Spectroscopic Characterization of Tetravalent Berkelium

J Joshua J. Woods J Jennifer N. Wacker S S. Olivia Gunther (Chemical Sciences Division Lawrence Berkeley National Laboratory Berkeley California USA) L Lucia Amidani (The Rossendorf Beamline, European Synchrotron Radiation Facility, 71, Avenue des Martyrs, CS 40220, Grenoble Cedex 9 38043, France) J Jeffrey R. McLachlan (Chemical Sciences Division Lawrence Berkeley National Laboratory Berkeley California USA) A Alex Rigby (Chemical Sciences Division Lawrence Berkeley National Laboratory Berkeley California USA) A Appie Peterson (Chemical Sciences Division Lawrence Berkeley National Laboratory Berkeley California USA) L Luis M. Aguirre Quintana (Chemical Sciences Division Lawrence Berkeley National Laboratory Berkeley California USA) C Corwin H. Booth (Chemical Sciences Division Lawrence Berkeley National Laboratory Berkeley California USA) D David K. Shuh W Wayne W. Lukens (Chemical Sciences Division Lawrence Berkeley National Laboratory Berkeley California USA) K Kristina O. Kvashnina (The Rossendorf Beamline, European Synchrotron Radiation Facility, 71, Avenue des Martyrs, CS 40220, Grenoble Cedex 9 38043, France) R Rebecca J. Abergel

Abstract

ABSTRACT We report X‐ray absorption spectroscopy (XAS) studies of tetravalent berkelium (Bk). Chelation of Bk III by siderophore‐inspired chelators stabilized Bk IV under mild conditions, as confirmed by absorption and luminescence spectroscopies and supported by surrogate experiments with the lanthanide counterpart to Bk, cerium (Ce). The Bk complexes remained, at least partially, in the tetravalent oxidation state under the high‐energy X‐ray beam despite previous attempts that had resulted in immediate in situ beam reduction, owing to cryogenic measurements on solid‐state complexes. Computational calculations matched the experimental data, and Bk IV –O interatomic distances were determined by extended X‐ray absorption fine structure measurements (EXAFS) to gain understanding into Bk IV coordination behavior with organic ligands. These results pave the way for future studies of Bk IV and other transplutonium compounds to investigate electronic structure and complexation behavior across the 5 f series.

Article Details

Volume / Issue Vol. 65, Issue 17
Published April 20, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (13)

J

Joshua J. Woods

J

Jennifer N. Wacker

S

S. Olivia Gunther

Chemical Sciences Division Lawrence Berkeley National Laboratory Berkeley California USA

L

Lucia Amidani

The Rossendorf Beamline, European Synchrotron Radiation Facility, 71, Avenue des Martyrs, CS 40220, Grenoble Cedex 9 38043, France

J

Jeffrey R. McLachlan

Chemical Sciences Division Lawrence Berkeley National Laboratory Berkeley California USA

A

Alex Rigby

Chemical Sciences Division Lawrence Berkeley National Laboratory Berkeley California USA

A

Appie Peterson

Chemical Sciences Division Lawrence Berkeley National Laboratory Berkeley California USA

L

Luis M. Aguirre Quintana

Chemical Sciences Division Lawrence Berkeley National Laboratory Berkeley California USA

C

Corwin H. Booth

Chemical Sciences Division Lawrence Berkeley National Laboratory Berkeley California USA

D

David K. Shuh

W

Wayne W. Lukens

Chemical Sciences Division Lawrence Berkeley National Laboratory Berkeley California USA

K

Kristina O. Kvashnina

The Rossendorf Beamline, European Synchrotron Radiation Facility, 71, Avenue des Martyrs, CS 40220, Grenoble Cedex 9 38043, France

R

Rebecca J. Abergel