| Literature DB >> 28970908 |
Wenting Cai1, Roser Morales-Martínez2, Xingxing Zhang3, Daniel Najera1, Elkin L Romero1, Alejandro Metta-Magaña1, Antonio Rodríguez-Fortea2, Skye Fortier1, Ning Chen3, Josep M Poblet2, Luis Echegoyen1.
Abstract
Charge transfer is a general phenomenon observed for all endohedral mono-metallofullerenes. Since the detection of the first endohedral metallofullerene (EMF), La@C82, in 1991, it has always been observed that the oxidation state of a given encapsulated metal is always the same, regardless of the cage size. No crystallographic data exist for any early actinide endohedrals and little is known about the oxidation states for the few compounds that have been reported. Here we report the X-ray structures of three uranium metallofullerenes, U@D3h-C74, U@C2(5)-C82 and U@C2v(9)-C82, and provide theoretical evidence for cage isomer dependent charge transfer states for U. Results from DFT calculations show that U@D3h-C74 and U@C2(5)-C82 have tetravalent electronic configurations corresponding to U4+@D3h-C744- and U4+@C2(5)-C824-. Surprisingly, the isomeric U@C2v(9)-C82 has a trivalent electronic configuration corresponding to U3+@C2v(9)-C823-. These are the first X-ray crystallographic structures of uranium EMFs and this is first observation of metal oxidation state dependence on carbon cage isomerism for mono-EMFs.Entities:
Year: 2017 PMID: 28970908 PMCID: PMC5607891 DOI: 10.1039/c7sc01711a
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825