CO reductive oligomerization by a divalent thulium complex and CO2-induced functionalization

被引:16
|
作者
Simler, Thomas [1 ]
McCabe, Karl N. [2 ]
Maron, Laurent [2 ]
Nocton, Gregory [1 ]
机构
[1] Ecole Polytech, CNRS, Inst Polytech Paris, LCM, Route Saclay, F-91120 Palaiseau, France
[2] Univ Toulouse, CNRS, UMR 5215, LPCNO,INSA,UPS, Toulouse, France
基金
欧洲研究理事会;
关键词
CARBON-MONOXIDE ACTIVATION; RARE-EARTH; ORGANOTHULIUM(II) COMPLEX; BONDS; ORGANOLANTHANIDE; HOMOLOGATION; CHEMISTRY; SAMARIUM; LIGAND; CYCLOPENTADIENYL;
D O I
10.1039/d2sc01798a
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The divalent thulium complex [Tm(Cp-ttt)(2)] (Cp-ttt = 1,2,4-tris(tert-butyl)cyclopentadienyl) reacts with CO to afford selective CO reductive dimerization and trimerization into ethynediolate (C-2) and ketenecarboxylate (C-3) complexes, respectively. DFT calculations were performed to shed light on the elementary steps of CO homologation and support a stepwise chain growth. The attempted decoordination of the ethynediolate fragment by treatment with Me3SiI led to dimerization and rearrangement into a 3,4-dihydroxyfuran-2-one complex. Investigation of the reactivity of the C-2 and C-3 complexes towards other electrophiles led to unusual functionalization reactions: while the reaction of the ketenecarboxylate C-3 complex with electrophiles yielded new multicarbon oxygenated complexes, the addition of CO2 to the ethynediolate C-2 complex resulted in the formation of a very reactive intermediate, allowing C-H activation of aromatic solvents. This original intermolecular reactivity corresponds to an unprecedented functionalization of CO-derived ligands, which is induced by CO2.
引用
收藏
页码:7449 / 7461
页数:13
相关论文
共 50 条
  • [31] EFFECTS OF CO2-INDUCED ACIDOSIS ON CARDIAC FUNCTIONS IN THE DOG
    SHIBUYA, I
    NIIZEKI, K
    UCHIDA, K
    DOI, K
    INTERNATIONAL JOURNAL OF BIOMETEOROLOGY, 1988, 32 (03) : 224 - 225
  • [32] EFFECTS OF CO2-INDUCED CLIMATIC CHANGES ON SNOWPACK AND STREAMFLOW
    COOLEY, KR
    HYDROLOGICAL SCIENCES JOURNAL-JOURNAL DES SCIENCES HYDROLOGIQUES, 1990, 35 (05): : 511 - 522
  • [33] CO2-induced amidobromination of olefins with bromamine-T
    Hayakawa, Junpei
    Kuzuhara, Mitsuhiro
    Minakata, Satoshi
    ORGANIC & BIOMOLECULAR CHEMISTRY, 2010, 8 (06) : 1424 - 1430
  • [34] Genetic Determination for Susceptibility to CO2-induced Injury in Apple
    Oraguzie, Nnadozie C.
    Burmeister, Doug
    Alspach, Peter
    Lallu, Nagin
    HORTSCIENCE, 2009, 44 (04) : 1015 - 1015
  • [35] Responses of pink salmon to CO2-induced aquatic acidification
    Michelle Ou
    Trevor J. Hamilton
    Junho Eom
    Emily M. Lyall
    Joshua Gallup
    Amy Jiang
    Jason Lee
    David A. Close
    Sang-Seon Yun
    Colin J. Brauner
    Nature Climate Change, 2015, 5 : 950 - 955
  • [36] CLIMATIC PROSPECTS IN THE CASE OF AN EXTENDED, CO2-INDUCED WARMING
    FLOHN, H
    ZEITSCHRIFT FUR METEOROLOGIE, 1985, 35 (01): : 1 - 14
  • [37] Measurement and prediction of CO2-induced viscosity reduction of polypropylene
    Nagata, T
    Areerat, S
    Ohshima, M
    Tanigaki, M
    KAGAKU KOGAKU RONBUNSHU, 2002, 28 (06) : 739 - 745
  • [38] Responses of pink salmon to CO2-induced aquatic acidification
    Ou, Michelle
    Hamilton, Trevor J.
    Eom, Junho
    Lyall, Emily M.
    Gallup, Joshua
    Jiang, Amy
    Lee, Jason
    Close, David A.
    Yun, Sang-Seon
    Brauner, Colin J.
    NATURE CLIMATE CHANGE, 2015, 5 (10) : 950 - +
  • [39] Dynamic response characteristics of CO2-induced air hunger
    Banzett, RB
    RESPIRATION PHYSIOLOGY, 1996, 105 (1-2): : 47 - 55
  • [40] RESPONSE OF NORTHERN FORESTS TO CO2-INDUCED CLIMATE CHANGE
    PASTOR, J
    POST, WM
    NATURE, 1988, 334 (6177) : 55 - 58