Narayanan Theyencheri, Dattani Rajeev, Möller Johannes, Kwaśniewski Paweł
ESRF - The European Synchrotron, 38043 Grenoble, France.
Rev Sci Instrum. 2020 Aug 1;91(8):085102. doi: 10.1063/5.0012905.
An experimental setup is presented for x-ray scattering studies of soft matter under shear flow that employs a low-background coaxial capillary cell coupled to a high-resolution commercial rheometer. The rotor of the Searle type cell is attached to the rheometer shaft, which allows the application of either steady or oscillatory shear of controlled stress or rate on the sample confined in the annular space between the stator and the rotor. The shearing device facilitates ultrasmall-angle x-ray scattering and ultrasmall-angle x-ray photon correlation spectroscopy measurements with relatively low scattering backgrounds. This enables the elucidation of weak structural features otherwise submerged in the background and probes the underlying dynamics. The performance of the setup is demonstrated by means of a variety of colloidal systems subjected to different rheological protocols. Examples include shear deformation of a short-range attractive colloidal gel, dynamics of dilute colloids in shear flow, distortion of the structure factor of a dense repulsive colloidal suspension, shear induced ordering of colloidal crystals, and alignment of multilamellar microtubes formed by a surfactant-polysaccharide mixture. Finally, the new possibilities offered by this setup for investigating soft matter subjected to shear flow by x-ray scattering are discussed.
本文介绍了一种用于在剪切流条件下对软物质进行X射线散射研究的实验装置,该装置采用了一个低背景同轴毛细管池,并与一台高分辨率商用流变仪相连。塞尔型池的转子连接到流变仪轴上,这使得能够对限制在定子和转子之间环形空间内的样品施加可控应力或速率的稳态或振荡剪切。该剪切装置有助于在相对较低的散射背景下进行超小角X射线散射和超小角X射线光子相关光谱测量。这能够阐明原本淹没在背景中的微弱结构特征,并探测其潜在动力学。通过对各种胶体系统采用不同流变学方案来展示该装置的性能。示例包括短程吸引胶体凝胶的剪切变形、稀胶体在剪切流中的动力学、浓排斥胶体悬浮液结构因子的畸变、胶体晶体的剪切诱导有序化以及由表面活性剂 - 多糖混合物形成的多层微管的排列。最后,讨论了该装置通过X射线散射研究受剪切流作用的软物质所提供的新可能性。