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利用速度图成像技术对纳米颗粒进行软 X 射线光谱学研究。

Soft X-ray spectroscopy of nanoparticles by velocity map imaging.

机构信息

Chemical Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA.

出版信息

J Chem Phys. 2017 Jul 7;147(1):013931. doi: 10.1063/1.4982822.

Abstract

Velocity map imaging (VMI), a technique traditionally used to study chemical dynamics in the gas phase, is applied here to study X-ray photoemission from aerosol nanoparticles. Soft X-rays from the Advanced Light Source synchrotron, probe a beam of nanoparticles, and the resulting photoelectrons are velocity mapped to obtain their kinetic energy distributions. A new design of the VMI spectrometer is described. The spectrometer is benchmarked by measuring vacuum ultraviolet photoemission from gas phase xenon and squalene nanoparticles followed by measurements using soft X-rays. It is demonstrated that the photoelectron distribution from X-ray irradiated squalene nanoparticles is dominated by secondary electrons. By scanning the photon energies and measuring the intensities of these secondary electrons, a near edge X-ray absorption fine structure (NEXAFS) spectrum is obtained. The NEXAFS technique is used to obtain spectra of aqueous nanoparticles at the oxygen K edge. By varying the position of the aqueous nanoparticle beam relative to the incident X-ray beam, evidence is presented such that the VMI technique allows for NEXAFS spectroscopy of water in different physical states. Finally, we discuss the possibility of applying VMI methods to probe liquids and solids via X-ray spectroscopy.

摘要

速度成像(VMI)是一种传统上用于研究气相化学动力学的技术,现应用于研究气溶胶纳米颗粒的 X 射线光电子发射。来自高级光源同步加速器的软 X 射线探测一束纳米颗粒,所得光电子被速度成像以获得其动能分布。描述了一种新的 VMI 光谱仪设计。通过测量气相氙气和角鲨烯纳米颗粒的真空紫外光电子发射来对标该光谱仪,然后使用软 X 射线进行测量。结果表明,X 射线辐照角鲨烯纳米颗粒产生的光电子分布主要由二次电子组成。通过扫描光子能量并测量这些二次电子的强度,获得近边 X 射线吸收精细结构(NEXAFS)谱。NEXAFS 技术用于获得氧 K 边水合纳米颗粒的谱图。通过改变水合纳米颗粒束相对于入射 X 射线束的位置,证明 VMI 技术允许对不同物理状态下的水进行 NEXAFS 光谱学研究。最后,我们讨论了通过 X 射线光谱学应用 VMI 方法探测液体和固体的可能性。

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