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纳米氨气溶胶粒子的速度成像依赖于尺寸的光电离电子显微镜。

Size-dependent velocity map photoelectron imaging of nanosized ammonia aerosol particles.

机构信息

Laboratory of Physical Chemistry, ETH Zürich , Wolfgang-Pauli-Strasse 10, CH-8093 Zürich, Switzerland.

出版信息

J Phys Chem A. 2013 Dec 19;117(50):13326-35. doi: 10.1021/jp406313a. Epub 2013 Aug 14.

Abstract

The size dependence of the band position, the bandwidth, and the asymmetry parameter in the valence photoelectron spectrum of ammonia clusters and ultrafine ammonia aerosol particles is investigated for aggregates with diameters up to ~7 nm. The neutral aggregates are ionized by single photons at 13.318 eV from a tabletop vacuum ultraviolet laser. The photoelectrons are detected in a velocity map imaging photoelectron spectrometer. The size distributions of the neutral aggregates are determined independently using the Na-doping method. Up to clusters with a few tens of molecules, the first ionization energy (value at band maximum) decreases, the width of the lowest band in the photoelectron spectrum broadens, and the corresponding asymmetry parameter decreases with increasing cluster size. Constant ("plateau") values of these parameters are found for larger aggregates, which might be explained by a predominantly noncrystalline structure of these aggregates with an average coordination similar to that of the liquid. This explanation is in agreement with previous infrared studies and theoretical predictions.

摘要

研究了氨团簇和超细氨气溶胶颗粒价光电谱中带位置、带宽和不对称参数随粒径的变化,粒径高达~7nm。中性团簇通过台式真空紫外激光的 13.318eV 单光子电离。光电电子在速度映射成像光电电子谱仪中检测。使用 Na 掺杂法独立确定中性团簇的尺寸分布。对于几十到几百个分子的团簇,第一电离能(带最大值处的值)降低,光电谱中最低能带的宽度变宽,相应的不对称参数随团簇尺寸的增加而减小。对于较大的团簇,这些参数会出现恒定(“平台”)值,这可以通过这些团簇主要具有类似于液体的平均配位数的非晶结构来解释。这一解释与之前的红外研究和理论预测一致。

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