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Updated: Jul 14, 2026

Accessing Valuable Ligand Supports for Transition Metals: A Modified, Intermediate Scale Preparation of 1,2,3,4,5-Pentamethylcyclopentadiene
Published on: March 20, 2017
Accelerated arene ligand exchange in the (Arene)Cr(CO)2L series
M F Semmelhack1, Anatoly Chlenov, Douglas M Ho
1Department of Chemistry, Princeton University, Princeton, New Jersey 08544, USA. mfshack@princeton.edu
Abstract:
Arene ligand exchange in the (eta(6)-arene)Cr(CO)(2)L series can be accelerated if the ligand L is an electronically unsymmetrical bidentate ligand. The system evaluated here employs derivatives of tris(pyrrolyl)phosphine as L. A series of 2-L'-substituted pyrroles was prepared, where the substituents include: L' = -SMe, -CH(2)SMe, -SPh, -CH(2)SPh, -SCF(3), -S-tBu, -CO(2)Me, -CONMe(2), -2-pyridinyl, and -PPh(2). Reaction with ClP(pyrrolyl)(2) gave a new series of phosphines, (2-L'-pyrrolyl)(pyrrolyl)(2)P. Each of these phosphines was converted to (arene)Cr(CO)(2)[P(2-L'-pyrrolyl)(pyrrolyl)(2)P) complexes. The substituents L'are proposed to provide temporary coordination to the Cr and to lower the barrier to arene exchange. The series was evaluated where the arene in the complex (departing) is benzene, fluorobenzene, toluene, o-xylene, m-xylene, or p-xylene and the incoming arene is C(6)D(6), chlorobenzene-d(5), anisole-d(8), fluorobenzene-d(5), toluene-d(8), o-xylene-d(10), m-xylene-d(10), p-xylene-d(10), or mesitylene-d(12). Most of the new complexes showed a significant increase in the rate of arene exchange due to the side chain unit L'. The strongest effects were seen with the examples where X = -CO(2)Me, -CONMe(2), and -(2-pyridinyl), allowing exchange with a half lifetime as low as 8 h/22 degrees C.
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