Physicochemical Properties of Near-Linear Lanthanide(II) Bis(silylamide) Complexes (Ln = Sm, Eu, Tm, Yb).
暂无分享,去创建一个
Conrad A. P. Goodwin | J. Ziller | W. Evans | R. Winpenny | N. Chilton | I. Crowe | D. Mills | Eufemio Moreno Pineda | Gianni F. Vettese | D. P. Mills
[1] Conrad A. P. Goodwin,et al. Salt metathesis versus protonolysis routes for the synthesis of silylamide Hauser base (R2NMgX; X = halogen) and amido-Grignard (R2NMgR) complexes. , 2016, Dalton transactions.
[2] L. Maria,et al. A novel samarium(ii) complex bearing a dianionic bis(phenolate) cyclam ligand: synthesis, structure and electron-transfer reactions. , 2016, Dalton transactions.
[3] Rebecca K. Carlson,et al. Molcas 8: New capabilities for multiconfigurational quantum chemical calculations across the periodic table , 2016, J. Comput. Chem..
[4] Michael J. Ferguson,et al. Investigation of the “bent sandwich-like” divalent lanthanide hydro-tris(pyrazolyl)borates Ln(TpiPr2)2 (Ln = Sm, Eu, Tm, Yb) , 2015 .
[5] Philip D. Martin,et al. Aqueous Eu(II)-Containing Complex with Bright Yellow Luminescence. , 2015, Journal of the American Chemical Society.
[6] M. Murugesu,et al. Lanthanides and Actinides in Molecular Magnetism: Layfield/Lanthanides and Actinides in Molecular Magnetism , 2015 .
[7] L. Ricard,et al. Reversible C-C coupling in phenanthroline complexes of divalent samarium and thulium. , 2015, Chemical communications.
[8] N. Chilton. Design criteria for high-temperature single-molecule magnets. , 2015, Inorganic chemistry.
[9] Conrad A. P. Goodwin,et al. Homoleptic Trigonal Planar Lanthanide Complexes Stabilized by Superbulky Silylamide Ligands , 2015 .
[10] J. Ziller,et al. Structural, spectroscopic, and theoretical comparison of traditional vs recently discovered Ln(2+) ions in the [K(2.2.2-cryptand)][(C5H4SiMe3)3Ln] complexes: the variable nature of Dy(2+) and Nd(2+). , 2015, Journal of the American Chemical Society.
[11] Conrad A. P. Goodwin,et al. The first near-linear bis(amide) f-block complex: a blueprint for a high temperature single molecule magnet. , 2015, Chemical communications.
[12] P. Fanwick,et al. Isolation of a uranium(III) benzophenone ketyl radical that displays redox-active ligand behaviour. , 2014, Dalton transactions.
[13] G. Deacon,et al. Reactivity of bulky formamidinatosamarium(II or III) complexes with C═O and C═S bonds. , 2014, Inorganic chemistry.
[14] A. Bettencourt-Dias. Luminescence of lanthanide ions in coordination compounds and nanomaterials , 2014 .
[15] J. Pécaut,et al. Tuning lanthanide reactivity towards small molecules with electron-rich siloxide ligands. , 2014, Angewandte Chemie.
[16] Conrad A. P. Goodwin,et al. [UIII{N(SiMe2tBu)2}3]: A Structurally Authenticated Trigonal Planar Actinide Complex , 2014, Chemistry.
[17] J. Bünzli. Review: Lanthanide coordination chemistry: from old concepts to coordination polymers , 2014 .
[18] J. Ziller,et al. Reactivity of organothorium complexes with TEMPO. , 2014, Inorganic chemistry.
[19] P. Fanwick,et al. Multielectron C-O bond activation mediated by a family of reduced uranium complexes. , 2014, Inorganic chemistry.
[20] L. Ricard,et al. N-aromatic heterocycle adducts of bulky [1,2,4-(Me3C)3C5H2]2Sm: synthesis, structure and solution analysis. , 2014, Dalton transactions.
[21] P. Schwerdtfeger,et al. Metal atom dynamics in superbulky metallocenes: a comparison of (Cp(BIG))2Sn and (Cp(BIG))2Eu. , 2014, Inorganic chemistry.
[22] J. Fettinger,et al. Dispersion force stabilized two-coordinate transition metal-amido complexes of the -N(SiMe3)Dipp (Dipp = C6H3-2,6-Pr(i)2) ligand: structural, spectroscopic, magnetic, and computational studies. , 2013, Inorganic chemistry.
[23] J. Ziller,et al. Completing the series of +2 ions for the lanthanide elements: synthesis of molecular complexes of Pr2+, Gd2+, Tb2+, and Lu2+. , 2013, Journal of the American Chemical Society.
[24] Keith S. Murray,et al. PHI: A powerful new program for the analysis of anisotropic monomeric and exchange‐coupled polynuclear d‐ and f‐block complexes , 2013, J. Comput. Chem..
[25] R. Winpenny,et al. Lanthanide single-molecule magnets. , 2013, Chemical reviews.
[26] F. Edelmann. Lanthanide amidinates and guanidinates in catalysis and materials science: a continuing success story. , 2012, Chemical Society reviews.
[27] J. Ziller,et al. Expanding yttrium bis(trimethylsilylamide) chemistry through the reaction chemistry of (N2)2-, (N2)3-, and (NO)2- complexes. , 2012, Inorganic chemistry.
[28] T. Boyle,et al. The selective insertion of carbon dioxide into a lanthanide(III) 2,6-di-t-butyl-phenoxide bond , 2012 .
[29] J. Ziller,et al. Ligand Influence on the Redox Chemistry of Organosamarium Complexes: Experimental and Theoretical Studies of the Reactions of (C5Me5)2Sm(THF)2 and (C4Me4P)2Sm with Pyridine and Acridine , 2012 .
[30] J. Ziller,et al. Expanding rare-earth oxidation state chemistry to molecular complexes of holmium(II) and erbium(II). , 2012, Journal of the American Chemical Society.
[31] P. Liu,et al. Synthesis of Dianionic β-Diketiminate Lanthanide Amides L′LnN(SiMe3)2(THF) by Deprotonation of the β-Diketiminate Ligand L (L = {[(2,6-iPr2C6H3)NC(CH3)]2CH}−) and the Transformation with [HNEt3][BPh4] to the Cationic Samarium Amide [LSmN(SiMe3)2][BPh4] , 2012 .
[32] Hidetaka Nakai,et al. A naphthyl-substituted pentamethylcyclopentadienyl ligand and its Sm(II) bent-metallocene complexes with solvent-induced structure change. , 2012, Dalton transactions.
[33] Guang Wu,et al. Synthesis, molecular and electronic structure of U(V)(O)[N(SiMe3)2]3. , 2012, Inorganic chemistry.
[34] Frank Neese,et al. The ORCA program system , 2012 .
[35] Liviu F Chibotaru,et al. Magnetic anisotropy in the excited states of low symmetry lanthanide complexes. , 2011, Physical chemistry chemical physics : PCCP.
[36] M. Ferguson,et al. Synthesis and structure of divalent thulium borohydrides, and their application in ε-caprolactone polymerisation. , 2011, Chemical communications.
[37] J. Long,et al. Exploiting single-ion anisotropy in the design of f-element single-molecule magnets , 2011 .
[38] Stefan Grimme,et al. Effect of the damping function in dispersion corrected density functional theory , 2011, J. Comput. Chem..
[39] Jiang-Feng Song,et al. Lanthanide(II)−Alkali Sandwich Complexes with Cation−Arene π Interactions: Synthesis, Structure, and Solvent-Mediated Redox Transformations , 2011 .
[40] F. Nief. Non-classical divalent lanthanide complexes. , 2010, Dalton transactions.
[41] S. Grimme,et al. A consistent and accurate ab initio parametrization of density functional dispersion correction (DFT-D) for the 94 elements H-Pu. , 2010, The Journal of chemical physics.
[42] J. Bünzli,et al. Basics of Lanthanide Photophysics , 2010 .
[43] G. Deacon,et al. Charge-separated and molecular heterobimetallic rare earth-rare earth and alkaline earth-rare earth aryloxo complexes featuring intramolecular metal-pi-arene interactions. , 2009, Chemistry.
[44] P. Hitchcock,et al. Heteroleptic ytterbium(II) complexes supported by a bulky beta-diketiminato ligand. , 2009, Dalton transactions.
[45] C. Anthon,et al. Structural and spectroscopic characterization of a charge-separated uranium benzophenone ketyl radical complex. , 2008, Journal of the American Chemical Society.
[46] R. McDonald,et al. Heteroleptic Tm(II) complexes: one more success for Trofimenko's scorpionates. , 2008, Journal of the American Chemical Society.
[47] A. Sella,et al. Trapping of anionic organic radicals by (TpMe2)2Ln (Ln = Sm, Eu). , 2007, Inorganic chemistry.
[48] F. Jaroschik,et al. Synthesis and Reactivity of Organometallic Complexes of Divalent Thulium with Cyclopentadienyl and Phospholyl Ligands , 2007 .
[49] E. Prasad,et al. Solvation-controlled luminescence of SmII complexes. , 2007, Angewandte Chemie.
[50] J. Ziller,et al. Synthesis and Reactivity of Mono(pentamethylcyclopentadienyl) Tetraphenylborate Lanthanide Complexes of Ytterbium and Samarium: Tris(ring) Precursors to (C5Me5)Ln Moieties , 2007 .
[51] D. S. Lee,et al. Trivalent [(C5Me5)2(THF)Ln]2(mu-eta2:eta2-N2) complexes as reducing agents including the reductive homologation of CO to a ketene carboxylate, (mu-eta4-O2C-C=C=O)2-. , 2006, Journal of the American Chemical Society.
[52] M. Niemeyer. Reactions of hypersilyl potassium with rare-earth metal bis(trimethylsilylamides): addition versus peripheral deprotonation. , 2006, Inorganic chemistry.
[53] S. Cotton. Lanthanide and Actinide Chemistry: Cotton/Lanthanide and Actinide Chemistry , 2006 .
[54] G. Deacon,et al. Manipulation of reaction pathways in redox transmetallation-ligand exchange syntheses of lanthanoid(II)/(III) aryloxide complexes. , 2006, Dalton transactions.
[55] F. Jaroschik,et al. Synthesis of a new stable, neutral organothulium(II) complex by reduction of a thulium(III) precursor. , 2006, Chemical communications.
[56] Arthur Schweiger,et al. EasySpin, a comprehensive software package for spectral simulation and analysis in EPR. , 2006, Journal of magnetic resonance.
[57] J. Bünzli,et al. Taking advantage of luminescent lanthanide ions. , 2005, Chemical Society reviews.
[58] F. Yuan,et al. Crystallographic report: Crystal structure of bis(2,4,6‐tri‐tert‐butylphenolato‐O) bis(tetrahydrofuran‐O) samarium (N,N‐η2‐azobenzene) diethyl ether solvate , 2005 .
[59] Liu Xiu-juan,et al. Reaction of (Ph2N)2Sm(THF)4 with Azobenzene: Synthesis, X‐ray Structure and Catalytic Behavior of [(Ph2N)(DME)Sm]2(μ‐η2:η2‐N2Ph2)2 , 2005 .
[60] L. Ricard,et al. New Complexes of Divalent Thulium with Substituted Phospholyl and Cyclopentadienyl Ligands , 2005 .
[61] S. Harder. The chemistry of CaII and YbII: astoundingly similar but not equal! , 2004, Angewandte Chemie.
[62] S. Haufe,et al. Steric saturation of the ytterbium coordination environment: (TptBu, Me)Yb(OMes), a four coordinate, monomeric, base-free divalent lanthanide complex, its solvation with tetrahydrofuran, and comparison to the β-diketonate complex, (TptBu, Me)Yb(dpm) , 2004 .
[63] H. Yasuda,et al. Isospecific polymerizations of alkyl methacrylates with a bis(alkyl)Yb complex and formation of stereocomplexes with syndiotactic poly(alkyl methacrylate)s , 2003 .
[64] P. Hitchcock,et al. Synthesis of a homoleptic Sm(II) bis(phosphinimino)methanide , 2003 .
[65] L. Ricard,et al. Structure and reactivity of homoleptic samarium(II) and thulium(II) phospholyl complexes. , 2003, Chemistry.
[66] M. A. Katkova,et al. Reduction of azobenzene by neodymium(II), dysprosium(II), and thulium(II) diiodides , 2003 .
[67] P. Dorenbos. Anomalous luminescence of Eu2+ and Yb2+ in inorganic compounds , 2003 .
[68] N. Allen,et al. Large scale synthesis of dysprosium and neodymium diiodides. , 2003, Inorganic chemistry.
[69] J. Ziller,et al. Dinitrogen reduction by TmII, DyII, and NdII with simple amide and aryloxide ligands. , 2003, Journal of the American Chemical Society.
[70] M. N. Bochkarev,et al. Reduction of 2,5-di-tert-butylcyclopentadienone and pyridine with thulium diiodide. Structures of the complexes TmI2(THF)2[η5-But2C5H2O]TmI2(THF)3 and [TmI2(C5H5N)4]2(μ2-N2C10H10) , 2003 .
[71] R. Andersen,et al. Preparation of Coordination Compounds of Cp*2Yb with Heterocyclic Nitrogen Bases: Examples of Antiferromagnetic Exchange Coupling across Bridging Ligands , 2002 .
[72] L. Ricard,et al. Synthesis and structure of phospholyl- and arsolylthulium(II) complexes. , 2002, Chemical communications.
[73] Masakatsu Shibasaki,et al. Lanthanide complexes in multifunctional asymmetric catalysis. , 2002, Chemical reviews.
[74] B. Scott,et al. A mechanistic study of the samarium(II)-mediated reduction of aryl nitro compounds to the corresponding crylamines. The crystal structures of [Sm[N(SiMe(3))(2)](2)(thf)](2)(mu(2)-O) and [(Me(3)Si)(2)N](2)Sm(thf)(mu-PhNNPh)Sm[N(SiMe(3))(2)](2). , 2002, Journal of the American Chemical Society.
[75] J. Boncella,et al. Coordination of 2,2'-bipyridyl and 1,10-phenanthroline to substituted ytterbocenes: An experimental investigation of spin coupling in lanthanide complexes , 2002 .
[76] N. Allen,et al. Expanding Divalent Organolanthanide Chemistry: The First Organothulium(II) Complex and the In Situ Organodysprosium(II) Reduction of Dinitrogen We thank the US National Science Foundation for support of this research. , 2002 .
[77] J. Ziller,et al. The tetramethylpiperidinyl-1-oxide anion (TMPO-) as a ligand in lanthanide chemistry: synthesis of the per(TMPO-) complex [(ONC5H6Me4)2Sm(mu-ONC5H6Me4)]2. , 2001, Chemical communications.
[78] A. Sella,et al. Synthesis and structural comparison of a series of divalent Ln(Tp(R,R)')2 (Ln = Sm, Eu, Yb) and trivalent Sm(Tp(Me2))2X (X = F, Cl, I, BPh4) complexes. , 2001, Inorganic chemistry.
[79] M. N. Bochkarev,et al. A chemical definition of the effective reducing power of thulium(II) diiodide by its reactions with cyclic unsaturated hydrocarbons. , 2001, Chemistry.
[80] N. Allen,et al. Facile dinitrogen reduction via organometallic Tm(II) chemistry. , 2001, Journal of the American Chemical Society.
[81] Z. Hou,et al. Lanthanide(II) Complexes Bearing Linked Cyclopentadienyl−Anilido Ligands: Synthesis, Structures, and One-Electron-Transfer and Ethylene Polymerization Reactions , 2001 .
[82] A. Sella,et al. Charge transfer salts of the lanthanides: the crystal structure of [Yb(TpMe,Me)2][TCNE]·(THF)6 , 2001 .
[83] Takáts,et al. Stabilization of a Discrete Lanthanide(II) Hydrido Complex by a Bulky Hydrotris(pyrazolyl)borate Ligand. , 1999, Angewandte Chemie.
[84] Jie Sun,et al. Synthesis, Molecular Structure, and Reactivity of Organolanthanide Fluoride Complexes, [{(Me3Si)2C5H3}2Ln(μ-F)]2 (Ln = La, Nd, Sm, Gd) and [(C5H5)2Ln(μ-F)(THF)]2 (Ln = Y, Yb) , 1998 .
[85] G. Adachi,et al. The luminescent properties of divalent europium complexes of crown ethers and cryptands , 1998 .
[86] B. Trost,et al. Asymmetric O- and C-Alkylation of Phenols , 1998 .
[87] M. Ephritikhine,et al. Pinacol versus para coupling of aromatic ketones , 1997 .
[88] A. Nakamura,et al. Lanthanoid Complexes of Azobenzene and Benzo[c]cinnoline Derived from Metallic Lanthanoids: Crystal Structures of Binuclear [SmI(thf)3(μ-η2:η2-trans-PhNNPh)SmI(thf)3] and Mononuclear [Yb(benzo[c]cinnoline)3(thf)2] , 1997 .
[89] J. Ziller,et al. SYNTHESIS AND STRUCTURE OF THE FIRST MOLECULAR THULIUM(II) COMPLEX: TMI2(MEOCH2CH2OME)3 , 1997 .
[90] A. Barrett,et al. Scandium(III) or lanthanide(III) triflates as recyclable catalystsfor the direct acetylation of alcohols with acetic acid , 1997 .
[91] P. Hitchcock,et al. Alkyl derivatives of europium(+2) and ytterbium(+2). Crystal structures of Eu[C(SiMe3)3]2, Yb[C(SiMe3)2(SiMe2CH=CH 2)]I·OEt2 and Yb[C(SiMe3)2(SiMe2OMe)]I·OEt2 , 1996 .
[92] M. Visseaux,et al. Synthesis of Phospholyl-Bridged Heterobimetallic Ruthenium Hydrides in Combination with Zirconium and Ytterbium and the Crystal Structure of (THF)2Yb[μ(η5,η1)-C4Me4P]2Ru(H)2(Ph3P)2 , 1996 .
[93] Neil G. Connelly,et al. Chemical Redox Agents for Organometallic Chemistry. , 1996, Chemical reviews.
[94] A. Meijerink,et al. Spectroscopy of divalent samarium in LiBaF3 , 1995 .
[95] P. Hitchcock,et al. A Monomeric Solvent-Free Bent Lanthanide Dialkyl and a Lanthanide Analog of a Grignard Reagent. Crystal Structures of Yb{C(SiMe3)3}2 and [Yb{C(SiMe3)3}I.cntdot.OEt2]2 , 1994 .
[96] R. Rogers,et al. Application of the Sterically Demanding Hydrotris(3-tert-butyl-5-methylpyrazolyl)borate Ligand to Ln(II) Chemistry: Synthesis of a New Class of Mixed-Ligand Yb(II) Complexes , 1994 .
[97] J. Ziller,et al. Reactivity of Decamethylsamarocene with Polycyclic Aromatic Hydrocarbons , 1994 .
[98] L. Ricard,et al. Synthesis of η1 and η5 complexes of samarium(II) with benzophospholyl ligands , 1994 .
[99] V. Day,et al. Synthesis and structure of bis[hydrotris(3,5-dimethylpyrazolyl)borato]samarium(II), Sm[HB(3,5-Me2pz)3]2, and the product of its reaction with azobenzene , 1993 .
[100] J. Ziller,et al. Investigation of organolanthanide-based carbon-carbon bond formation: synthesis, structure, and coupling reactivity of organolanthanide alkynide complexes, including the unusual structures of the trienediyl complex [(C5Me5)2Sm]2[.mu.-.eta.2:.eta.2-Ph(CH2)2C:C:C:C-(CH2)2Ph] and the unsolvated alkynid , 1993 .
[101] W. Evans. Achieving new lanthanide chemistry within the tetracyclopentadienyl cavity formed by two (C5Me5)2Ln moieties , 1993 .
[102] L. Ricard,et al. Phospholyl (phosphacyclopentadienyl) and arsolyl (arsacyclopentadienyl) complexes of ytterbium(II) and samarium(II). Synthetic, structural and multinuclear (31P and 171Yb) NMR studies , 1993 .
[103] J. Ziller,et al. Reactivity of hydrazines with organometallic samarium complexes and the x-ray crystal structures of (C5Me5)2Sm(.eta.2-PhNHNPh)(THF), (C5Me5)2Sm(NHPh)(THF), and [(C5Me5)2Sm]2(.mu.-.eta.2:.eta.2-HNNH) , 1992 .
[104] S. Cotton. Lanthanide and Actinide Chemistry , 1991 .
[105] J. Ziller,et al. Organosamarium-mediated synthesis of bismuth-bismuth bonds: x-ray crystal structure of the first dibismuth complex containing a planar M2(.mu.-.eta.2:.eta.2-Bi2) unit , 1991 .
[106] M. N. Bochkarev,et al. Reduction of Azobenzene by Naphthaleneytterbium: A Tetranuclear Ytterbium(III) Complex Combining 1,2‐Diphenylhydrazido(2−) and Phenylimido Ligands , 1991 .
[107] F. Gerson,et al. The radical anion of (E)‐azobenzene revisited , 1991 .
[108] J. Ziller,et al. Reactivity of (C5Me5)2Sm with aryl-substituted alkenes: synthesis and structure of a bimetallic styrene complex that contains an .eta.2-arene lanthanide interaction , 1990 .
[109] Y. Chauvin,et al. Addition reaction of some rare-earth metals to unsaturated compounds in ethers , 1989 .
[110] M. Lappert,et al. The first high resolution direct NMR observation of an f-block element , 1989 .
[111] J. Ziller,et al. Isolation and X-ray crystal structure of the first dinitrogen complex of an f-element metal, [(C5Me5)2Sm]2N2 , 1988 .
[112] J. Atwood,et al. Synthetic, structural, and reactivity studies of the reduction and carbon monoxide derivatization of azobenzene mediated by divalent lanthanide complexes , 1988 .
[113] J. Atwood,et al. Synthesis and x-ray crystal structure of the divalent [bis(trimethylsilyl)amido] samarium complexes [(Me3Si)2N]2Sm(THF)2 and {[(Me3Si)2N]Sm(.mu.-I)(DME)(THF)}2 , 1988 .
[114] W. Evans,et al. Synthesis and X-ray crystal structure of bis(pentamethylcyclopentadienyl) complexes of samarium and europium: (C5Me5)2Sm and (C5Me5)2Eu , 1986 .
[115] W. Evans,et al. Synthesis and crystallographic characterization of an unsolvated, monomeric samarium bis(pentamethylcyclopentadienyl) organolanthanide complex, (C5Me5)2Sm , 2002 .
[116] R. Andersen,et al. Tertiary phosphine complexes of the f-block metals. Crystal structure of Yb[N(SiMe3)2]2[Me2PCH2CH2PMe2]: evidence for a ytterbium-.gamma.-carbon interaction , 1982 .
[117] I. Bloom,et al. Synthesis and x-ray crystal structure of a soluble divalent organosamarium complex , 1981 .
[118] R. Andersen,et al. Divalent lanthanide chemistry. Preparation of some four- and six-coordinate bis[(trimethylsilyl)amido] complexes of europium(II). Crystal structure of bis[bis(trimethylsilyl)amido]bis(1,2-dimethoxyethane)europium(II) , 1981 .
[119] H. Kagan,et al. Divalent lanthanide derivatives in organic synthesis. 1. Mild preparation of samarium iodide and ytterbium iodide and their use as reducing or coupling agents , 1980 .
[120] R. Andersen,et al. Divalent lanthanide chemistry. Bis (pentamethylcyclopentadienyl) europium(II) and -ytterbium(II) derivatives: crystal structure of bis (pentamethylcyclopentadienyl) (tetrahydrofuran ytterbium(II) -hemitoluene at 176 K , 1980 .
[121] S. Patai. The chemistry of the hydrazo, azo, and azoxy groups , 1975 .
[122] F. A. Hart,et al. Low co-ordination numbers in lanthanide and actinide compounds. Part I. The preparation and characterization of tris{bis(trimethylsilyl)-amido}lanthanides , 1973 .
[123] J. Axe,et al. DIVALENT RARE EARTH SPECTRA SELECTION RULES AND SPECTROSCOPY OF SrCl$sub 2$:Sm$sup 2$$sup +$ , 1963 .
[124] C. A. Streuli,et al. Polarographic Behavior of Organic Compounds at Mercury Pool Electrode , 1954 .