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Large heterometallic coordination cages with gyrobifastigium-like geometry . Giacomo Cecot, Bassam Alameddine, Stéphanie Prior, Rita De Zorzi, Silvano Geremia, Rosario Scopelliti, Farzaneh T. Fadaei, Euro Solari, Kay Severin
, Chem. Commun.
, 2016
, 52
, 11243
Aromaticity in P8 allotropes and (CH)8 analogues: significance of their 40 valence electrons? . Amr A.A. Attia, Alvaro Muñoz-Castro, Alexandru Lupan, R. Bruce King
, Phys. Chem. Chem. Phys.
, 2023
, 25
, 9364
An octanuclear coordination cage with a ‘cuneane’ core—a topological isomer of a cubic cage . Andrew Stephenson, Michael D. Ward
, Dalton Trans.
, 2011
, 40
, 7824
Building on architectural principles for three-dimensional metallosupramolecular construction . Maarten M. J. Smulders, Imogen A. Riddell, Colm Browne, Jonathan R. Nitschke
, Chem. Soc. Rev.
, 2013
, 42
, 1728
The cubyl cation rearrangements . Said Jalife, Sukanta Mondal, Jose Luis Cabellos, Gerardo Martinez-Guajardo, Maria A. Fernandez-Herrera, Gabriel Merino
, Chem. Commun.
, 2016
, 52
, 3403
Synthesis and structural-bonding analysis of the [Ni8 (PCMe3 ∥2 (PMe)2 (CO)12 ]
n
series (n = 0,2–): polyhedral rearrangement of the electron-precise (µ5 -Ni)2 (µ4 -P)2 -tetracapped Ni6 P2 cuneane framework in the neutral parent into an electron-delocalized noncentred Ni8 P4 icosahedral cage in the dianion by a two-electron chemical reduction . David F. Rieck, A. David Rae, Lawrence F. Dahl
, J. Chem. Soc., Chem. Commun.
, 1993
, 585
Cu12 and Cd16 coordination cages and their Cu3 and Cd3 subcomponents, and the role of inter-ligand π-stacking in stabilising cage complexes . Andrew Stephenson, Daniel Sykes, Michael D. Ward
, Dalton Trans.
, 2013
, 42
, 6756
Modeling and predicting aquatic aerobic biodegradation – a review from a user's perspective . Christoph Rücker, Klaus Kümmerer
, Green Chem.
, 2012
, 14
, 875
Nyholm Memorial Lecture. Ring, cage, and cluster compounds of the main group elements . R. J. Gillespie
, Chem. Soc. Rev.
, 1979
, 8
, 315
An electron paramagnetic resonance and theoretical study of the radical cationic C8 H8
+ ˙ system . Christopher J. Rhodes, Christopher Glidewell
, J. Chem. Soc., Perkin Trans. 2
, 1992
, 1481