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Time-Resolved Soft X-ray Diffraction Reveals Transient Structural Distortions of Ternary Liquid Crystals

机译:时间分辨的软X射线衍射揭示了三元液晶的瞬态结构畸变

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摘要

Home-based soft X-ray time-resolved scattering experiments with nanosecond time resolution (10 ns) and nanometer spatial resolution were carried out at a table top soft X-ray plasma source (2.2–5.2 nm). The investigated system was the lyotropic liquid crystal C16E7/paraffin/glycerol/formamide/IR 5. Usually, major changes in physical, chemical, and/or optical properties of the sample occur as a result of structural changes and shrinking morphology. Here, these effects occur as a consequence of the energy absorption in the sample upon optical laser excitation in the IR regime. The liquid crystal shows changes in the structural response within few hundred nanoseconds showing a time decay of 182 ns. A decrease of the Bragg peak diffracted intensity of 30% and a coherent macroscopic movement of the Bragg reflection are found as a response to the optical pump. The Bragg reflection movement is established to be isotropic and diffusion controlled (1 μs). Structural processes are analyzed in the Patterson analysis framework of the time-varying diffraction peaks revealing that the inter-lamellar distance increases by 2.7 Å resulting in an elongation of the coherently expanding lamella crystallite. The present studies emphasize the possibility of applying TR-SXRD techniques for studying the mechanical dynamics of nanosystems.
机译:在台式软X射线等离子体源(2.2–5.2 nm)上进行了具有纳秒级时间分辨率(10 ns)和纳米级空间分辨率的家用软X射线时间分辨散射实验。研究的系统是溶致液晶C16E7 /石蜡/甘油/甲酰胺/ IR5。通常,样品的物理,化学和/或光学性质发生重大变化,这是结构变化和收缩形貌的结果。在此,这些效应是由于在红外条件下光学激光激发后样品中的能量吸收而产生的。液晶在几百纳秒内显示出结构响应的变化,显示出182 ns的时间衰减。发现布拉格峰衍射强度降低了30%,并且布拉格反射的宏观相干运动是对光泵的响应。布拉格反射运动被确定为各向同性且受扩散控制(1μs)。在随时间变化的衍射峰的Patterson分析框架中分析了结构过程,结果表明层间距离增加了2.7Å,导致相干扩展的层状微晶伸长。本研究强调了应用TR-SXRD技术研究纳米系统力学动力学的可能性。

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