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使用声悬浮液滴进行结构分析。

Structure analysis using acoustically levitated droplets.

作者信息

Leiterer J, Delissen F, Emmerling F, Thünemann A F, Panne U

机构信息

BAM Federal Institute for Materials Research and Testing-Analytical Chemistry, I.3 Structural Analysis, Reference Materials, Richard-Willstaetter-Str. 11, 10317, Berlin, Germany.

出版信息

Anal Bioanal Chem. 2008 Jun;391(4):1221-8. doi: 10.1007/s00216-008-2011-2. Epub 2008 Mar 30.

Abstract

Synchrotron diffraction with a micrometer-sized X-ray beam permits the efficient characterization of micrometer-sized samples, even in time-resolved experiments, which is important because often the amount of sample available is small and/or the sample is expensive. In this context, we will present acoustic levitation as a useful sample handling method for small solid and liquid samples, which are suspended in a gaseous environment (air) by means of a stationary ultrasonic field. A study of agglomeration and crystallization processes in situ was performed by continuously increasing the concentration of the samples by evaporating the solvent. Absorption and contamination processes on the sample container walls were suppressed strongly by this procedure, and parasitic scattering such as that observed when using glass capillaries was also absent. The samples investigated were either dissolved or dispersed in water droplets with diameters in the range of 1 micrometer to 2 millimeters. Initial results from time-resolved synchrotron small- and wide-angle X-ray scattering measurements of ascorbic acid, acetylsalicylic acid, apoferritin, and colloidal gold are presented.

摘要

使用微米级X射线束的同步加速器衍射能够有效地对微米级样品进行表征,即使在时间分辨实验中也是如此,这一点很重要,因为通常可用的样品量很少和/或样品很昂贵。在这种情况下,我们将介绍声悬浮技术,它是一种用于处理小型固体和液体样品的有用方法,这些样品通过固定超声场悬浮在气态环境(空气)中。通过蒸发溶剂不断增加样品浓度,对团聚和结晶过程进行了原位研究。该过程极大地抑制了样品容器壁上的吸收和污染过程,并且也不存在使用玻璃毛细管时观察到的寄生散射。所研究的样品要么溶解在直径范围为1微米至2毫米的水滴中,要么分散在这些水滴中。本文给出了抗坏血酸、乙酰水杨酸、脱铁铁蛋白和胶体金的时间分辨同步加速器小角和广角X射线散射测量的初步结果。

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