皮克林乳剂的天然状态结构和化学特征:低温电子显微镜研究。

IF 1.9 4区 工程技术 Q3 MICROSCOPY
Dario Luis Fernandez Ainaga, Teresa Roncal-Herrero, Martha Ilett, Zabeada Aslam, Cheng Cheng, James P. Hitchcock, Olivier J. Cayre, Nicole Hondow
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引用次数: 0

摘要

透射电子显微镜可用于各种薄样品的表征,但软物质和含水样品,如凝胶、纳米颗粒分散体和乳液在显微镜真空下会变干和坍塌,因此失去了关于其原始状态的信息,最终限制了对样品的理解。本研究考察了应用于低温冷冻皮克林乳剂样品表征的透射电子显微镜常用技术。用3 ~ 5 nm的铂纳米颗粒稳定的水包油Pickering乳状液,在液态乙烷中进行低温冷冻,以保持体系的天然结构,而不会引起油滴岩心的结晶。通过对不同样品制备方法后液滴形态的比较,证实了采用柱塞冷冻法制备样品的有效性。扫描透射电子显微镜成像显示,与冷冻样品(平均直径:~ 183 nm)相比,干燥液滴在显微镜真空下坍塌,改变了它们的形状和大小(平均表观直径:~ 342 nm)。低温电子断层扫描用于收集乳化液液滴的三维形状和大小以及稳定纳米颗粒相对于液滴表面的位置的附加信息。低温能量色散x射线和电子能量损失能谱成功地获得了元素数据,并生成了元素图,以确定稳定纳米颗粒和油相。利用光谱数据生成的元素图与电子断层扫描相结合,获得了乳状液滴中油相的三维信息。尽管仔细考虑了用于本研究中提出的样品表征的成像参数,但波束对冰的损伤是样品表征的最大限制因素,限制了有效的成像分辨率和信噪比。最终,本研究表明冷冻方法对皮克林乳剂的代表性表征是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Native state structural and chemical characterisation of Pickering emulsions: A cryo-electron microscopy study

Native state structural and chemical characterisation of Pickering emulsions: A cryo-electron microscopy study

Transmission electron microscopy can be used for the characterisation of a wide range of thin specimens, but soft matter and aqueous samples such as gels, nanoparticle dispersions, and emulsions will dry out and collapse under the microscope vacuum, therefore losing information on their native state and ultimately limiting the understanding of the sample.

This study examines commonly used techniques in transmission electron microscopy when applied to the characterisation of cryogenically frozen Pickering emulsion samples. Oil-in-water Pickering emulsions stabilised by 3 to 5 nm platinum nanoparticles were cryogenically frozen by plunge-freezing into liquid ethane to retain the native structure of the system without inducing crystallisation of the droplet oil cores.

A comparison between the droplet morphology following different sample preparation methods has confirmed the effectiveness of using plunge-freezing to prepare these samples. Scanning transmission electron microscopy imaging showed that dry droplets collapse under the microscope vacuum, changing their shape and size (average apparent diameter: ∼342 nm) compared to frozen samples (average diameter: ∼183 nm). Cryogenic electron tomography was used to collect additional information of the 3D shape and size of the emulsion droplets, and the position of the stabilising nanoparticles relative to the droplet surface. Cryogenic energy dispersive X-ray and electron energy loss spectroscopy were used to successfully obtain elemental data and generate elemental maps to identify the stabilising nanoparticles and the oil phase. Elemental maps generated from spectral data were used in conjunction with electron tomography to obtain 3D information of the oil phase in the emulsion droplets.

Beam-induced damage to the ice was the largest limiting factor to the sample characterisation, limiting the effective imaging resolution and signal-to-noise ratio, though careful consideration of the imaging parameters used allowed for the characterisation of the samples presented in this study. Ultimately this study shows that cryo-methods are effective for the representative characterisation of Pickering emulsions.

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来源期刊
Journal of microscopy
Journal of microscopy 工程技术-显微镜技术
CiteScore
4.30
自引率
5.00%
发文量
83
审稿时长
1 months
期刊介绍: The Journal of Microscopy is the oldest journal dedicated to the science of microscopy and the only peer-reviewed publication of the Royal Microscopical Society. It publishes papers that report on the very latest developments in microscopy such as advances in microscopy techniques or novel areas of application. The Journal does not seek to publish routine applications of microscopy or specimen preparation even though the submission may otherwise have a high scientific merit. The scope covers research in the physical and biological sciences and covers imaging methods using light, electrons, X-rays and other radiations as well as atomic force and near field techniques. Interdisciplinary research is welcome. Papers pertaining to microscopy are also welcomed on optical theory, spectroscopy, novel specimen preparation and manipulation methods and image recording, processing and analysis including dynamic analysis of living specimens. Publication types include full papers, hot topic fast tracked communications and review articles. Authors considering submitting a review article should contact the editorial office first.
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