Amine-amide equilibrium in gold(III) complexes and a gold(III)-gold(I) aurophilic bond

被引:59
作者
Cao, Lingyun [1 ]
Jennings, Michael C. [1 ]
Puddephatt, Richard J. [1 ]
机构
[1] Univ Western Ontario, Dept Chem, London, ON N6A 5B7, Canada
关键词
D O I
10.1021/ic061911y
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The ligands HN(CH2-2-C5H4N)(2), BPMA, and PhCH2N(CH2-2-C5H4N)(2), BBPMA, react with Na[AuCl4] to give the cationic complexes [AuCl(BPMA-H)](+) and [AuCl(BBPMA)](2+), respectively. The amido complex [AuCl(BPMA-H)](+) undergoes easy inversion at the amido nitrogen atom and can be reversibly protonated by triflic acid to give [AuCl(BPMA)](2+). The complex [AuCl(BBPMA)](2+) is easily decomposed in aqueous solution by cleavage of a carbon-nitrogen bond or, in dilute HCl solution, by protonation of the ligand to give [BBPMAH(2)]Cl[AuCl4] The complexes [BBPMAH(2)]Cl[AuCl4] and [BBPMAH(2)]Cl[AuCl2] can be formed by direct reaction of BBPMA with H[AuCl4]. Unusual forms of gold(III)center dot center dot center dot gold(III) and gold(III)center dot center dot center dot gold(I) aurophilic bonding are observed in the salts [AuCl(BPMA-H)][PF6] and [AuCl(BPMA-H)][AuCl2], respectively. The first comparison of the structures of gold(III) amine and amido complexes, in the cations [AuCl(BPMA-H)](+) and [AuCl(BPMA)](2+), indicates that there is little p(pi)-d(pi) bonding in the amido-gold bond and that the amide exerts a stronger trans influence than the amine group.
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页码:1361 / 1368
页数:8
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共 56 条
[31]  
Horvath UEI, 2004, Z NATURFORSCH B, V59, P1605
[32]   Application of heterogeneous gold catalysis with increased durability: Oxidation of CO and hydrocarbons at low temperature [J].
Ivanova, S ;
Petit, C ;
Pitchon, V .
GOLD BULLETIN, 2006, 39 (01) :3-8
[33]   Cationic methyl(hydrido)platinum(IV) complexes [J].
Jenkins, HA ;
Yap, GPA ;
Puddephatt, RJ .
ORGANOMETALLICS, 1997, 16 (09) :1946-1955
[34]   Selective oxidation of methane to methanol catalyzed, with C-H activation, by homogeneous, cationic gold [J].
Jones, CJ ;
Taube, D ;
Ziatdinov, VR ;
Periana, RA ;
Nielsen, RJ ;
Oxgaard, J ;
Goddard, WA .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2004, 43 (35) :4626-4629
[35]   The chemistry of organic gold compounds. IV. Gold imide compounds [J].
Kharasch, MS ;
Isbell, HS .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1931, 53 (02) :3059-3065
[36]  
Koch D, 1999, Z NATURFORSCH B, V54, P96
[37]   Gold(III) salen complex-catalyzed synthesis of propargylamines via a three-component coupling reaction [J].
Lo, VKY ;
Liu, YG ;
Wong, MK ;
Che, CM .
ORGANIC LETTERS, 2006, 8 (08) :1529-1532
[38]   Theoretical study of the d10-d8 interaction between Au(I) and Au(III) on the cis/trans-[PH3Au(I)C(L)=C(L)Au(III)(R)2PH3] (R = -H -CH3;: L = -H, -CH3) systems [J].
Mendizabal, F ;
Zapata-Torres, G ;
Olea-Azar, C .
CHEMICAL PHYSICS LETTERS, 2003, 382 (1-2) :92-99
[39]   Aurophilic attraction in binuclear complexes with Au(I) and Au(III).: A theoretical study [J].
Mendizabal, F ;
Pyykkö, P .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2004, 6 (05) :900-905
[40]   Thermodynamic, kinetic and structural studies on the mixed ligand complexes of palladium(II) with tridentate and monodentate ligands [J].
Nagy, Z ;
Fábián, I ;
Bényei, A ;
Sóvágó, I .
JOURNAL OF INORGANIC BIOCHEMISTRY, 2003, 94 (03) :291-299