Syntheses and Structures of Cationic Bis(gold) Cyclopentadienyl Complexes

IF 2.5 3区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR
Brady L. Slinger, Jack C. Malek and Ross A. Widenhoefer*, 
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引用次数: 0

Abstract

The reaction of (P)AuOTf [P = P(t-Bu)2o-biphenyl] with the cyclopentadienyl lithium reagents C5H5Li, C5H4MeLi, and C5HMe4Li forms the corresponding gold η1-cyclopentadienyl complexes (P)Au(η1-C5H5) (3a), (P)Au(η1-C5H4Me) (3b), and (P)Au(η1-C5HMe4) (3c), respectively, in >60% isolated yield. Treatment of complexes 3a or 3b with (P)AuNTf2 forms the corresponding cationic bis(gold) cyclopentadienyl complexes trans-{[(P)Au]211-cyclopentadien-1,3-yl)}+ NTf2 (4a) and trans-{[(P)Au]211-methylcyclopentadien-1,3-yl)}+ NTf2 (4b), respectively, in near-quantitative yield, which were characterized in solution and by X-ray crystallography. Both 4a and 4b undergo migration of the gold atoms about the cyclopentadienyl ring, which is fast on the NMR time scale at −80 °C. In the solid state, the gold atoms of 4a and 4b are positioned on the opposite faces of the cyclopentadienyl ring above and below the C1 and C3 carbon atoms. The reaction of 3c with (P)AuNTf2 similarly forms the cationic bis(gold) tetramethylcyclopentadienyl complex {[(P)Au]2(C5HMe4)}+ NTf2 (4c) although the structure of this complex remains obscure. The binding affinity of mono(gold) complexes 3a3c toward exogenous (P)Au+ exceeds that of the corresponding unmetalated cyclopentadienes by more than 3 orders of magnitude. Protodeauration of bis(gold) complexes 4 with acetic acid at −80 °C is >1500 times slower than the protodeauration of the corresponding monogold complexes 3 under identical conditions.

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来源期刊
Organometallics
Organometallics 化学-无机化学与核化学
CiteScore
5.60
自引率
7.10%
发文量
382
审稿时长
1.7 months
期刊介绍: Organometallics is the flagship journal of organometallic chemistry and records progress in one of the most active fields of science, bridging organic and inorganic chemistry. The journal publishes Articles, Communications, Reviews, and Tutorials (instructional overviews) that depict research on the synthesis, structure, bonding, chemical reactivity, and reaction mechanisms for a variety of applications, including catalyst design and catalytic processes; main-group, transition-metal, and lanthanide and actinide metal chemistry; synthetic aspects of polymer science and materials science; and bioorganometallic chemistry.
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