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1.
Inorg Chem ; 42(12): 3856-64, 2003 Jun 16.
Article in English | MEDLINE | ID: mdl-12793823

ABSTRACT

The stereochemistry of the chelate rings of a number of rhodium aminophosphine complexes is studied by NMR spectroscopy. The similarity in the variable-temperature behavior for the different compounds is consistent with them having in common highly preferred chelate ring conformations. The six-membered metallacycle of coordinated (R)-PN (PN = o-diphenylphosphino-alpha-methyl-N,N-dimethylbenzylamine) adopts a delta conformation in the solid state. NMR experiments indicate that this conformation is strongly favored in solution as well. The preferred sense of helicity is imposed by the absolute configuration of the stereogenic carbon atom on the ligand, which exerts an important steric control. The complex [Rh(TFB)((C(6)H(4)CHMeNMe(2))(2)P(C(6)H(4)CHMeNHMe(2)))](BF(4))(2).H(2)O.Me(2)CO crystallizes in the monoclinic space group P2(1) with a = 12.0548(11) A, b = 16.139(2) A, c = 12.1804(10) A, beta = 100.742(9) degrees, Z = 4.

2.
Angew Chem Int Ed Engl ; 38(4): 533-535, 1999 Feb 15.
Article in English | MEDLINE | ID: mdl-29711755

ABSTRACT

Coordinated out, pendant in! Exchange of coordinated for pendant amino groups is achieved by the complex cation 1. The incoming group attacks the concave and convex positions with the same rate and always adopts the same conformation as the leaving group. However, this "conformational memory" is an inexorable consequence of well-known and dependable concepts: the principle of microscopic reversibility and the induction of chirality in prochiral reagents.

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