4.8 Article

Photoelectron spectra of alkali metal-ammonia microjets: From blue electrolyte to bronze metal

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SCIENCE
卷 368, 期 6495, 页码 1086-+

出版社

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.aaz7607

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资金

  1. European Regional Development Fund (project ChemBioDrug) [CZ.02.1.01/0.0/0.0/16_019/0000729]
  2. Charles University [Primus16/SCI/27/247019]
  3. U.S. National Science Foundation [CHE-1665532]
  4. University of Chemistry and Technology, Prague
  5. IMPRS Dresden
  6. States of Jersey Postgraduate Bursary
  7. Deutsche Forschungsgemeinschaft [SE2253/3-1]
  8. Max-Planck-Geselischaft
  9. JSPS KAKENHI [JP18K14178]
  10. Egyptian Ministry of Higher Education
  11. Egyptian Culture Office in Berlin
  12. YouTube popular science channel ThunderfOOt
  13. Ain Shams University

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Experimental studies of the electronic structure of excess electrons in liquids archetypal quantum solutes have been largely restricted to very dilute electron concentrations We overcame this limitation by applying soft x-ray photoelectron spectroscopy to characterize excess electrons originating from steadily increasing amounts of alkali metals dissolved in refrigerated liquid ammonia microjets. As concentration rises, a narrow peak at similar to 2 electron volts, corresponding to vertical photodetachment of localized solvated electrons and dielectrons, transforms continuously into a band with a sharp Fermi edge accompanied by a plasmon peak, characteristic of delocalized metallic electrons. Through our experimental approach combined with ab initio calculations of localized electrons and dielectrons, we obtain a clear picture of the energetics and density of states of the ammoniated electrons over the gradual transition from dilute blue electrolytes to concentrated bronze metallic solutions.

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