Department of Chemistry & IRIS Adlershof, Humboldt-Universität zu Berlin, 12489, Berlin, Germany.
Molecular Nanofabrication Group, MESA+ Institute for Nanotechnology, Department of Science and Technology, University of Twente, P.O. Box 217, 7500, AE Enschede, The Netherlands.
Chempluschem. 2019 Sep;84(9):1324-1330. doi: 10.1002/cplu.201900181. Epub 2019 Jun 12.
The spatial confinement of multivalent azopyridine guest molecules mediated by cucurbit[8]urils is described. Fluorescent dye-labelled multivalent azopyridine molecules were attached to preformed methyl viologen/cucurbit[8]uril inclusion complexes in solution and at surfaces. The formation of the resulting heteroternary host-guest complexes was verified in solution and on gold substrates. Surface binding constants of the multivalent ligands were two orders of magnitude higher than that of the monovalent one. Poly-l-lysine grafted with oligo(ethylene glycol) and maleimide moieties was deposited on cyclic olefin polymer surfaces and further modified with thiolated methyl viologen and cucurbit[8]uril. Defined micrometer-sized patterns were created by soft lithographic techniques. Supramolecular exchange experiments were performed on these surface-bound heterocomplexes, which allowed the creation of cross-patterns by taking advantage of the molecular valency, which led to the substitution of the monovalent guest by the multivalent guests but not vice versa.
描述了多价偶氮吡啶客体分子在葫芦[8]脲介导下的空间限制。将荧光染料标记的多价偶氮吡啶分子连接到溶液中和表面上预先形成的甲基紫精/葫芦[8]脲包合物上。在溶液中和金基底上验证了所得杂多元主体-客体配合物的形成。多价配体的表面结合常数比单价配体高两个数量级。聚-l-赖氨酸接枝聚乙二醇和马来酰亚胺部分,并沉积在环烯烃聚合物表面上,并用巯基化的甲基紫精和葫芦[8]脲进一步修饰。通过软光刻技术创建了定义的微米级图案。在这些表面结合的杂合配合物上进行超分子交换实验,这允许利用分子价数来创建交叉图案,从而导致单价客体被多价客体取代,但反之则不然。