close menu

Navigation

  • Home
  • Research
    • Terahertz Spectroscopy
    • Density Functional Theory
    • Machine Learning
    • Organic Semiconductors
    • Porous Materials
    • Pharmaceutical Solids
    • Biological Materials
  • People
    • Michael Ruggiero
    • William Stoll
    • Johanna Koelbel
    • Alejandro Alvarez
    • Maria Petrov
    • Michele Pittalis
    • Alonso Acosta Vera
    • Josephine Hastings
    • Former Members
  • IRES CRYSTAL Dynamics
    • 2026 IRES Symposium
    • IRES Blog
    • 2026 Cohort
    • Keira Davies
    • Andrew Foster
    • Dominic Glaze
    • Anna Gribik
    • Lincoln Katleski
    • Simon Krasnow
    • Marietta Psarros
    • Ava Schaldecker
    • William Stoll
  • Publications
    • Publications
    • Cover Article Gallery
  • News
    • General
    • New Publication!
    • Shenanigans
    • Travels
  • Home
  • Research
  • People
  • IRES CRYSTAL Dynamics
  • Publications
  • News
  • Home
  • Research
  • People
  • IRES CRYSTAL Dynamics
  • Publications
  • News

Ruggiero Research Lab

navigation
log in or register
  • Home
  • Research
    • Terahertz Spectroscopy
    • Density Functional Theory
    • Machine Learning
    • Organic Semiconductors
    • Porous Materials
    • Pharmaceutical Solids
    • Biological Materials
  • People
    • Michael Ruggiero
    • William Stoll
    • Johanna Koelbel
    • Alejandro Alvarez
    • Maria Petrov
    • Michele Pittalis
    • Alonso Acosta Vera
    • Josephine Hastings
    • Former Members
  • IRES CRYSTAL Dynamics
    • 2026 IRES Symposium
    • IRES Blog
    • 2026 Cohort
    • Keira Davies
    • Andrew Foster
    • Dominic Glaze
    • Anna Gribik
    • Lincoln Katleski
    • Simon Krasnow
    • Marietta Psarros
    • Ava Schaldecker
    • William Stoll
  • Publications
    • Publications
    • Cover Article Gallery
  • News
    • General
    • New Publication!
    • Shenanigans
    • Travels

New Publication!

Browse:

  • News
  • New Publication!
New Publication!

New Publication in Chemical Science: Linking Low-Frequency Dynamics to Actinide-Ligand Bonding

Our new work, “Terahertz dynamics at the actinide frontier: linking low-frequency vibrations, electronic structure, and bonding in molecular uranium complexes”…

Michele Pittalis 0July 17, 2026
New Publication!

New Work with Topochemical Reactions

We are very excited to share our latest research project involving topochemistry and terahertz spectroscopy, shedding light onto the mechanistic…

Will Stoll 0March 3, 2026
New Publication! Will StollNovember 18, 2025 0

New Publication in Chemical Science

Author: Michele Pittalis I’m excited to share our latest publication in Chemical Science, a great collaboration with Dominic Shiels and the group of Prof. Ellen Matson at the University of…Continue Reading →

New Publication!





New Publication in
J. Mater. Chem. C

Congratulations to group members Peter Banks and Mark Mancini on their recent publication in the Journal of Materials Chemistry C.…

michael_ruggiero 0July 13, 2020
New Publication!

Recent Publication Featured on the Cover of J. Phys. Chem. C

Recent publication in the Journal of Physical Chemistry C on the link between terahertz vibration and the mechanochemical response of…

michael_ruggiero 0November 14, 2018
New Publication! michael_ruggieroOctober 11, 2018 0

Recent Publication in Phys. Rev. Lett. on Disordered Crystals

Continue Reading →

Tweets

Tweets by RugGroup

Recent Posts

  • New Publication in Chemical Science: Linking Low-Frequency Dynamics to Actinide-Ligand Bonding
  • Michele attends the Los Alamos Computational Condensed Matter Summer School 2026
  • Week 5: Exploring Emilia-Romagna and Beyond
  • Ruggiero Group Attends the 2026 Crystal Engineering GRC
  • Week 4: An Abundant Week of Perspective Shifts Abroad
  • Home
  • Research
  • People
  • IRES CRYSTAL Dynamics
  • Publications
  • News
  • Home
  • Research
  • People
  • IRES CRYSTAL Dynamics
  • Publications
  • News

Copyright © 2026 Ruggiero Research Lab. All rights reserved

Ruggiero Research Lab

Neville theme by Acosmin