Faculty Directory

Thomas Albrecht headshot

Thomas Albrecht

Professor

Contact Information

312B Coolbaugh Hall

  • Chemistry
  • Nuclear Science & Engineering

Biography

Deep into the periodic table the increasing effects of relativity, spin-orbit coupling, and the subtle rearrangement of frontier orbital energies challenges our ability to predict and understand the chemical and physical properties of heavy elements like berkelium, californium, and einsteinium. Recent experimental and computational developments reveal that models based on monotonic changes in electronic structure across heavy element series do not occur, and that perhaps the current arrangement of the periodic table has started to unravel. Our group prepares and studies rare of examples of materials and complexes of the heaviest elements for which macroscopic properties can be obtained from nuclear reactors. We use a wide variety of characterization tools, but focus extensively on advanced X-ray diffraction techniques in order to probe the electronic structure of f-block compounds. We work extensively with theorists to understand the origins of the exotic properties of these elements. The ultimate goal of this work is to understand the bonding in these elements well enough for molecules and materials to be tailored to achieve desired properties, which is currently quite challenging to achieve.

Education

  • B.S. Southwest State University (1993)
  • M.S. Northwestern University (1994)
  • Ph.D. Northwestern University (1997)
  • Postdoc, University of Illinois, (1997-1998)

Publications

  • Bai, N. B. Beck, B. Scheibe, J. M. Sperling, J. P. Brannon, B. M. Rotermund, D. Gomez Martinez, T. E. Albrecht-Schönzart, “Investigation of Pressure Effects in the Bimetallic Transplutonium Tetrazolate Complexes [(An(pmtz)2(H2O)3)2(µ-pmtz)]2(pmtz)2∙nH2O (An3+ = Cm3+, Bk3+, and Cf3+),” Journal of the American Chemical Society. 2024, 146, 7822-7830. DOI: 10.1021/jacs.4c00803
  • B. M. Rotermund, S. P. Mezyk, J. M. Sperling, N. B. Beck, H. B. Wineinger, A. R. Cook, T. E. Albrecht-Schönzart, G. P. Horne, “Chemical Kinetics for the Oxidation of Californium(III) Ions with Select Radiation-Induced Inorganic Radicals Cl2•– and SO4•–,” Journal of Physical Chemistry A, 2024, 128, 590-598. DOI: 10.1021/acs.jpca.3c07404
  • Z. Bai, J. Brannon, C. Celis-Barros, N. Beck, J. M. Sperling, B. M. Rotermund, D. Gomez Martinez, H. B. Wineinger, T. E. Albrecht-Schönzart, “Radium Revisited: Revitalization of the Coordination Chemistry of Nature’s Largest 2+ Cation,” Inorganic Chemistry, 2023, 62, 8478-8481. DOI: 10.1021/acs.inorgchem.3c01170.
  • T. N. Poe, H. Ramanantoanina, J. M. Sperling, H. B. Wineinger, B. M. Rotermund, J. Brannon, Z. Bai, B. Scheibe, N. Beck, B. N. Long, S. Justiniano, T. E. Albrecht-Schönzart, C. Celis-Barros, “Isolation of a Californium(II) Crown-Ether Complex,” Nature Chemistry, 2023, 15, 722-728. DOI: 10.1038/s41557-023-01170-9

Additional Information

https://scholar.google.com/citations?user=0pvf-AsAAAAJ&hl=en

Research Pillars

Earth | Energy | Environment | Frontiers | Fundamentals

Research Focus Areas

Advanced Resource Extraction Production & Processing | Analytical & Computational Chemistry | Decarbonizing Energy Across Industries | Engineering Solutions for a Sustainable Future | Fundamental Physics | Materials & Manufacturing of the Future | Materials Discovery | Nuclear Energy for the Modern World | Quantum Science & Engineering

Research Keywords

Advanced Characterization Techniques | Advanced Reactors | Advanced Recycling Technologies | Advanced Resource Recovery | Computational Analysis | Computational Materials Science | Critical Materials / Minerals / Metals | Enhanced Mineral Extraction | Environmental Chemistry | Extractive Metallurgy & Chemical Processing | In-Situ Recovery | Magnetic Optical & Electronic Materials | Materials Design | Materials for Energy | Materials for Extreme Environments | Materials Physics | Materials Synthesis & Processing | Mine Waste / Tailings to Resources | Mineral Processing Innovation | Nuclear Fuel Cycle | Nuclear Materials | Nuclear Physics | Nuclear Remediation | Porous Materials & Frameworks | Quantum Information Science | Quantum Materials | Quantum Mechanics | Radiation Detection & Effects | Radiochemistry | Relativity | Resource Recovery from Wastewater | Solid State Physics | Supply Chain Resilience | Thermodynamics | Waste Minimization