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在小角中子衍射仪KWS-2上,研究从纳米和微米尺寸的宽长度尺度上的软物质和生物系统。

Studying Soft-matter and Biological Systems over a Wide Length-scale from Nanometer and Micrometer Sizes at the Small-angle Neutron Diffractometer KWS-2.

作者信息

Radulescu Aurel, Szekely Noemi Kinga, Appavou Marie-Sousai, Pipich Vitaliy, Kohnke Thomas, Ossovyi Vladimir, Staringer Simon, Schneider Gerald J, Amann Matthias, Zhang-Haagen Bo, Brandl Georg, Drochner Matthias, Engels Ralf, Hanslik Romuald, Kemmerling Günter

机构信息

Jülich Centre for Neutron Science Outstation at MLZ, Forschungszentrum Jülich GmbH;

Jülich Centre for Neutron Science Outstation at MLZ, Forschungszentrum Jülich GmbH.

出版信息

J Vis Exp. 2016 Dec 8(118):54639. doi: 10.3791/54639.

DOI:10.3791/54639
PMID:28060296
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5226371/
Abstract

The KWS-2 SANS diffractometer is dedicated to the investigation of soft matter and biophysical systems covering a wide length scale, from nm to µm. The instrument is optimized for the exploration of the wide momentum transfer Q range between 1x10 and 0.5 Å by combining classical pinhole, focusing (with lenses), and time-of-flight (with chopper) methods, while simultaneously providing high-neutron intensities with an adjustable resolution. Because of its ability to adjust the intensity and the resolution within wide limits during the experiment, combined with the possibility to equip specific sample environments and ancillary devices, the KWS-2 shows a high versatility in addressing the broad range of structural and morphological studies in the field. Equilibrium structures can be studied in static measurements, while dynamic and kinetic processes can be investigated over time scales between minutes to tens of milliseconds with time-resolved approaches. Typical systems that are investigated with the KWS-2 cover the range from complex, hierarchical systems that exhibit multiple structural levels (e.g., gels, networks, or macro-aggregates) to small and poorly-scattering systems (e.g., single polymers or proteins in solution). The recent upgrade of the detection system, which enables the detection of count rates in the MHz range, opens new opportunities to study even very small biological morphologies in buffer solution with weak scattering signals close to the buffer scattering level at high Q. In this paper, we provide a protocol to investigate samples with characteristic size levels spanning a wide length scale and exhibiting ordering in the mesoscale structure using KWS-2. We present in detail how to use the multiple working modes that are offered by the instrument and the level of performance that is achieved.

摘要

KWS-2小角中子散射衍射仪专门用于研究软物质和生物物理系统,其涵盖从纳米到微米的广泛长度尺度。该仪器通过结合经典针孔、聚焦(使用透镜)和飞行时间(使用斩波器)方法,针对1×10至0.5 Å的宽动量转移Q范围进行了优化,同时以可调分辨率提供高中子强度。由于其在实验过程中能够在很宽的范围内调节强度和分辨率,再加上可以配备特定的样品环境和辅助设备,KWS-2在解决该领域广泛的结构和形态学研究方面具有很高的通用性。可以在静态测量中研究平衡结构,而动态和动力学过程可以通过时间分辨方法在从几分钟到几十毫秒的时间尺度上进行研究。使用KWS-2研究的典型系统涵盖从具有多个结构层次的复杂分级系统(例如凝胶、网络或宏观聚集体)到小的且散射较弱的系统(例如溶液中的单个聚合物或蛋白质)。检测系统最近的升级使得能够检测兆赫兹范围内的计数率,这为在高Q值下研究缓冲溶液中散射信号非常弱且接近缓冲液散射水平的甚至非常小的生物形态开辟了新机会。在本文中,我们提供了一种使用KWS-2研究具有跨越广泛长度尺度且在介观尺度结构中呈现有序性的特征尺寸水平的样品的方案。我们详细介绍了如何使用该仪器提供的多种工作模式以及所实现的性能水平。

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