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1.
For a while, the reactivity of gold complexes was largely dominated by their Lewis acid behavior. In contrast to the other transition metals, the elementary steps of organometallic chemistry—oxidative addition, reductive elimination, transmetallation, migratory insertion—have scarcely been studied in the case of gold or even remained unprecedented until recently. However, within the last few years, the ability of gold complexes to undergo these fundamental reactions has been unambiguously demonstrated, and the reactivity of gold complexes was shown to extend well beyond π‐activation. In this Review, the main achievements described in this area are presented in a historical context. Particular emphasis is set on mechanistic studies and structure determination of key intermediates. The electronic and structural parameters delineating the reactivity of gold complexes are discussed, as well as the remaining challenges.  相似文献   

2.
The study of perfluoroalkyl metal complexes is key to understand and improve metal-promoted perfluoroalkylation reactions. Herein, we report the synthesis of the first gold complexes with primary or secondary perfluoroalkyl ligands by photoinitiated reactions between AuI organometallic complexes and iodoperfluoroalkanes. Complexes of the types LAuRF (L=PPh3 or N,N-bis(2,6-diisopropylphenyl)imidazol-2-ylidene; RF=n-C4F9, n-C6F13, i-C3F7, c-C6F11) and [Au(RF)(Ar)I(PPh3)] (Ar=2,4,6-trimethylphenyl) have been isolated and characterized. Alkynes RFC≡CR were formed by reaction of Ph3PAuC≡CR (R=Ph, nHex) with IRF (RF=n-C4F9, i-C3F7). According to the evidences obtained, this transformation undergoes through a photoinitiated radical mechanism. AuIII complexes [Au(n-C4F9)(X)(Y)L] (X=Y=Cl, Br, I, Me; X=Me, Y=I) have been prepared or in situ generated, and their thermal or photochemical decomposition reactions have been studied.  相似文献   

3.
Differently substituted terminal alkynes that bear sulfonate leaving groups at an appropriate distance were converted in the presence of a propynyl gold(I) precatalyst. After initial formation of a gold acetylide, a cyclization takes place at the β‐carbon atom of this species. Mechanistic studies support a mechanism that is related to that of dual gold‐catalyzed reactions, but for the new substrates, only one gold atom is needed for substrate activation. After formation of a gold vinylidene complex, which forms a tight contact ion pair with the sulfonate leaving group, recombination of the two parts delivers vinyl sulfonates, which are valuable targets that can serve as precursors for cross‐coupling reactions, for example.  相似文献   

4.
5.
Methoxide abstraction from gold acetylide complexes of the form (L)Au[η1‐C≡CC(OMe)ArAr′] (L=IPr, P(tBu)2(ortho‐biphenyl); Ar/Ar′=C6H4X where X=H, Cl, Me, OMe) with trimethylsilyl trifluoromethanesulfonate (TMSOTf) at −78 °C resulted in the formation of the corresponding cationic gold diarylallenylidene complexes [(L)Au=C=C=CArAr′]+ OTf in ≥85±5 % yield according to 1H NMR analysis. 13C NMR and IR spectroscopic analysis of these complexes established the arene‐dependent delocalization of positive charge on both the C1 and C3 allenylidene carbon atoms. The diphenylallenylidene complex [(IPr)Au=C=C=CPh2]+ OTf reacted with heteroatom nucleophiles at the allenylidene C1 and/or C3 carbon atom.  相似文献   

6.
Methoxide abstraction from gold acetylide complexes of the form (L)Au[η1‐C≡CC(OMe)ArAr′] (L=IPr, P(tBu)2(ortho‐biphenyl); Ar/Ar′=C6H4X where X=H, Cl, Me, OMe) with trimethylsilyl trifluoromethanesulfonate (TMSOTf) at ?78 °C resulted in the formation of the corresponding cationic gold diarylallenylidene complexes [(L)Au=C=C=CArAr′]+ OTf? in ≥85±5 % yield according to 1H NMR analysis. 13C NMR and IR spectroscopic analysis of these complexes established the arene‐dependent delocalization of positive charge on both the C1 and C3 allenylidene carbon atoms. The diphenylallenylidene complex [(IPr)Au=C=C=CPh2]+ OTf? reacted with heteroatom nucleophiles at the allenylidene C1 and/or C3 carbon atom.  相似文献   

7.
8.
Alpha, beta, gamma! Amino substituents in alpha and beta positions allow the isolation of free carbenes, but even in the gamma position, their strong π‐electron‐donating properties permit the synthesis of allenylidene lithium adducts and silver complexes (see picture), which are ideal precursors for the preparation of various transition‐metal–allenylidene complexes.

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9.
The preparation, u. v. and i. r. spectra and electrical conductivity of some gold diselenocarbamato complexes Au(et2dsc), [Au(et2dsc)2]Br, [Au(bu2dsc)2] [AuBr2] and Br2Au(et2dsc) are reported. [Au(et2dsc)2]Br undergoes a reversible one-electron reduction with E1/2 = — 0.43 V vs. SCE, in contrast with the irreversible reduction observed for the analogous sulfur complex.  相似文献   

10.
Reactions of the hydrido‐butenylcarbyne complex [OsHCl2(≡CC(PPh3)=CHEt)(PPh3)2]BF4 ( 1 ) with nitriles RC≡N (R=2‐cyclopropyl‐2‐oxopropyl, 3‐amino‐2‐oxobutyl) lead to six‐membered cyclic vinylidene complexes 3 and azavinylidene complexes 4 , that is, iso‐osmapyridiniums. Treatment of 1 with excess 2‐formylbenzonitrile at reflux temperature in CHCl3 in the presence of air produces a fused osmapyridinium 8 , which is first oxidized to the tricyclic iso‐osmapyridinium derivative 7 , then to iso‐osmapyridinium 9 , which contains a fused naphthalenone fragment. The conversion of iso‐osmapyridinium 9 (with a vinylidene segment) to the iso‐osmapyridinium compounds 10 and 11 (with azavinylidene segments) was achieved in the presence of a hydrogen halide, such as HCl or HI. The molecular structures of the complexes synthesized were confirmed by X‐ray studies. Moreover, the aromatic stabilization energy and nucleus‐independent chemical‐shift values of the osmapyridiniums and the strain in the iso‐osmapyridinium rings were investigated by DFT calculations.  相似文献   

11.
王保力 《化学通报》2020,83(4):296-307
一氧化碳是发展可持续化学经济的重要原料。人们希望能够将一氧化碳催化转变成高附加值化学品,从而减少石油等化石资源对人类的束缚。研究均相金属配合物与一氧化碳的反应能够使人们了解一氧化碳转变及利用机理,并开发新催化剂高效地利用一氧化碳资源。本文从金属配合物与一氧化碳反应的活性点出发,分别讨论不同类型的金属配合物与一氧化碳的反应,以求让人们在分子水平上了解一氧化碳的基本反应原理;并总结了该领域存在的难点问题,展望了未来,希望更多的科研工作者投入其中,从而实现利用一氧化碳合成出各种各样的化学品和材料。  相似文献   

12.
Thermal reactions of H complexes formed by methyl and ethyl diesters of aromatic tetracarboxylic acids with diamines were studied by thermal analysis. Some kinetic parameters of formation and degradation of polyimides during thermolysis in the self-generated atmosphere were determined.  相似文献   

13.
施继成  曹新华  郑瑛  贾莉 《化学学报》2007,65(16):1702-1706
合成鉴定了二个N-杂环卡宾环金属Pd络合物[1,3-N,N’-双{2,6-二取代基苯基}咪唑基-2-卡宾][N,N-二甲基卞胺-2-C,N]氯化钯(Ⅱ)(3a:取代基 = 异丙基;和3b:取代基 = 甲基),评价了它们在氯代芳烃和各种胺偶联反应中的催化性能。发现NaOBu-t是效果较好的碱,及Pd周围有较大的立体位阻的3a在4-甲基氯苯与吗啡啉反应中较3b有更好的催化性能.  相似文献   

14.
Abstract

Transition metal carbonyl complexes of phosphine (PH3), primary and secondary phosphines may be deprotonated with methyllithium to give the lithiated derivatives (I, II) which were shown to be useful intermediates in template synthesis of unusual phosphorus ligands [1].  相似文献   

15.
Since the beginning of the 2000’s, homogeneous gold catalysis has emerged as a powerful tool to promote the cyclization of unsaturated substrates with excellent regioselectivity allowing the synthesis of elaborated organic scaffolds. An important goal to achieve in gold catalysis is the possibility to induce enantioselective transformations by the assistance of chiral complexes. Unfortunately, the linear geometry of coordination for gold usually encountered in complexes at the +1 oxidation states renders this goal very challenging. In consequence, the interest toward the synthesis of chiral gold(III) complexes is steadily growing. Indeed, the square planar geometry of the gold(III) cation appears more suitable to promote chiral induction. Beside catalysis, gold(III) complexes have also shown promising potential in the field of pharmacology. Herein, syntheses and applications of well-defined gold(III) complexes reported over the last fifteen years are summarized.  相似文献   

16.
This Review showcases the ability of bi‐ and tridentate ligands to stabilize gold in high oxidation states through the formation of mono‐ and biscyclometalated gold(III) complexes. In‐depth studies on the synthesis, intrinsic reactivity, catalytic relevance, and photophysical properties of stabilized gold(III) species have been carried out, setting the stage for exciting developments in various research areas, such as catalysis, inorganic and bioinorganic chemistry, ligand design, and materials science.  相似文献   

17.
18.
The reaction of allenoates with cationic gold(I)—generated in situ from a phosphine gold chloride and a silver salt—formed unusual, room temperature stable vinyl gold(I) lactones under very mild conditions. The scope and limitations for the synthesis of this novel organogold complex was investigated. DFT calculations on the highest occupied molecular orbitals (HOMOs) of allenoates and the natural bond orbital (NBO) charge densities provided an explanation for the limitations. A plausible mechanism for its formation was proposed based on in situ 1H and 31P NMR spectroscopic analyses. Controlled experiments for the cleavage of the gold–carbon bond by electrophiles indicated that this vinyl gold(I) complex is the likely intermediate in the gold‐catalyzed reaction of carbon–carbon multiple bonds.  相似文献   

19.
Reported are multi‐component one‐pot syntheses of chiral complexes [M(LROR′)Cl2] or [M(LRSR′)Cl2] from the mixture of an N‐substituted ethylenediamine, pyridine‐2‐carboxaldehyde, a primary alcohol or thiol and MCl2 utilizing in‐situ formed cyclized Schiff bases where a C?O bond, two stereocenters, and three C?N bonds are formed (M=Zn, Cu, Ni, Cd; R=Et, Ph; R′=Me, Et, nPr, nBu). Tridentate ligands LROR′ and LRSR′ comprise two chiral centers and a hemiaminal ether or hemiaminal thioether moiety on the dipicolylamine skeleton. Syn‐[Zn(LPhOMe)Cl2] precipitates out readily from the reaction mixture as a major product whereas anti‐[Zn(LPhOMe)Cl2] stays in solution as minor product. Both syn‐[Zn(LPhOMe)Cl2] and anti‐[Zn(LPhOMe)Cl2] were characterized using NMR spectroscopy and mass spectrometry. Solid‐state structures revealed that syn‐[Zn(LPhOMe)Cl2] adopted a square pyramidal geometry while anti‐[Zn(LPhOMe)Cl2] possesses a trigonal bipyramidal geometry around the Zn centers. The scope of this method was shown to be wide by varying the components of the dynamic coordination assembly, and the structures of the complexes isolated were confirmed by NMR spectroscopy, mass spectrometry, and X‐ray crystallography. Syn complexes were isolated as major products with ZnII and CuII, and anti complexes were found to be major products with NiII and CdII. Hemiaminals and hemiaminal ethers are known to be unstable and are seldom observed as part of cyclic organic compounds or as coordinated ligands assembled around metals. It is now shown, with the support of experimental results, that linear hemiaminal ethers or thioethers can be assembled without the assistance of Lewis acidic metals in the multi‐component assembly, and a possible pathway of the formation of hemiaminal ethers has been proposed.  相似文献   

20.
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