Institut für Chemie und Biochemie, Freie Universität Berlin, Takustrasse 3, 14195 Berlin, Germany.
J Am Chem Soc. 2012 Jan 25;134(3):1860-8. doi: 10.1021/ja2107096. Epub 2012 Jan 10.
Homo- and heterodivalent crown-ammonium pseudorotaxanes with different spacers connecting the two axle ammonium binding sites have been synthesized and characterized by NMR spectroscopy and ESI mass spectrometry. The homodivalent pseudorotaxanes are investigated with respect to the thermodynamics of divalent binding and to chelate cooperativity. The shortest spacer exhibits a chelate cooperativity much stronger than that of the longer spacers. On the basis of crystal structure, this can be explained by a noninnocent spacer, which contributes to the binding strength in addition to the two binding sites. Already very subtle changes in the spacer length, i.e., the introduction of an additional methylene group, cause substantial changes in the magnitude of cooperative binding as expressed in the large differences in effective molarity. With a similar series of heterodivalent pseudorotaxanes, the spacer effects on the barrier for the intramolecular threading step has been examined with the result that the shortest spacer causes a strained transition structure and thus the second binding event occurs slower than that of the longer spacers. The activation enthalpies and entropies show clear trends. While the longer spacers reduce the enthalpic strain that is present in the transition state for the shortest member of the series, the longer spacers become entropically slightly more unfavorable because of conformational fixation of the spacer chain during the second binding event. These results clearly show the noninnocent spacers to complicate the analysis of multivalent binding. An approximate description which considers the binding sites to be connected just by a flexible chain turns out to be more a rough approximation than a good model. The second conclusion from the results presented here is that multivalency is expressed in both the thermodynamics and the kinetics in different ways. A spacer optimized for strong binding is suboptimal for fast pseudorotaxane formation.
具有不同间隔物连接两个轴铵结合位点的同型和异型冠铵伪轮烷已通过 NMR 光谱和 ESI 质谱法进行了合成和表征。同型伪轮烷的研究涉及二价结合的热力学和螯合协同作用。最短的间隔物表现出比较长间隔物强得多的螯合协同作用。根据晶体结构,可以通过非无辜间隔物来解释这一点,该间隔物除了两个结合位点外还对结合强度有贡献。间隔物长度的非常细微的变化,即引入额外的亚甲基,会导致协同结合强度发生实质性变化,这体现在有效摩尔浓度的巨大差异上。对于类似的异型伪轮烷系列,已经检查了间隔物对分子内穿线步骤的障碍的影响,结果表明最短的间隔物导致应变过渡结构,因此第二个结合事件比较长的间隔物发生得更慢。活化焓和熵表现出明显的趋势。虽然较长的间隔物降低了最短成员的过渡态中存在的焓应变,但由于第二个结合事件期间间隔物链的构象固定,较长的间隔物在熵上变得略微不利。这些结果清楚地表明非无辜间隔物使多价结合的分析变得复杂。一个考虑到仅由柔性链连接的结合位点的近似描述结果证明是一个粗略的近似,而不是一个好的模型。这里提出的结果的第二个结论是,多价性以不同的方式在热力学和动力学中表达。优化用于强结合的间隔物对于快速伪轮烷形成是次优的。