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Is the chemistry of lawrencium peculiar? . Wen-Hua Xu, Pekka Pyykkö
, Phys. Chem. Chem. Phys.
, 2016
, 18
, 17351
Periodic trends in trivalent actinide halides, phosphates, and arsenates . Ashutosh Parimi, Emmalee Mosher, Georg Schreckenbach
, Dalton Trans.
, 2023
, 52
, 18035
Application of radioanalytical techniques in the study of the products of heavy-ion reactions . Darleane C. Hoffman
, Analyst
, 1989
, 114
, 1087
Theoretical investigation of M@Pb12
2− and M@Sn12
2− Zintl clusters (M = Lr
n + , Lu
n + , La3+ , Ac3+ and n = 0, 1, 2, 3) . Meenakshi Joshi, Aditi Chandrasekar, Tapan K. Ghanty
, Phys. Chem. Chem. Phys.
, 2018
, 20
, 15253
Recent advances in computational actinoid chemistry . Dongqi Wang, Wilfred F. van Gunsteren, Zhifang Chai
, Chem. Soc. Rev.
, 2012
, 41
, 5836
Evolution of the Modern Periodic Table . Glenn T. Seaborg
, J. Chem. Soc., Dalton Trans.
, 1996
, 3899
After the actinides, then what? . S. A. Cotton
, Chem. Soc. Rev.
, 1996
, 25
, 219
Chapter 12. The transition elements . B. M. Chadwick, J. R. Chipperfield, P. G. Nelson, C. F. Stoneman
, Annu. Rep. Prog. Chem., Sect. A. Gen. Phys and Inorg. Chem.
, 1968
, 65
, 303
Divalent and trivalent gas-phase coordination complexes of californium: evaluating the stability of Cf(ii ) . Phuong D. Dau, David K. Shuh, Manuel Sturzbecher-Hoehne, Rebecca J. Abergel, John K. Gibson
, Dalton Trans.
, 2016
, 45
, 12338
Directed evolution of the periodic table: probing the electronic structure of late actinides . M. L. Marsh, T. E. Albrecht-Schmitt
, Dalton Trans.
, 2017
, 46
, 9316