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Supramolecular polymers with reversed viscosity/temperature profile for application in motor oils

机译:超分子聚合物具有逆转粘度/温度型材用于在机油中的应用

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摘要

We report novel supramolecular polymers, which possess a reversed viscosity/temperature profile. To this end, we developed a series of ditopic monomers featuring two self-complementary binding sites, either the guanidiniocarbonyl pyrrole carboxylic acid (GCP) or the aminopyridine carbonyl pyrrole carboxylic acid (ACP). At low temperatures, small cyclic structures are formed. However, at elevated temperatures, a ring–chain transformation leads to the formation of a supramolecular polymer. We demonstrate that this effect is dependent on the concentration of the solution and on the polarity of the solvent. This effect can counteract the loss of viscosity of the solvent at elevated temperatures, thus opening an application of our systems as viscosity index improvers (VIIs) in working fluids. This was tested for different motor oils and led to the identification of one compound as a promising VII.
机译:我们报告了新型超分子聚合物,其具有逆向粘度/温度曲线。为此,我们开发了一系列具有两个自互补结合位点的多透视单体,无论是胍酰基羰基吡咯羧酸(GCP)还是氨基吡啶羰基吡咯羧酸(ACP)。在低温下,形成小的循环结构。然而,在升高的温度下,环链转化导致形成超分子聚合物。我们证明这种效果取决于溶液的浓度和溶剂的极性。这种效果可以在升高的温度下抵消溶剂的粘度损失,从而在工作流体中打开我们的系统作为粘度指数改进剂(VII)的应用。这对于不同的机油测试,并导致一种化合物作为有前途的VII。

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