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Dynamics of alkoxy-oligothiophene ground and excited states in nanochannels

机译:纳米通道中烷氧基-低聚噻吩基态和激发态的动力学

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Two oligothiophenes, 4,4'-dipentoxy-2,2'-dithiophene and 4,4"-dipentoxy-2,2':5',2":5",2"'-tetrathiophene, have been included in the nanochannels of the autoassembling host TPP (tris-o-phenylenedioxycyclotriphosphazene). The effect of the confinement on the structure and properties of the two dyes, as conformational arrangements, dynamics, and photophysical behavior, was addressed by the combination of high spinning speed solid-state NMR and time-resolved EPR spectroscopy. We compared the conformations of the dyes in their ground and photoexcited triplet states and described in detail the dynamics of the supramolecular adducts from 4 K to room temperature. Above 200 K surprisingly fast spinning rates of the dithiophene core were discovered, while the side chains show far slower reorientation motion, being in bulky gauche-rich conformations. These lateral plugs keep the planar core as appended in the space like a nanoscale gyroscope, allowing a reorientation in the motion regime of liquids and a long triplet lifetime at unusually high temperature. The nuclear magnetic properties of the guest dyes are also largely affected by the aromatic rings of the neighboring host, imparting an impressive magnetic susceptibility effect (2 ppm proton shift). The high mobility is due to the formation of a nanocage in a channel where aliphatic and aromatic functions isolate the thiophene moieties. Instead, two conformers of the tetrathiophene twisted on the central bond are stabilized by interaction with the host. They interconvert fast enough to be averaged in the NMR time scale.
机译:纳米通道中已包含两个低聚噻吩,4,4'-二戊氧基-2,2'-二噻吩和4,4“-二戊氧基-2,2':5',2”:5“,2”'-四噻吩自组装主体TPP(三-邻-苯二氧基环三磷腈)的结构。结合高旋转速度固态NMR和时间分辨EPR光谱,可以解决禁闭对两种染料的结构和性质的影响,如构象排列,动力学和光物理行为。我们比较了染料在其基态和光激发三重态下的构象,并详细描述了从4 K到室温的超分子加合物的动力学。在200 K以上,发现了噻吩核心的快速纺丝速率,而侧链则表现出慢得多的重新定向运动,呈庞大的薄纱状构象。这些侧向塞子像纳米级陀螺仪一样,将扁平核保持在空间中,从而可以重新定向液体的运动状态,并在异常高温下具有较长的三重态寿命。客体染料的核磁特性在很大程度上也受到邻近主体的芳环的影响,从而产生令人印象深刻的磁化率效应(2 ppm质子位移)。高迁移率是由于在脂族和芳族官能团隔离了噻吩部分的通道中形成了纳米笼。相反,在中心键上扭曲的四噻吩的两个构象异构体通过与宿主的相互作用而稳定。它们相互转换的速度足够快,可以在NMR时间范围内平均。

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