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Molecular dynamics of pyrene based discotic liquid crystals confined in nanopores probed by incoherent quasielastic neutron scattering

机译:非相干准弹性中子散射探测的pyr基盘状液晶的分子动力学

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Semiconducting nanowires made of discotic columnar liquid crystals can be obtained by impregnation into solid nanoporous templates, and provide new opportunities to tailor devices for organic electronics with promising charge carriers transport properties. These properties are tightly related to the self-assembly and molecular dynamics of the discotic columns inside the nanowires. We recently studied and rationalized the formation of different nanostructures in the columnar phase of pyrene derivative discotics nanoconfined in anodic alumina and porous silicon templates ([Cerclier et al., J. Phys. Chem. C, 2012, 116, 18990-18998, Kityk et al., Soft Matter, 2014, 10, 4522-4534]). We now present the molecular dynamics of nano-confined pyrene derivative mesogenic phases as studied by incoherent quasielastic neutron scattering over a broad range of correlation times. The combination of backscattering and time-of-flight techniques has allowed to describe the nature of the molecular motions at play on the pico to nanosecond time scale. The dynamics of the columnar phase is dominated by fluctuations of the lateral chains, while the onset of larger amplitude motions like whole-body reorientations and slow center-of-mass translational diffusion occurs at high temperature in the isotropic phase. Interestingly, nano-confinement does not qualitatively alter the nature of the molecular dynamics, but essentially blocks the long range translational motions and induces broader distributions of correlation times of the fastest local relaxations.
机译:由盘状柱状液晶制成的半导体纳米线可通过将其浸渍到固体纳米多孔模板中而获得,并为定制有机电子器件提供了新的机会,这些器件具有良好的载流子传输特性。这些性质与纳米线内盘状柱的自组装和分子动力学紧密相关。我们最近研究并合理化了纳米约束在阳极氧化铝和多孔硅模板中的pyr衍生物圆盘形柱状相中不同纳米结构的形成([Cerclier等人,J。Phys。Chem。C,2012,116,18990-18998,Kityk等人,Soft Matter,2014,10,4522-4534]。现在,我们通过不相干的准弹性中子散射在相关时间范围内研究了纳米约束的derivative衍生物介晶相的分子动力学。反向散射和飞行时间技术的结合已经可以描述皮秒至纳秒级时分子运动的性质。柱状相的动力学主要受侧链波动的影响,而各向同性相则在高温下发生较大幅度的运动,如全身重新定向和缓慢的质心平移扩散。有趣的是,纳米约束不会从质上改变分子动力学的性质,但会实质上阻止远距离平移运动,并引起最快局部弛豫的相关时间分布更宽。

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