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首页> 外文期刊>ACS Omega >Temperature-Induced, Selective Assembly of Supramolecular Colloids in Water
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Temperature-Induced, Selective Assembly of Supramolecular Colloids in Water

机译:温度诱导,在水中的超分子胶体选择组装

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In this article, we report the synthesis and physical characterization of colloidal polystyrene particles that carry water-soluble supramolecular N ,N ′,N ″,-trialkyl-benzene-1,3,5-tricarboxamides (BTAs) on their surface. These molecules are known to assemble into one-dimensional supramolecular polymers via noncovalent interactions. By tethering the BTAs to charge-stabilized particles, the clustering behavior of the resulting colloids was dictated by a balance between interparticle electrostatic repulsion and the BTA-mediated attractions. Through careful tuning of the dispersing medium’s ionic strength, a regime was found in which particle aggregation could be reversibly induced upon heating the dispersion. These findings clearly indicate that hydrophobic interactions, which become stronger upon heating, play an important role during the clustering process. Besides the thermoreversible nature of the generated hydrophobic interparticle attractions, we found the clustering to be selective, that is, the BTA-functionalized colloids do not interact with nonfunctionalized hydrophobic polystyrene particles. This selectivity in the association process can be rationalized by the preferred stacking of the surface-tethered BTAs. These selective intermolecular/particle bonds are likely stabilized by the formation of hydrogen bonds, as previously observed for analogous molecular BTA assemblies. The resulting driving force responsible for particle clustering is therefore dual in nature and depends on both hydrophobic attractions and hydrogen bonding.
机译:在本文中,我们报告了携带水溶性超分子的胶体聚苯乙烯颗粒的合成和物理表征,其携带水溶性超分子 N,烷基苯-1,3,5-三羧酸甲酰胺(BTA)在他们的表面上。已知这些分子通过非共价相互作用组装成一维超分子聚合物。通过将BTA束缚到电荷稳定的颗粒,所得胶体的聚类行为被颗粒静电排斥和BTA介导的吸引力之间的平衡决定。通过仔细调整分散介质的离子强度,发现了一种方案,在其中可以在加热分散体时可逆地诱导颗粒聚集。这些发现清楚地表明,在加热时变得更强的疏水相互作用,在聚类过程中发挥着重要作用。除了产生的疏水性界面景点的热可逆性之外,我们发现聚类是选择性的,即BTA官能化胶体不与非功能化疏水聚苯乙烯颗粒相互作用。关联过程中的这种选择性可以通过表面系拴的BTA的优选堆叠来合理地。如前所述,这些选择性分子间/颗粒键可能通过形成氢键而被氢键稳定,如类似的分子BTA组件。因此,负责颗粒聚类的所得到的驱动力是双重的,取决于疏水吸附和氢键。

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