Stefan G. Minasian; Jason M. Keith. New evidence for 5f covalency in actinocenes determined from carbon K-edge XAS and electronic structure theory. Chemical Science. 2014, s. 351–359. Dostupné online. doi:10.1039/C3SC52030G.
D. Seyferth. Uranocene. The First Member of a New Class of Organometallic Derivatives of the f Elements. Organometallics. 2004, s. 3562–3583. doi:10.1021/om0400705.
J. Goffart; J. Fuger; D. Brown; G. Duyckaerts. On the cyclooctatetraenyl compounds of actinide elements part II. Bis-(cyclooctatetraenyl) protactinium(IV). Inorganic and Nuclear Chemistry Letters. 1974-05-01, s. 413–419. Dostupné online. ISSN0020-1650. doi:10.1021/om0400705.
Alex Avdeef; Kenneth N. Raymond; Keith O. Hodgson; Allan Zalkin. Two isostructural actinide .pi. complexes. Crystal and molecular structure of bis(cyclooctatetraenyl)uranium(IV), U(C8H8)2, and bis(cyclooctatetraenyl)thorium(IV), Th(C8H8)2. Inorganic Chemistry. 1972-05-01, s. 1083–1088. Dostupné online. ISSN0020-1669. doi:10.1021/ic50111a034.
Cory J. Windorff, Joseph M. Sperling, Albrecht-Schönzart, Zhuanling Bai, William J. Evans, Alyssa N. Gaiser, Andrew J. Gaunt, Conrad A. P. Goodwin, David E. Hobart, Zachary K. Huffman, Daniel N. Huh. A Single Small-Scale Plutonium Redox Reaction System Yields Three Crystallographically-Characterizable Organoplutonium Complexes. Inorganic Chemistry. 2020-09-21, s. 13 301 – 13 314. ISSN0020-1669. doi:10.1021/acs.inorgchem.0c01671.
Andrew Kerridge. f-Orbital covalency in the actinocenes (An = Th–Cm): multiconfigurational studies and topological analysis. RSC Advances. 2014, s. 12 078 – 12 086. Dostupné online. doi:10.1039/C3RA47088A.
dx.doi.org
J. Goffart; J. Fuger; D. Brown; G. Duyckaerts. On the cyclooctatetraenyl compounds of actinide elements part II. Bis-(cyclooctatetraenyl) protactinium(IV). Inorganic and Nuclear Chemistry Letters. 1974-05-01, s. 413–419. Dostupné online. ISSN0020-1650. doi:10.1021/om0400705.
Andrew Kerridge. f-Orbital covalency in the actinocenes (An = Th–Cm): multiconfigurational studies and topological analysis. RSC Advances. 2014, s. 12 078 – 12 086. Dostupné online. doi:10.1039/C3RA47088A.
worldcat.org
J. Goffart; J. Fuger; D. Brown; G. Duyckaerts. On the cyclooctatetraenyl compounds of actinide elements part II. Bis-(cyclooctatetraenyl) protactinium(IV). Inorganic and Nuclear Chemistry Letters. 1974-05-01, s. 413–419. Dostupné online. ISSN0020-1650. doi:10.1021/om0400705.
Alex Avdeef; Kenneth N. Raymond; Keith O. Hodgson; Allan Zalkin. Two isostructural actinide .pi. complexes. Crystal and molecular structure of bis(cyclooctatetraenyl)uranium(IV), U(C8H8)2, and bis(cyclooctatetraenyl)thorium(IV), Th(C8H8)2. Inorganic Chemistry. 1972-05-01, s. 1083–1088. Dostupné online. ISSN0020-1669. doi:10.1021/ic50111a034.
Cory J. Windorff, Joseph M. Sperling, Albrecht-Schönzart, Zhuanling Bai, William J. Evans, Alyssa N. Gaiser, Andrew J. Gaunt, Conrad A. P. Goodwin, David E. Hobart, Zachary K. Huffman, Daniel N. Huh. A Single Small-Scale Plutonium Redox Reaction System Yields Three Crystallographically-Characterizable Organoplutonium Complexes. Inorganic Chemistry. 2020-09-21, s. 13 301 – 13 314. ISSN0020-1669. doi:10.1021/acs.inorgchem.0c01671.
zenodo.org
Stefan G. Minasian; Jason M. Keith. New evidence for 5f covalency in actinocenes determined from carbon K-edge XAS and electronic structure theory. Chemical Science. 2014, s. 351–359. Dostupné online. doi:10.1039/C3SC52030G.