Materials Properties and Solvated Electron Dynamics of Isolated Nanoparticles and Nanodroplets Probed with Ultrafast Extreme Ultraviolet Beams

Jennifer L. Ellis, Daniel D. Hickstein, Wei Xiong, Franklin Dollar, Brett B. Palm, K. Ellen Keister, Kevin M. Dorney, Chengyuan Ding, Tingting Fan, Molly B. Wilker, Kyle J. Schnitzenbaumer, Gordana Dukovic, Jose L. Jimenez, Henry C. Kapteyn, Margaret M. Murnane

Research output: Contribution to journalArticlepeer-review

27 Scopus citations

Abstract

We present ultrafast photoemission measurements of isolated nanoparticles in vacuum using extreme ultraviolet (EUV) light produced through high harmonic generation. Surface-selective static EUV photoemission measurements were performed on nanoparticles with a wide array of compositions, ranging from ionic crystals to nanodroplets of organic material. We find that the total photoelectron yield varies greatly with nanoparticle composition and provides insight into material properties such as the electron mean free path and effective mass. Additionally, we conduct time-resolved photoelectron yield measurements of isolated oleylamine nanodroplets, observing that EUV photons can create solvated electrons in liquid nanodroplets. Using photoemission from a time-delayed 790 nm pulse, we observe that a solvated electron is produced in an excited state and subsequently relaxes to its ground state with a lifetime of 151 ± 31 fs. This work demonstrates that femotosecond EUV photoemission is a versatile surface-sensitive probe of the properties and ultrafast dynamics of isolated nanoparticles.

Original languageEnglish
Pages (from-to)609-615
Number of pages7
JournalJournal of Physical Chemistry Letters
Volume7
Issue number4
DOIs
StatePublished - Feb 18 2016

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