216 results on '"Cardaci, G."'
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52. Reactivity of Fe(CO)4(H)MPh3 (M = Si, Ge) and Mechanism of substitution by two electron donor ligands: Implications for the Mechanism of Hydrosilylation of olefins catalyzed by Fe(CO)5
53. Mechanism and Equilibrium Constants of the Reaction between η4- Tricarbonyl Complexes and Group 5 Ligands
54. Reattività dei complessi tetraaptoeterodieni ferrotricarbonile con leganti del V gruppo
55. Alkyl and Di-haptoacyl Derivatives of Iron(II) Complexes: a new Preparative Method
56. Schiff-base Complexes of Tetracarbonyliron from Ennea-carbonyl di-iron
57. Mechanism of Carbon Monoxide Insertion in the Fe(CO)2(PMe3)2(Me)X Complexes
58. Formation of methoxycarbonyl Group by Attak of Methanol on an Iron(II) Carbonyl Complex, Assisted by Intramolecular Proton Transfert: an X-ray characterization
59. Struttura e Meccanismo di Reazione di Complessi Isonitrilici del Ferro
60. Mechanism of the Reaction of Chelated Tricarbonyliron Complexes of α,β- Schiff Bases with Group 5 Ligands
61. Self-Diffusion Coefficients of Transition-Metal Complex Ions, Ion Pairs, and Higher Aggregates by Pulsed Field Gradient Spin−Echo NMR Measurements
62. Interionic solution structure of acetyl Ru-II complexes bearing diimine and diamine ligands by H-1-NOESY and F-19{H-1}-HOESY NMR: Still more specific anion-cation interactions
63. MECHANISM OF ISOCYANIDE INSERTION CATALYZED BY ANION GROUPS IN CATIONIC COMPLEXES OF IRON(II)
64. Mechanism of formation of (.alpha.,.beta.) unsaturated aldehyde- and ketone-iron tricarbonyl complexes from the corresponding iron-tetracarbonyl complexes
65. ChemInform Abstract: MECHANISM AND EQUILIBRIUM CONSTANTS OF THE REACTION BETWEEN η4-HETERODIENEIRONTRICARBONYL COMPLEXES AND GROUP 5 LIGANDS
66. ChemInform Abstract: SUBSTITUTION REACTION MECHANISM OF (PI‐MONOOLEFIN)IRON TETRACARBONYL COMPLEXES WITH GROUP V LIGANDS
67. Mechanism of substitution of (.pi.-monoolefin)iron tetracarbonyl complexes by triphenylphosphine. Effect of carbon monoxide
68. ChemInform Abstract: Isocyanide Insertion Reaction of Alkyl Complexes of Iron(II).
69. ChemInform Abstract: HE(I) PHOTOELECTRON SPECTRA OF TETRACARBONYLIRON COMPLEXES OF GROUP 5 LIGANDS AND OF OLEFINIC LIGANDS
70. (η2-Cinnamic)tetracarbonyliron acids. synthesis and acidity
71. ChemInform Abstract: HYDRIDO(TRIPHENYLSILYL)TETRACARBONYLIRON DERIVATIVES WITH PHOSPHINE LIGANDS
72. ChemInform Abstract: (η2-CINNAMIC)TETRACARBONYLIRON ACIDS. SYNTHESIS AND ACIDITY
73. ChemInform Abstract: ZWITTERIONIC ADDUCTS FROM TRIALKYLPHOSPHINE AND (η‐ALLYL)DICARBONYLNITROSYLIRON COMPLEXES: STRUCTURE AND REACTIVITY
74. ChemInform Abstract: MECHANISM OF FORMATION OF CHELATED TRICARBONYLIRON COMPLEXES OF α,β-UNSATURATED SCHIFF BASES FROM THE CORRESPONDING TETRACARBONYLIRON COMPLEXES- FACTORS AFFECTING THE STABILITY OF THE TRIGONAL-BIPYRAMIDAL COMPLEXES
75. ChemInform Abstract: THE MECHANISM OF SUBSTITUTION OF (PI-OLEFIN)IRON TETRACARBONYL COMPLEXES BY TRIPHENYLPHOSPHINE, SOLVENT EFFECTS
76. ChemInform Abstract: KINETICS AND MECHANISM OF THE SUBSTITUTION OF OLEFINIC LIGANDS BY TRIPHENYLANTIMONY IN (PI‐MONOOLEFIN) TETRACARBONYLIRON COMPLEXES
77. ChemInform Abstract: MECHANISM OF THE REACTION OF CHELATED TRICARBONYLIRON COMPLEXES OF α,β-UNSATURATED SCHIFF BASES WITH GROUP 5 LIGANDS
78. ChemInform Abstract: INFRARED SPECTRUM AND VIBRATIONAL ASSIGNMENT OF PI-ALLYLTRICARBONYLCOBALT (I)
79. Hydrido(triphenylsilyl)tetracarbonyliron derivatives with phosphine ligands
80. Mechanism of carbon monoxide insertion in the [Fe(CO)2(PMe3)2(Me)X] complexes
81. Mechanism of carbonyl "insertion" reactions of the compounds cis-MMeX(CO)2(PMe3)2 (M = iron, ruthenium; x = iodo, cyano). Stereochemistry at the metal centers
82. ChemInform Abstract: Reactivity of Fe(CO)4(H)MPh3 (M: Si, Ge) and Mechanism of Substitution by Two-Electron-Donor Ligands: Implications for the Mechanism of Hydrosilylation of Olefins Catalyzed by Fe(CO)5.
83. Substitution reaction mechanism of (.pi.-monoolefin) iron tetracarbonyl complexes with group V ligands
84. ChemInform Abstract: MECHANISM AND EQUILIBRIUM CONSTANTS OF THE REACTION OF FORMATION OF (Π‐PHCH‐CHCOR)FE(CO)3SBPH3 FROM (Π‐PHCH‐CHCOR)FE(CO)3 AND SBPH3
85. ChemInform Abstract: THE MECHANISM OF SUBSTITUTION OF PI-(PHCH=CHCOR)FE(CO)3 COMPLEXES WITH PPH3, ASPH3 AND SBPH3
86. Reduction of [(1-3-η-allyl)Fe(CO)2NO] complexes with trialkylphosphine
87. ChemInform Abstract: SCHIFF-BASE COMPLEXES OF TETRACARBONYLIRON FROM ENNEACARBONYLDI-IRON
88. Chemical reduction of some monosubstituted derivatives of (1–3-η-allyl)dicarbonylnitrosyliron
89. ChemInform Abstract: MECHANISM AND EQUILIBRIUM CONSTANTS OF THE REACTION BETWEEN CARBON MONOXIDE AND TRIPHENYLPHOSPHINE‐, ‐ARSINE‐, AND ‐STIBINEDICARBONYL(1‐2‐η:3‐4‐η‐1,4‐DIPHENYL‐1‐AZABUTA‐1,3‐DIENE)IRON
90. Mechanism and equilibrium constants of the reaction between .eta.4-heterodieneirontricarbonyl complexes and group 5 ligands
91. ChemInform Abstract: Formation of a Methoxycarbonyl Group by Attack of Methanol on an Iron(II) Carbonyl Complex, Assisted by Intramolecular Proton Transfer: X‐Ray Structure Determination of (Fe(CO)(PMe3)2(CNC6H11)(CO(OCH3))(C(CH3)=NHC6H11))‐BPh4.
92. Polarographic behaviour of π-allylic complexes of transition metals
93. ChemInform Abstract: POLAROGRAPHIC BEHAVIOUR OF PI-ALLYLIC COMPLEXES OF TRANSITION METALS PART 2, PI-ALLYLTRICARBONYLCOBALT AND SOME PHOSPHINIC DERIVATIVES
94. ChemInform Abstract: MECHANISM OF CARBON MONOXIDE INSERTION IN THE (FE(CO)2(PME3)2(ME)X) COMPLEXES
95. ChemInform Abstract: MECHANISM OF FORMATION OF (ALPHA,BETA) UNSATURATED ALDEHYDE‐ AND KETONE‐IRON TRICARBONYL COMPLEXES FROM THE CORRESPONDING IRON‐TETRACARBONYL COMPLEXES (I)
96. ChemInform Abstract: VIBRATIONAL SPECTRA OF PI‐ALLYL‐ AND PI‐ALLYL‐D5‐DICARBONYLNITROSYLIRON
97. The mechanism of substitution of π-(PhCHCHCOR)Fe(CO)3 complexes with PPh3, AsPh3 and SbPh3
98. ChemInform Abstract: MECHANISM OF SUBSTITUTION OF (PI‐MONOOLEFIN)IRON TETRACARBONYL COMPLEXES BY TRIPHENYLPHOSPHINE, EFFECT OF CARBON MONOXIDE
99. Mechanism and equilibrium constants of the reaction of formation of (.pi.-PhCH:CHCOR)Fe(CO)3SbPh3 from (.pi.-PhCH:CHCOR)Fe(CO)3 and SbPh3
100. ChemInform Abstract: REACTIONS OF METHYL COMPLEXES OF IRON(II) WITH LEWIS BASES
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