Spin Trapping of Carbon-Centered Ferrocenyl Radicals with Nitrosobenzene

被引:10
|
作者
Neidlinger, Andreas [1 ]
Kienz, Torben [1 ]
Heinze, Katja [1 ]
机构
[1] Johannes Gutenberg Univ Mainz, Inst Inorgan & Analyt Chem, D-55128 Mainz, Germany
关键词
COUPLED ELECTRON-TRANSFER; AMINOFERROCENE-BASED PRODRUGS; METAL-METAL BONDS; BASIS-SETS; ELECTROCHEMICAL APPROACH; RESONANCE; HOMOLYSIS; DERIVATIVES; FERROQUINE; TRANSFERS;
D O I
10.1021/acs.organomet.5b00778
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
In contrast to metal centered 17 valence electron radicals, such as [Mn(CO)(5)](center dot), ferrocenium ions [Fe(C5H5)(2)](+) (1(+)), [Fe(C5Me5)(2)](+) (2(+)), [Fe(C5H5)(C5H4Et)](+) (3(+)), [Fe (C5H5)(C5H4NHC(S)Me)](+) (4(+)), and [Fe(C5H5)(C5H4NHC(S)Me)](+) (5(+)) do not add to nitrosobenzene PhNO to give metal-coordinated stable nitroxyl radicals. In the presence of the strong and oxidatively stable phosphazene base tert-butylimino-tris (dimethylamino)-phosphorane, the quite acidic ferrocenium ions 1(+)-5(+) are deprotonated to give a pool of transient and persistent radicals with different deprotonation sites [1-HTx](center dot)-[5-H-x](center dot). One rather persistent iron-centered radical [4-H-N](center dot), deprotonated at the nitrogen atom, has been detected by rapid-freeze EPR spectroscopy at 77 K. This iron-centered radical [4-H-N](center dot) is also inert toward PhNO. The transient carbon-centered radicals [1-H-x](center dot) -[5-H-x](center dot) appear to rapidly abstract hydrogen atoms from the adjacent base or the solvent to regenerate the corresponding ferrocenes 1-5. These transient radicals are only present in trace amounts (<1%). However, some of the transient carbon-centered radicals in the radical pool can be trapped by 1-1.2 equiv of PhNO, even at room temperature. The corresponding resulting stable nitroxyl radicals [6](center dot)-[10](center dot) were studied by EPR spectroscopy at room temperature and at 77 K. The hyperfine coupling pattern to protons close to the spin center allows one to assign the site of PhNO attack in radicals [6](center dot)-[10](center dot), namely, at the C5115 ring in [6](center dot), [9(Cp)](center dot), and [10(Cp)](center dot), at a methyl group in [7](center dot), and at the methylene group in [8(1)](center dot). These studies give a deeper insight into the stability and reactivity of radicals derived from ferrocene derivatives which might also be relevant for the biological activity of high-potent antitumor and antimalaria ferrocene-based drugs and prodrugs such as ferrocifen or ferroquine.
引用
收藏
页码:5310 / 5320
页数:11
相关论文
共 50 条
  • [31] SPIN-TRAPPING OF STERICALLY UNHINDERED PHENOXYL RADICALS WITH NITROSOBENZENE AND NITROSODURENE
    OMELKA, L
    KOVACOVA, J
    MAGNETIC RESONANCE IN CHEMISTRY, 1994, 32 (09) : 525 - 531
  • [32] Detection of various oxygen- and carbon-centered radicals requires the development of novel spin traps
    Stolze, K
    Udilova, N
    Rosenau, T
    Hofinger, A
    Nohl, H
    PHARMACOLOGY, 2004, 72 (02) : 150 - 150
  • [33] Formation of superoxide anion and carbon-centered radicals by photosystem II under high light and heat stress—EPR spin-trapping study
    Arjun Tiwari
    Marek Rác
    Pavel Pospíšil
    Journal of Bioenergetics and Biomembranes, 2013, 45 : 551 - 559
  • [34] Bond Dissociation Enthalpies of Large Aromatic Carbon-Centered Radicals
    Hemelsoet, Karen
    Van Speybroeck, Veronique
    Waroquier, Michel
    JOURNAL OF PHYSICAL CHEMISTRY A, 2008, 112 (51): : 13566 - 13573
  • [35] Modelling the Repair of Carbon-Centered Protein Radicals by Phenolic Antioxidants
    Walton-Raaby, Max
    Floen, Tyler
    Mora-Diez, Nelaine
    ANTIOXIDANTS, 2024, 13 (11)
  • [36] Rate constants for the trapping of various carbon-centered radicals by nitroxides: Unimolecular initiators for living free radical polymerization
    Skene, WG
    Scaiano, JC
    Listigovers, NA
    Kazmaier, PM
    Georges, MK
    MACROMOLECULES, 2000, 33 (14) : 5065 - 5072
  • [37] Influence of Connector Groups on the Interactions of Substituents with Carbon-Centered Radicals
    Menon, Ambili S.
    Bally, Thomas
    Radom, Leo
    JOURNAL OF PHYSICAL CHEMISTRY A, 2012, 116 (41): : 10203 - 10208
  • [38] FLUORESCENCE DETECTION OF CARBON-CENTERED RADICALS IN AQUEOUS-SOLUTION
    KIEBER, DJ
    BLOUGH, NV
    FREE RADICAL RESEARCH COMMUNICATIONS, 1990, 10 (1-2): : 109 - 117
  • [39] Aluminum stress increases carbon-centered radicals in soybean roots
    Abo, Mitsuru
    Yonehara, Hiroki
    Yoshimura, Etsuro
    JOURNAL OF PLANT PHYSIOLOGY, 2010, 167 (15) : 1316 - 1319
  • [40] Addition of carbon-centered radicals to aromatic antioxidants: mechanistic aspects
    Nauser, Thomas
    Gebicki, Janusz M.
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2020, 22 (42) : 24572 - 24582