1,4-Diaza-1,3-butadiene (a-diimine) ligands: their coordination modes and the reactivity of their metal complexes
暂无分享,去创建一个
[1] P. Overbosch,et al. Synthesis and reactivity of bis(1,4-diaryltetraazadiene)nickel complexes. Crystal and molecular structure of di[1,4-di(3,5-dimethylphenyl)tetraazadiene]nickel , 1982 .
[2] G. Wolmershäuser,et al. Über die Struktur von Carbonyl(1,4-diaza-1,3-dien)(1,3-dien)eisen-Komplexen und ihre Abhängigkeit von der Art des 1,3-Dien-Liganden , 1982 .
[3] G. Koten,et al. Study of the stereochemistry of silver(I) bis(pyridine-2-carbaldehyde-imine) triflate complexes in solution: application of inept 109Ag and 1H-{109Ag}NMR , 1982 .
[4] G. Koten,et al. Regioselective ethyl transfer reactions between Diethylzinc and 1,4-Dialkyl-1,4-diaza-1,3-butadienes: Synthesis of EtZn[R(et)NCHCHNR] , 1982 .
[5] G. V. Koten,et al. Silver-109 and rhodium-103 NMR spectroscopy with proton polarization transfer , 1981 .
[6] K. Vrieze,et al. Influence of .alpha. branching of the 1,4-substituents on the coordination of 1,4-diazabutadienes in mono-, bi-, tri-, and tetranuclear ruthenium carbonyl complexes. Crystal structure of [.sigma.-N, .sigma.-N', .eta.2-C = N, .eta.2-C = N'-diglyoxal bis(isopropylimine)]octacarbonyltetraruthenium , 1981 .
[7] G. Koten,et al. Binuclear metal carbonyl DAB complexes X. Activation of h2-C=N coordinated DAB ligands towards C-C bond formation with alkynes. The X-ray structure of {2-phenyl-3-(tert-butylamino)-4-(tertbutyl-imino)-1-butene-1-yl}Ru2(CO)5. Application to the catalytic cyclotrimerization of alkynes , 1981 .
[8] G. Koten,et al. An nmr study of the interaction of α-diimines (rnchchnr) with cyclometallated palladium(ii) compounds [{2-me2nch(z)c6h4pdx}2] (z h or (s)-me; x cl, br) , 1981 .
[9] G. Koten,et al. Five-coordinate platinum olefin complexes. Synthesis and high resolution 1H(250, 360 MHz) and 13C (20 MHz) NMR study of the interligand chiral recognition in the formation of diastereomeric [PtCl2( h2-olefin)(6-R'-py-2-CH=NR)] , 1981 .
[10] D. M. Grove,et al. A comparative study of platinum di(t-butyl)(15N2)diimine) and trans-[PtCl2(N-ligand)PBu3)] complexes by 195Pt-, 31P- and 15N-NMR , 1981 .
[11] M. Feigel,et al. Ruthenium complexes with diazadienes. I. Synthesis and crystal structure ofcis-Ru(dad)2Cl2 (dad = 2,7-dimethyl-3,6-diaza-3,5-octadiene) , 1981 .
[12] G. Koten,et al. Binuclear metal carbonyl DAB complexes 9. Synthesis and X-ray structure of (m-acetylene)[s-N, s-N', h2-C=N, h2-C=N'-glyoxalbis(isopropylimine)] tetracarbonyl diruthenium. First example of the 8e donating DAB ligand (DAB= 1,4-diazabutadiene) , 1981 .
[13] G. Koten,et al. An unexpected ethyl transfer reaction between Et2Zn and DI(t-Butyl)-glyoxaldiimine (t-BuDAB). Studies of the persistent [EtZn(t-BuDAB)] radical which is in equilibrium with its CC coupled dimer , 1981 .
[14] Heinz Hoberg,et al. Offenkettige 1,4-diazabutadiene als liganden in tetraorganylcyclobutadien-nickel(0)-komplexen , 1981 .
[15] J. Kraak,et al. Monitoring of the formation of binuclear ruthenium carbonyl complexes during reactions by means of high performance liquid chromatography , 1981 .
[16] G. Koten,et al. Synthesis of metal—tetraazadiene complexes via ligand transfer; two routes to nickel—or platinum—tetraazadiene complexes [M(Ar2N4)(L)2] , 1981 .
[17] G. Koten,et al. Binuclear metal carbonyl dab complexes : VIII. The syntheses of Os2(CO)6(DAB) complexes (DAB = 1,4-diazabutadiene). Spectroscopic characterization and comparison with analogous iron and ruthenium complexes , 1981 .
[18] R. Puddephatt,et al. Mechanism of dissociation of alkynes from some platinum-alkyne complexes , 1981 .
[19] G. Koten,et al. Binuclear metal-carbonyl DAB complexes VI. Synthesis and spectroscopic properties of MCo(CO)5(m2-CO)(DAB) (M = Mn, Re; DAB = 1,4-diazabutadiene).X-Ray structure of [s2-N,s2-N,h2-C=N-[glyoxal[bis(t-butylimine)]]hexacarbonylcobalt-manganese , 1981 .
[20] B. Chaudret,et al. Reactions of ruthenium triphenylphosphine complexes with diazadienes , 1981 .
[21] G. Koten,et al. Four-co-ordinate rhodium(I) complexes [{Rh(CO)2Cl}n(α-diimine)] (n = 1, 2) with σ,σ-N,N′ chelate or σ-N, σ-N′ bridge bonded RNC(R′)C(R″)NR ligands. Influence of the branching at Cα of R on the RhIα-diimine interaction , 1981 .
[22] G. Koten,et al. Reactions of stable [PtCl2(η2-olefin)(α-di-imine)] complexes. Retention of the five-co-ordinate structure upon halogen exchange and ligand substitution with olefins, α-di-imines, and N,N′-disubstituted 1,2-diaminoethanes , 1981 .
[23] B. Chaudret,et al. Preparation and characterization of novel tris-α-di-imino-complexes of ruthenium(0) and ruthenium(II). X-Ray crystal and molecular structure of the electron-rich complex tris-[1,2-bis-(p-methoxy-phenyliminoethane)]ruthenium(0)–toluene , 1981 .
[24] G. Koten,et al. Binuclear metal carbonyl dab complexes : II. The syntheses and coordination properties of Mn(CO)5M′(CO)3DAB (M′ = Mn, Re; DAB = 1,4-diazabutadiene) , 1981 .
[25] D. J. Stufkens,et al. Characterization of metal-to-ligand charge-transfer and intraligand transitions of fac-[Re(CO)3L(X)] complexes [L = di-imine; X = halide or Mn(CO)5] and explanation of the photochemistry of [Re(CO)3L{Mn(CO)5}] using the resonance Raman effect , 1981 .
[26] L. Zakharov,et al. Some peculiarities of structure, stability and reactivity of compounds containing metal—metal bonds , 1981 .
[27] G. Koten,et al. Syntheses and NMR studies of five-co-ordinate rhodium(I) complexes with α-diimines (RNC(H)C(H)NR): [RhCl(CO)(η2-C2H4)(α-diimine)] and [RhCl(L)2(α-diimine)] (R = t−Bu, EtMe2C−; L = CO,PF3) , 1981 .
[28] B. Crociani,et al. Adducts of 1,4-diazabutadienes with group IIB metal halides , 1981 .
[29] D. J. Stufkens,et al. 1,4-Diazabutadiene olefin complexes of zerovalent palladium: preparation and characterization , 1981 .
[30] E. S. Raper,et al. Complexes of imidazoline (1,3H)-2-thione with Co(II) and Zn(II) salts , 1981 .
[31] T. Boschi,et al. Reactions of 1,4-diazubutadienes with chloro-bridged palladium(II) and platinum(II) allyl derivatives , 1981 .
[32] Peter A. Williams,et al. Molecular orbital calculations of iron(II) complexes of diimine ligands , 1980 .
[33] R. D. Adams. Isocyanide insertion reactions. The reaction of Mn(CO)/sub 4/CNCH/sub 3/ anion with iodomethane and the crystal and molecular structure of (CH/sub 3/)N == C(CH/sub 3/)(CH/sub 3/)C == N(CH/sub 3/)Mn(CO)/sub 3/Mn(CO)/sub 3/ , 1980 .
[34] P. Williams,et al. Equilibria in complexes ofN-heterocyclic molecules, part XXXI. an explanation for rates of dissociation of iron(II) complexes of diimine ligands , 1980 .
[35] G. Koten,et al. s2-N,m2-N,h2-C=N coordination as the activating step in the C-C bond formation between two a-diimines in dinuclear ruthenium carbonyl complexes. X-ray structure of tetracarbonyl[glyoxalbis(isopropylimine)]diruthenium , 1980 .
[36] K. Vrieze,et al. The eight electron donor mode of 1,4-diazabutadiene ligands as revealed by the crystal structures of Ru2(CO)4(η-2-acetylene)[σ,σ,η2,η2-glyoxalbis(isopropylimine)] and Ru4(CO)8[σ,σ,η2,η2-glyoxalbis(isopropylimine)] , 1980 .
[37] D. J. Stufkens,et al. (Diimine)carbonyl complexes of chromium, molybdenum, and tungsten: relationship between resonance Raman spectra and photosubstitution quantum yields upon excitation within the lowest metal to diimine charge-transfer band , 1980 .
[38] M. Svoboda,et al. Diazadien-nickel-alkyle☆ , 1980 .
[39] D. Leibfritz,et al. Starre Phenylgruppen‐Konformation in Komplexen , 1980 .
[40] G. Koten,et al. Novel bonding modes of a-diimines. Synthesis and characterization of [MCl2L(a-diimine)] and [MCl2(a-diimine)n] (M = Pd, Pt; L = phosphine or arsine; n = 1, 2) containing s,s-N,N, sN, or s-N´´sN, bonded a-diimines , 1980 .
[41] B. D. Blasio,et al. Synthesis, structure, and stereochemistry of five-coordinate platinum(II)-olefin complexes with a chiral diamine , 1980 .
[42] G. Koten,et al. Reactions of stable [PtCl2(η2-C2H4)(t-BuNCHCHNt-Bu)]. retention of the pentacoordinate structure upon halogen exchange and ligand substitution with olefins, α-diimines and N,N′-disubstituted 1,2-diaminoethanes , 1980 .
[43] P. Overbosch,et al. Conversion of aryl azides on Ni centers into tetraazadiene-nickel complexes [Ni0(Ar2N4)2], [CpNiI(Ar2N4)] and [(RNC)2Ni0Ar2N4]. Crystal structure of [Ni0{1,4-(3,5-Me2C6H3)2N4}2] , 1980 .
[44] D. A. Clemente,et al. Structure of trans-chloro-1,4-bis(ϱ-methoxyphenyl)-1,4-diaza-3methylbutadiene-2-yl-bis(triphenylphosphine)-palladium(II) , 1980 .
[45] G. Koten,et al. Synthesis and molecular geometry of [trans-PtCl2PBu3]2(di-t-Bu-diimine) containing a σ,σ′-N,N′ bridging diimine with a planar anti-(trans-PPNCCNPtPtrans)- skeleton , 1980 .
[46] J. Reinhold,et al. Extended hückel calculation on diimine substituted oxalate cobalt(III) complexes , 1980 .
[47] B. Chaudret,et al. Reactions of ruthenium triphenylphosphine complexes with diazadienes. Part 1. Reactions of [RuCl2(PPh3)3] and [RuH(Cl)(PPh3)3] and disproportionation of a hydridochloro-complex , 1980 .
[48] L. H. Staal,et al. Binuclear metal carbonyl DAB complexes. V. The syntheses, structural and chemical properties of Co2(CO)6(DAB) (DAB = 1, 4-diazabutadiene) , 1980 .
[49] K. Vrieze,et al. New aspects of the reaction between tBuNCHCHNtBu and Fe2(CO)9, solving the controversy about the coordination mode of the DAB ligand in Fe(CO)3 (tBuNCHCHNtBu) (DAB = 1,4-diazabutadiene) , 1980 .
[50] H. Chum,et al. Ligand oxidation in iron diimine complexes. V. Kinetics of the oxidation of tris[2-pyridinal-α-methyl-(methylimine)] iron(II) by cerium(IV) , 1980 .
[51] B. Crociani,et al. The preparation of trans-[chloro{1,4-bis(p-methoxyphenyl)-1,4-diaza-1,3-butadiene-2-yl}bis (triphenylphosphine)-palladium(II)] , 1980 .
[52] D. J. Stufkens,et al. Application of the resonance Raman effect for the investigation of MLCT transitions and photoreactivity of [M(CO)4L] complexes (M=Cr,Mo,W; L=α-di , 1980 .
[53] G. Koten,et al. Diazabutadienes as ligands.I. Compounds of aluminium: coordination of diazabutadienes to Al(CH3)3 and subsequent intramolecular insertion and rearrangement reactions leading to [(CH3)2Al(RNCH(CH3)C(R')=NR)] (R' = H, CH3) and (CH3)2AlRNCH2C(CH3) =NR , 1979 .
[54] Friedrich-Wilhelm Grevels,et al. Carbonyl(1,4-diaza-1,3-dien)(1,3-dien)eisen-komplexe: photochemische darstellung über tricarbonyl(1,4-diaza-1,3-dien)eisen , 1979 .
[55] G. Koten,et al. Stereochemistry of Arylmetal-1B, aryllithium, and arylmetal-1b-lithium clusters Ar4M2Li2 (M = Cu, Ag, or Au). Detection of rotation of three-center two-electron bonded aryl groups around the C(1)-C(4) axis , 1979 .
[56] B. Crociani,et al. Binuclear complexes of 1,4-diaza-3-methylbutadien-2-Yl-palladium(II) derivatives with palladium(II) and platinum(II) chlorides , 1979 .
[57] U. Belluco,et al. Reactions of 1,4-diaza-3-methylbutadien-2-ylpalladium(II) derivatives with chloro-bridged rhodium(I) complexes , 1979 .
[58] G. Koten,et al. σ,σ′-N,N′ bridging and σ,σ-N,N chelating α diimines. Molecular geometries of [PtCl2PBu3]2(t-BuNCHCHNBu-t) and PtCl2(styrene)(t-BuNCHCHNBu-t) , 1979 .
[59] B. Chaudret,et al. The preparation of [RuHCl(PPh3)2(C3H7NCHCHNC3H7)] and its disproportionation to give a dihydro and a dichloro complex , 1979 .
[60] E. Roosendaal,et al. Carbon-carbon bond formation between two .alpha.-diimines with the simultaneous formation of a metal-metal bond. X-ray structure of hexacarbonylbis[.mu.-(1-(isopropylamino)-2-(isopropylimino)ethano-N,N')]-dimolybdenum , 1979 .
[61] A. Oskam,et al. The syntheses and coordination properties of M(CO)3X(DAB) (M = Mn, Re; X = Cl, Br, I; DAB = 1,4-diazabutadiene) , 1979 .
[62] H. T. Dieck,et al. Homogenkatalytische Isoprendimerisierung zu 2, 7‐Dimethyl‐2, trans‐4, 6‐octatrien am Chromkatalysator , 1979 .
[63] F. Vögtle,et al. Hindered Rotation at the Triple Bond , 1979 .
[64] G. Koten,et al. Binuclear metal carbonyl DAB complexes. III. Activation of a CN double bond in Ru2(CO)6(DAB) complexes (DAB = 1, 4-diazabutadiene). C C bond formation between two DAB ligands , 1979 .
[65] D. J. Stufkens,et al. Differences in photochemical reactivity of [M(CO)4(α-di-imine)](M = Cr, Mo, or W) complexes explained by the resonance Raman effect , 1979 .
[66] D. J. Stufkens,et al. Detection and assignment of different electronic transitions within the first CT band of M(CO)4L (M = Cr, Mo, W; L 1,4-diazabutadiene (DAB) and pyridine-2-carbaldehydeirnine (PyCa)) with the use of resonance raman and MCD spectra , 1979 .
[67] P. Birner,et al. Quantum chemical investigations of the π-acceptor ability of α-diimine ligands , 1979 .
[68] D. J. Stufkens,et al. A study of the electronic properties of M(CO)4DAB (M = Cr, Mo, W; DAB = diazabutadiene). II. Conformational change below 200 K as evidenced from absorption and resonance raman spectra , 1979 .
[69] H. Hofmann,et al. Quantum chemical calculations for the determination of the molecular structure of conjugated compounds: Part XIV. On the conformational structure of α-diimine ligands , 1979 .
[70] B. Crociani,et al. 1,2-Bis(arylimino)propylpalladium complexes as N-donor chelate ligands towards metals of the first transition series , 1979 .
[71] E. Muetterties,et al. Chemistry of zero- and low-valent metal phosphine and phosphite complexes. 4. The iron system , 1978 .
[72] B. Crociani,et al. The preperation and coordination properties of 1,4-diaza-3-methylbutadiene-2-ylpalladium(II) complexes with different substituents on the imino nitrogen atoms , 1978 .
[73] H. Chum,et al. PHOTOCHEMISTRY OF IRON(II) DIIMINE COMPLEXES IN A ROOM TEMPERATURE MOLTEN SALT , 1978 .
[74] G. Koten,et al. Synthesis and Characterization of 1-Iminopropan-2-one and 2-Iminobutan-3-one Compounds, RC(O)C(NR')R , 1978 .
[75] D. J. Stufkens,et al. Bonding properties of Mo(CO)4-xL(PR3)x (x = 0, 1, 2; L =diazabutadiene, pyridine-2-carbaldehyde imine and 2,2′-bipyridine). Infrared, electronic absorption, 1H, 13C and 31P NMR and resonanceraman spectra , 1978 .
[76] M. Tubino,et al. Kinetics and mechanisms of dissociation of metal chelates. II. The acid-catalyzed dissociation of tris(pyridine-2-acetaldehyde-N-Methylimine)iron(II) , 1978 .
[77] D. J. Stufkens,et al. Combined use of m.c.d. and resonance Raman spectra for the detection of different electronic transitions in a charge-transfer band of [Mo(CO)4L](L = 2-iminomethylpyridine) , 1978 .
[78] C. Krüger,et al. Neue Verbindungen aus 1,4‐Diaza‐1,3‐dienen und Eisencarbonylen: Hexacarbonyl(1,4‐diazadien)dieisen und substituierte 2(3H)‐Imidazolone , 1978 .
[79] D. J. Stufkens,et al. A study of the electronic properties of M(CO)4DAB (M = Cr, Mo, W; DAB = diazabutadiene). I. electronic `absorption, resonance raman, infrared, 13C- and 15N-NMR spectra , 1978 .
[80] K. Folting,et al. 2,2'‐Biquinolyl , 1977 .
[81] F. Hollander,et al. An accurate redetermination of the structure of triruthenium dodecacarbonyl, Ru3(CO)12 , 1977 .
[82] G. Koten,et al. α-Diimines as monodentate or bridging ligands, synthesis and characterization of Palladium(II) and Rhodium(I) di(t-butyl)diimine complexes , 1977 .
[83] D. Walther. Elektronenreiche Nickelkomplexe mit Heteroolefinen als Liganden , 1977 .
[84] G. Koten,et al. Selective formation of biaryls via interaction of polynuclear arylcopper compounds with copper(I) trifluoromethane sulphonate [(copper(I) triflate)] , 1977 .
[85] H. Chum,et al. LIGAND OXIDATION IN IRON DIIMINE COMPLEXES. 3. ELECTROCHEMICAL OXIDATION OF TRIS(GLYOXAL BIS(METHYLIMINE))IRON(II) , 1977 .
[86] H. Dieck,et al. Bis(diazadiene)iron complexes, (R1MCR2–CR2NR1)2Fe1 , 1977 .
[87] J. Riveros,et al. Kinetics and mechanism of the autoxidation of tris[biacetyl bis(methylimine)]iron(II) , 1977 .
[88] K. Nakamoto,et al. Resonance Raman spectra and excitation profiles of tris(.alpha.-diimine) complexes of iron(II) , 1977 .
[89] A. Sargeson,et al. The stabilization of .alpha.- and .beta.-diimines: hexaammineruthenium(III), -osmium(III), and -platinum(IV) condensed with .alpha.- and .beta.-diketones , 1976 .
[90] B. Crociani,et al. Adducts of a palladium(II) derivatives containing a α-bonded α-diimino group with transition metals a new class of bimetallic complexes , 1976 .
[91] O. Lindgren,et al. 8,8'‐Biquinolyl , 1976 .
[92] B. West,et al. Organometallic complexes with α-diimines and related Ligands , 1976 .
[93] H. T. Dieck,et al. Metallierung einer nichtaktivierten Alkyl‐Gruppe im Nickelkomplex , 1976 .
[94] H. T. Dieck,et al. Intramolekularer ligandenaustausch in einkernigen heterodien-eisentricarbonylkomplexen , 1976 .
[95] Y. Chauvin,et al. Dimerisation of ethyl N-α-methylbenzyliminoacetate with nonacarbonyldi-iron. Crystal and molecular structures of a di-iron carbonyl intermediate and of the dimerized imine di-iron carbonyl complex , 1976 .
[96] G. Natile,et al. Five-co-ordinate ethylene complexes of platinum(II). Part 2. Synthesis and reactivity of some five-co-ordinate complexes of platinum with bis(hydrazones) and X-ray crystal structure of [butane-2,3-dione bis(methylhydrazone)]dichloro(η-ethylene)platinum(II) , 1976 .
[97] A. Hsieh,et al. Group IIB metal halide complexes with some 1,2-ethanediylidenediimines , 1976 .
[98] J. Koskikallio,et al. On the Molecular Structure of N,N'-Di-t-butyl-1,2-ethanediimine, (CH3)3CN = CHCH = NC(CH3)3, as Studied by Gas Electron Diffraction. , 1976 .
[99] O. Borgen,et al. A CNDO/2 Study of Bipyridyls. I. , 1976 .
[100] A. Nakamura,et al. Acetylene and Allene Complexes: Their Implication in Homogeneous Catalysis , 1976 .
[101] K. Wade. Structural and Bonding Patterns in Cluster Chemistry , 1976 .
[102] T. Mack,et al. Intramolekularer cis/trans-Austausch von Carbonylliganden in (LL)M(CO)4-Komplexen , 1975 .
[103] A. V. Zelewsky,et al. Komplexe von Kupfer(I) mit Glyoxal‐bis‐N‐t.‐butylimin , 1975 .
[104] D. Walther. Synthese und Eigenschaften elektronenreicher Nickelkomplexe mit Mono- und bifunktionellen Azomethinen und mit Benzil , 1975 .
[105] H. T. Dieck,et al. Unsymmetrische Koordination eines symmetrischen 1,4-Diazabutadiens an Eisen(0) , 1975 .
[106] H. Dieck,et al. Reductive Fixation of cis‐ and trans‐1,4‐Diazabutadienes , 1975 .
[107] H. T. Dieck,et al. Reduktive Fixierung von cis- und trans-1,4-Diazabutadienen , 1975 .
[108] M. Paoli,et al. Studies on the coordinate bond. VII. Complexes of diimines with iron, synthesis and spectral properties. , 1975 .
[109] H. T. Dieck,et al. Zur Komplexchemie von Vierzentren‐π‐Systemen, IX. 2,2′‐Bipyridyl – ein „schlechter Ligand”︁ für Metalle in niedrigen Oxidationsstufen , 1975 .
[110] H. T. Dieck,et al. ESR metallorganischer radikale—IV1 : Sterische effekte bei 1,4-diazabutadienchelaten , 1975 .
[111] H. Chum,et al. RETARDATION OF THE FERRIC ION CATALYZED DECOMPOSITION OF HYDROGEN PEROXIDE BY AN IRON(II) DIIMINE COMPLEX , 1974 .
[112] H. Chum,et al. Cyclic voltammetry of iron-diimine complexes , 1974 .
[113] D. Walther. Metall(0)‐Komplexe von Nickel und Molybdän mit Benzil‐bis‐phenyliminen als Chelatliganden , 1974 .
[114] H. Chum,et al. Ligand oxidation in iron diimine complexes. II. Rate and mechanism of the oxidation of tris(glyoxal bis(methylimine))iron(II) by cerium(IV) , 1974 .
[115] H. Chum,et al. Ligand oxidation in iron diimine complexes. I. Stoichiometry and products of the oxidation of tris(glyoxal bis(methylimine))iron(II) by cerium(IV) , 1974 .
[116] H. T. Dieck,et al. Zur komplexchemie von 4-zentren-π-systemen : VIII. ESR-untersuchungen an heterobutadien-chelaten. I. Kalium-(diazabutadien-tetracarbonyl-metallate) , 1974 .
[117] H. T. Dieck,et al. Zur komplexchemie von 4-zentren-π-systemen , 1974 .
[118] J. Spencer,et al. Reactions of low-valent metal complexes with fluorocarbons. Part XXIX. Zerovalent nickel and platinum complexes with hexafluorobut-2-yne and hexakis(trifluoromethyl)benzene , 1974 .
[119] D. Walther. Untersuchungen zur Polarität organischer Lösungsmittel und filmbildender Polymere mit Hilfe der Solvatochromie von 1,2‐Diimin‐Komplexen des Molybdän(0) , 1974 .
[120] H. T. Dieck,et al. Zur komplexchemie von vierzentren-π-systemen VII. 1-azabutadien-komplexe des molybdäns , 1973 .
[121] R. Bau,et al. Molecular structure of (1,7-cyclododecadiyne)hexacarbonyldiiron. Implications on the alkyne disproportionation reaction , 1973 .
[122] F. Gasparrini,et al. Preparation of a five-co-ordinate platinum-π-ethylene complex: (biacetyl bismethylphenylhydrazone)dichloro-π-ethyleneplatinum(II) , 1973 .
[123] G. Häfelinger,et al. Die Mesitylgruppe als Ringstromsonde bei Übergangsmetall‐Chelaten von 1,2‐Diiminen , 1972 .
[124] H. Hausen,et al. Die Kristallstruktur von Dicarbonyl‐diacetylbis (dimethylhydrazon)‐Nickel(O) , 1972 .
[125] H. T. Dieck,et al. Zur Komplexchemie von Vierzentren‐π‐Systemen, VI. Die „π‐Rückbindung”︁: Reduktionspotentiale von 1.4‐Diheterobutadien‐molybdän‐tri‐ und ‐dicarbonylen , 1972 .
[126] H. T. Dieck,et al. Zur Komplexchemie von Vierzentren‐π‐Systemen, V. Die „π‐Rückbindung”︁: Solvatochromie bei 1.4‐Diheterobutadien‐molybdän‐tri‐ und ‐dicarbonylen , 1972 .
[127] A. V. Zelewsky,et al. Metal Complexes of Free Radicals. Part II: Identification and structures of radical complexes of alkaline earth metals and zinc , 1972 .
[128] H. Chum,et al. Autoxidation of iron(II) di-imine complexes , 1972 .
[129] O. Exner,et al. Dipole moments and conformations of 1,2-diimines , 1971 .
[130] H. T. Dieck,et al. Kupfer(I)-diazabutadien-halogenide , 1971 .
[131] H. T. Dieck,et al. Komplexchemie von vierzentren-π-systemen IV. Synthese und eigenschaften hochsubstituierter molybdän-carbonyl-derivate , 1971 .
[132] K. Wade. The structural significance of the number of skeletal bonding electron-pairs in carboranes, the higher boranes and borane anions, and various transition-metal carbonyl cluster compounds , 1971 .
[133] H. Dieck,et al. Zur Komplexchemie von Vierzentren-π-Systemen, III. Farbe, Solvatochromie und Reduktionspotentiale der 1.4-Diaza-butadien-molybdäntetracarbonyle , 1971 .
[134] G. Jung,et al. α‐Diimin‐Metallchelate: Cyclische Delokalisation der π‐Elektronen und 13C‐chemische Verschiebung , 1970 .
[135] H. T. Dieck,et al. Abhängigkeit der Solvatochromie vom Grundzustand bei 1,4-Heterobutadien-carbonylmolybdän-Komplexen , 1970 .
[136] R. K. Barnes,et al. Glyoxal derivatives. II. Reaction of glyoxal with aromatic primary amines , 1970 .
[137] E. König,et al. Electronic spectra of tris(2,2′-bipyridyl) complexes—I , 1970 .
[138] R. K. Barnes,et al. Glyoxal derivatives—I , 1970 .
[139] R. K. Barnes,et al. The conformation and NMR of conjugated diimines , 1969 .
[140] B. Sarry,et al. σ-Diphenyltetrakis(phehyllithium)niob(II) , 1968 .
[141] R. Hayter. A new route to π-allyl complexes of molybdenum and tungsten☆ , 1968 .
[142] E. Breitmaier,et al. 1H‐Kernresonanz‐Untersuchungen an Fünfringchelaten , 1968 .
[143] M. Stiddard,et al. Carbonyl-π-allyl complexes of molybdenum and tungsten , 1967 .
[144] L. Lindoy,et al. Complexes of iron(II),cobalt(II) and nickel(II) with α-diimines and related bidentate ligands , 1967 .
[145] M. V. Meerssche,et al. Complexes du fer-carbonyl avec l'acétylène et ses dérivés. III. Structure de Fe2(CO)6, C6H5C2C6H5 , 1967 .
[146] J. Collman,et al. Acetylene Complexes of Iridium and Rhodium , 1967 .
[147] A. Nakamura,et al. .pi.-Coordination of unsaturated bonds containing heteroatoms. II. Iron carbonyl complexes of azomethine analogs of 1,3-dienes. Preparation and nature of the coordination bondings , 1967 .
[148] H. Bock,et al. Metall(0)‐Verbindungen mit nichtaromatischen Stickstoff‐π‐Systemen, VI. 1.4‐Diaza‐butadien‐molybdän‐tetracarbonyle: Synthesen, Eigenschaften und Bindungsmodell , 1967 .
[149] A. Balch,et al. Complete Electron-Transfer Series of the [M-N4] Type , 1966 .
[150] W. Reynolds,et al. Preparation of an Iron(0) Complex with 2,2'-Bipyridine , 1966 .
[151] O. S. Mills,et al. Studies of some carbon compounds of the transition metals. II. The structure of MeC: CMe.H2F2(CO)8 , 1961 .
[152] W. Hübel,et al. Die cyclisierende Trimerisierung von Alkinen mit Hilfe von Metallcarbonyl‐Verbindungen , 1960 .
[153] S. Nagakura. Molecular Complexes and their Spectra. VIII. The Molecular Complex between Iodine and Triethylamine1 , 1958 .
[154] E. Diczfalusy,et al. An Electron Diffraction Reinvestigation of the Molecular Structure of 1,3-Butadiene. , 1958 .
[155] L. Horner,et al. Notiz Über Darstellung und Eigenschaften Einiger Isonitrone (Oxazirane) , 1957 .
[156] E. Schroeder,et al. The crystal structure of 2,2'-bipyridine , 1956 .
[157] D. Busch,et al. The Iron(II)-Methine Chromophore , 1956 .
[158] J. Carson. Reaction of Acetoin and Hydroxyacetaldehyde with Cyclohexylamine1 , 1953 .
[159] P. Krumholz. Studies on the Coördinate Bond. II. Ferrous Complexes of α-Diimines1 , 1953 .
[160] E. A. Braude,et al. 404. Studies in light absorption. Part VII. Azines and related systems. A comparison of the –CC– and the –CN– chromophore , 1949 .