Electrochemically informed synthesis and characterization of salts of the [Pt2(μ-kAs,kC-C6H3-5-Me-2-AsPh2)4]+ lantern complex containing a pt-pt bond of order 1/2

被引:11
作者
Bennett, MA
Bhargava, SK
Boas, JF
Boeré, RT
Bond, AM
Edwards, AJ
Guo, SX
Hammerl, A
Pilbrow, JR
Privér, SH
Schwerdtfeger, P
机构
[1] RMIT Univ, Sch Appl Sci Appl Chem, Melbourne, Vic 3001, Australia
[2] Australian Natl Univ, Res Sch Chem, Canberra, ACT 0200, Australia
[3] Monash Univ, Sch Phys & Mat Engn, Clayton, Vic 3800, Australia
[4] Monash Univ, Sch Chem, Clayton, Vic 3800, Australia
[5] Univ Lethbridge, Dept Chem & Biochem, Lethbridge, AB T1K 3M4, Canada
[6] Univ Auckland, Dept Chem, Auckland, New Zealand
[7] Massey Univ Albany, Inst Fundamental Sci, N Shore Mail Ctr, Auckland, New Zealand
关键词
D O I
10.1021/ic048660i
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Detailed electrochemical studies in dichloromethane (0.1 M BU4NPF6) on the oxidation of the half-lantern [Pt-2-((KAs)-As-2,C -C6H3-5-Me-2-AsPh2)(2)(mu-KAS,KC-C6H3-5-Me-2-AsPh2)(2)] (1) and full-lantern [Pt-2(mu-KAS,KC-C6H3-5-Me-2-AsPh2)(4)] (2) complexes reveal the presence of an exceptionally stable dinuclear Pt cation 2(+). Thus, oxidation of 1 occurs on the voltammetric time scale via a ladder-square scheme to give 2(+), whereas 2 is directly converted to 2(+). Electrochemically informed chemical synthesis enabled the isolation of solid [2(+)][BF4-] to be achieved. Single-crystal X-ray structural analysis showed that 2(+) also has a lantern structure but with a shorter separation between the Pt centers [2.7069(3) angstrom (2(+)), 2.8955(4) angstrom (2)]. EPR spectra of 2(+) provide unequivocal evidence for axial symmetry of the complex and are noteworthy because of an exceptionally large, nearly isotropic hyperfine coupling constant of about 0.1 cm(-1). Spectroscopic data support the conclusion that the unpaired electron in the 2(+) cation is distributed equally between the two Pt nuclei and imply that oxidation of 2 to 2(+) leads to the establishment of the metal-tometal hemibond. Results of extended Huckel molecular orbital and density functional calculations on 2 and 2(+) lead to the conclusions that s, p, d2/z mixing of orbitals contributes to the large EPR Pt hyperfine coupling and also that the structural adjustments that occur upon removal of an electron from 2 are driven by the metal-metal bonding character present in 2(+).
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页码:2472 / 2482
页数:11
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