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Functionally Rigid and Degenerate Molecular Shuttles

机译:功能刚性和简并的分子梭

摘要

The preparation and dynamic behavior of two functionally rigid and degenerate [2]rotaxanes (1•4 PF_6 and 2•4 PF_6) in which a π-electron deficient tetracationic cyclophane, cyclobis(paraquat-p-phenylene) (CBPQT4+) ring, shuttles back and forth between two π-electron-rich naphthalene (NP) stations by making the passage along an ethynyl-phenylene-(PH)-ethynyl or butadiyne rod, are described. The [2]rotaxanes were synthesized by using the clipping approach to template-directed synthesis, and were characterized by NMR spectroscopic and mass spectrometric analyses. ^1H NMR spectra of both [2]rotaxanes show evidence for the formation of mechanically interlocked structures, resulting in the upfield shifts of the resonances for key protons on the dumbbell-shaped components. In particular, the signals for the peri protons on the NP units in the dumbbell-shaped components experienced significant upfield shifts at low temperatures, just as has been observed in the flexible [2]rotaxanes. Interestingly, the resonances for the same protons did not exhibit a significant upfield shift at 298 K, but rather only a modest shift. This phenomenon arises from the much reduced binding of the ethynyl-NP unit compared to the 1,5-dioxy-NP unit. This effect, in turn, increases the shuttling rate when compared to the 1,5-dioxy-NP-based rotaxane systems investigated previously. The kinetic and thermodynamic data of the shuttling behavior of the CBPQT^(4+) ring between the NP units were obtained by variable-temperature NMR spectroscopy and using the coalescence method to calculate the free energies of activation (ΔG_c≠) of 9.6 and 10.3 kcal mol^(-1) for 1•4 PF_6 and 2•4 PF_6, respectively, probed by using the rotaxane's α-bipyridinium protons. The solid-state structure of the free dumbbell-shaped compound (3) shows the fully rigid ethynyl-PH-ethynyl linker with a length (8.1 Å) twice as long as that (3.8 Å) of the butadiyne linker. Full-atomistic simulations were carried out with the DREIDING force field (FF) to probe the degenerate molecular shuttling processes, and afforded shuttling energy barriers (ΔG_c=10.4 kcal mol^(-1) for 1•4 PF_6 and 2•4 PF_6) that are in good agreement with the experimental values (ΔG_c=9.6 and 10.3 kcal mol^(-1) for 1•4 PF_6 and 2•4 PF_6, respectively, probed by using their α-bipyridinium protons).
机译:两种功能性刚性和简并[2]轮烷(1•4 PF_6和2•4 PF_6)的制备和动力学行为,其中一个π电子缺陷型四阳离子环烷,环双(百草枯-对亚苯基)(CBPQT4 +)环,航天飞机描述了通过沿着乙炔基-亚苯基-(PH)-乙炔基或丁二炔棒的通道在两个富π电子的萘(NP)站之间来回移动。 [2]轮烷烷是采用限幅法进行模板定向合成的,并通过核磁共振波谱和质谱分析对其进行表征。两种[2]轮烷的1 H NMR光谱均显示出形成机械互锁结构的证据,从而导致了哑铃形部件上关键质子共振的高场移位。尤其是,在哑铃形组件中,NP单元周围单元质子的信号在低温下会发生明显的高场偏移,就像在柔性[2]轮烷中所观察到的那样。有趣的是,相同质子的共振在298 K时并未表现出明显的高场偏移,而只是适度的偏移。这种现象是由于乙炔基-NP单元与1,5-二氧-NP单元的结合大大减少。与先前研究的基于1,5-二氧-NP的轮烷体系相比,该作用反过来又增加了穿梭速率。通过变温NMR光谱并使用聚结法计算出9.6和10.3的活化自由能(ΔG_c≠),获得了NP单元之间CBPQT ^(4+)环穿梭行为的动力学和热力学数据。用轮烷的α-联吡啶质子探测了1•4 PF_6和2•4 PF_6的kcal mol ^(-1)。游离哑铃状化合物(3)的固态结构显示出完全刚性的乙炔基-PH-乙炔基连接体,其长度(8.1Å)是丁二炔连接体的长度(3.8Å)的两倍。利用DREIDING力场(FF)进行了全原子模拟,以探测简并的分子穿梭过程,并提供了穿梭能垒(1•4 PF_6和2•4 PF_6的ΔG_c= 10.4 kcal mol ^(-1))与实验值(分别使用α-联吡啶质子探测的1•4 PF_6和2•4 PF_6的ΔG_c= 9.6和10.3 kcal mol ^(-1)很好地吻合。

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