of view

机译:分子堆叠是有机颜料染料晶格中的共同特征从技术角度看,这有助于染料和颜料的“不溶性”二分法

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This is the first attempt at trying to arrange industrial organic pigments into an order from the viewpoint of the formation of molecular stacks as the common characteristic of all their crystals. Some pigments additionally form networks of leaf-like structures, and others assemble themselves to construct a three-dimensional lattice. This approach is new in the field of pigments, but it permits differences in solubility behavior to be readily explained in a qualitative manner. Crystal engineering is undoubtedly the scientific basis for organic solids and may be vividly described as providing the building blocks, cement and brickwork for pigment dyes (heterocycles). Significant developments in organic pigments wee admittedly, however-following the demands of both technology and market forces-made long before the new discipline of crystal engineering was called into being. The pigment dyes are thus an intimate point of contact between science and technology.
机译:从形成作为所有晶体的共同特征的分子堆叠的观点出发,这是尝试将工业有机颜料排列成有序的首次尝试。一些颜料还形成叶状结构的网络,而另一些颜料自身组装以构建三维晶格。该方法是颜料领域中的新方法,但是它允许以定性的方式容易地解释溶解度行为的差异。晶体工程无疑是有机固体的科学基础,并且可以生动地描述为提供色素(杂环化合物)的基础材料,水泥和砖砌体。有机颜料的显着发展是公认的,但是,随着技术和市场力量的需求,在晶体工程的新学科诞生之前就已经出现了。因此,颜料染料是科学与技术之间密切的联系点。

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