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Photo-controllable self-assembly of azobenzene-decorated nanoparticles in bulk: Computer simulation study

机译:偶氮苯修饰纳米粒子的光控自组装:计算机模拟研究

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We study the photo-controllable self-assembly of the azobenzene-functionalised nanoparticles using coarse-grained molecular dynamics simulations. With no illumination applied, a monodomain smectic morphology is formed only via cooling the isotropic system at sufficiently slow rate. Upon irradiation with appropriate wavelength and intensity, the azobenzenes undergo trans-eis-trans photoisomerisation cycles which unlock the interdomain links and induce uniaxial orientation of domains with their local director perpendicular to the polarisation axis of irradiation. As demonstrated by the simulations, this transition can spead-up essentially the self-assembly of decorated nanoparticles from the isotropic to the monodomain smectic phase, both via gradual cooling down and via quenching in a broad temperature interval below the smectic-isotropic transition.
机译:我们使用粗粒度的分子动力学模拟研究了偶氮苯官能化的纳米粒子的光控自组装。在不施加照明的情况下,仅通过以足够慢的速度冷却各向同性系统来形成单畴近晶形态。在以适当的波长和强度照射后,偶氮苯经历反式-反式-光异构化循环,该循环使域间连接解锁并诱导域的单轴取向,其局部指向矢垂直于辐射的偏振轴。如模拟所示,这种过渡可以通过逐渐冷却和在近晶各向同性转变以下的宽广温度区间内淬灭,来使修饰的纳米粒子从各向同性到单畴近晶相基本上自组装。

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