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Interactions between shape-persistent macromolecules as probed by AFM

机译:原子力显微镜探究的形状持久性大分子之间的相互作用

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摘要

Water-soluble shape-persistent cyclodextrin (CD) polymers with amino-functionalized end groups were prepared starting from diacetylene-modified cyclodextrin monomers by a combined Glaser coupling/click chemistry approach. Structural perfection of the neutral CD polymers and inclusion complex formation with ditopic and monotopic guest molecules were proven by MALDI–TOF and UV–vis measurements. Small-angle neutron and X-ray (SANS/SAXS) scattering experiments confirm the stiffness of the polymer chains with an apparent contour length of about 130 Å. Surface modification of planar silicon wafers as well as AFM tips was realized by covalent bound formation between the terminal amino groups of the CD polymer and a reactive isothiocyanate–silane monolayer. Atomic force measurements of CD polymer decorated surfaces show enhanced supramolecular interaction energies which can be attributed to multiple inclusion complexes based on the rigidity of the polymer backbone and the regular configuration of the CD moieties. Depending on the geometrical configuration of attachment anisotropic adhesion characteristics of the polymer system can be distinguished between a peeling and a shearing mechanism.
机译:通过结合的Glaser偶联/点击化学方法,由二乙炔改性的环糊精单体制备具有氨基官能化端基的水溶性形状持久性环糊精(CD)聚合物。 MALDI-TOF和UV-vis测量证明了中性CD聚合物的结构完善以及具有双位和单位客体分子的包合物形成。小角中子和X射线(SANS / SAXS)散射实验证实了表观轮廓长度约为130Å的聚合物链的刚度。平面硅晶片以及AFM尖端的表面改性是通过CD聚合物的末端氨基与反应性异硫氰酸酯-硅烷单层之间的共价键形成而实现的。 CD聚合物修饰表面的原子力测量显示出增强的超分子相互作用能,这可以归因于基于聚合物主链的刚性和CD部分的规则构型的多个包合物。根据附着的几何构型,可以在剥离和剪切机制之间区分聚合物系统的各向异性粘合特性。

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