Crespo-Biel Olga, Péter Mária, Bruinink Christiaan M, Ravoo Bart Jan, Reinhoudt David N, Huskens Jurriaan
Laboratory for Supramolecular Chemistry and Technology, MESA+ Institute for Nanotechnology, University of Twente, P.O. Box 217, 7500 AE, Enschede, The Netherlands.
Chemistry. 2005 Apr 8;11(8):2426-32. doi: 10.1002/chem.200400393.
Poly(isobutene-alt-maleic acid)s modified with p-tert-butylphenyl or adamantyl groups interact with beta-cyclodextrin self-assembled monolayers (beta-CD SAMs) by inclusion of the hydrophobic substituents in the beta-cyclodextrin cavities. The adsorption was shown to be strong, specific, and irreversible. Even with a monovalent competitor in solution, adsorption to the beta-CD SAMs was observed, and desorption proved impossible. The adsorbed polymer layer was very thin as evidenced by surface plasmon resonance spectroscopy and AFM. Apparently, all or most hydrophobic groups of the polymers were employed efficiently in multivalent binding, as was further supported by the absence of specific binding of beta-CD-modified gold nanoparticles to the polymer surface assemblies. Supramolecular microcontact printing of the polymers onto the beta-CD SAMs led to assembly formation in the targeted areas of the substrates.
用对叔丁基苯基或金刚烷基修饰的聚(异丁烯-alt-马来酸)通过将疏水取代基包合在β-环糊精腔内与β-环糊精自组装单分子层(β-CD SAMs)相互作用。吸附表现为强烈、特异且不可逆。即使溶液中有一价竞争者,仍观察到聚合物吸附到β-CD SAMs上,且证明无法解吸。表面等离子体共振光谱和原子力显微镜表明,吸附的聚合物层非常薄。显然,聚合物的所有或大部分疏水基团都有效地用于多价结合,β-CD修饰的金纳米颗粒与聚合物表面组装体之间不存在特异性结合进一步证明了这一点。将聚合物超分子微接触印刷到β-CD SAMs上导致在底物的目标区域形成组装体。