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低温电子能量损失谱:对玻璃化水合标本及辐射损伤的观察

Cryo-electron energy loss spectroscopy: observations on vitrified hydrated specimens and radiation damage.

作者信息

Leapman R D, Sun S

机构信息

Biomedical Engineering and Instrumentation Program, NCRR, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

Ultramicroscopy. 1995 Jul;59(1-4):71-9. doi: 10.1016/0304-3991(95)00019-w.

Abstract

Valence electron energy loss spectroscopy (EELS) has been used to characterize the composition of frozen-hydrated specimens in the electron microscope. Fine structure in the energy range up to 30 eV provides a means of distinguishing between vitreous and crystalline ice. Some features of the ice spectrum can be understood in terms of transitions between molecular orbitals in the water molecule and by the existence of excitons in the solid. Spectra from hydrated biological specimens can be analyzed to obtain quantitative estimates of the water content by fitting contributions from the ice and organic components. EELS also provides information about the radiation chemistry that occurs when hydrated specimens are exposed to the electron beam. From the observation of the hydrogen K-edge at approximately 13 eV, it can be deduced that bubbles of molecular hydrogen are evolved during irradiation at doses of > 10(4) nm-2, and that these bubbles contain gas at pressures in excess of one thousand atmospheres.

摘要

价电子能量损失谱(EELS)已被用于在电子显微镜中表征冷冻水合标本的成分。高达30 eV能量范围内的精细结构提供了一种区分玻璃态冰和结晶冰的方法。冰谱的一些特征可以通过水分子中分子轨道之间的跃迁以及固体中激子的存在来理解。通过拟合冰和有机成分的贡献,可以分析水合生物标本的光谱以获得水含量的定量估计。EELS还提供了有关水合标本暴露于电子束时发生的辐射化学的信息。从大约13 eV处氢K边的观察结果可以推断,在剂量> 10(4) nm-2的辐照过程中会产生分子氢气泡,并且这些气泡中的气体压力超过一千个大气压。

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