School of Chemistry, Joseph Black Building, University of Edinburgh, West Mains Road, Edinburgh, EH9 3JJ, UK.
Chemistry. 2010 Aug 16;16(31):9623-9. doi: 10.1002/chem.201001471.
Oxidative halogenation with trityl chloride provides convenient access to Ce(IV) and U(IV) chloroamides [M(N{SiMe(3)}(2))(3)Cl] and their N-heterocyclic carbene derivatives, [M(L)(N{SiMe(3)}(2))(2)Cl] (L = OCMe(2)CH(2)(CNCH(2)CH(2)NDipp) Dipp = 2,6-iPr(2)C(6)H(3)). Computational analysis of the bonding in these and a fluoro analogue, [U(L)(N{SiMe(3)}(2))(2)F], provides new information on the covalency in this relative rare oxidation state for molecular cerium complexes. Computational studies reveal increased Mayer bond orders in the actinide carbene bond compared with the lanthanide carbene bond, and natural and atoms-in-molecules analyses suggest greater overall ionicity in the cerium complexes than in the uranium analogues.
三苯甲基氯的氧化卤化反应为 Ce(IV) 和 U(IV) 氯代酰胺[M(N{SiMe(3)}(2))(3)Cl]及其 N-杂环卡宾衍生物[M(L)(N{SiMe(3)}(2))(2)Cl](L = OCMe(2)CH(2)(CNCH(2)CH(2)NDipp) Dipp = 2,6-iPr(2)C(6)H(3))的制备提供了便利。对这些化合物和氟代类似物[U(L)(N{SiMe(3)}(2))(2)F]的成键进行计算分析,为分子铈配合物中这种相对罕见的氧化态的共价键提供了新信息。计算研究表明,与镧系元素卡宾键相比,锕系元素卡宾键的 Mayer 键序增加,自然键和原子在分子中的分析表明,铈配合物的整体离子性大于铀类似物。