
Spectroscopic Properties of Inorganic and Organometallic Compounds
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Content
- Spectroscopic Properties Of Inorganic And Organometallic Compounds
- Contents
- Chapter 1 Nuclear Magnetic Resonance Spectroscopy
- 1 Introduction
- 2 Stereochemistry
- Complexes of Groups 1 and 2
- Complexes of Group 3, the Lanthanides and Thorium
- Complexes of Group 4
- Complexes of Group 5
- Complexes of Group 6
- Complexes of Group 7
- Complexes of Group 8
- Complexes of Group 9
- Complexes of Group 10
- Complexes of Group 11
- Complexes of Group 12
- 3 Dynamic System
- Fluxional Molecules
- Lithium
- Yttrium
- Lanthanum and Samarium
- Uranium
- Titanium, Zirconium and Hafnium
- Vanadium
- Niobium and Tantalum
- Chromium, Molybdenum and Tungsten
- Manganese and Rhenium
- Iron, Ruthenium and Osmium
- Cobalt, Rhodium and Iridium
- Nickel
- Palladium and Platinum
- Copper
- Silver and Gold
- Zinc
- Boron
- Aluminium
- Indium
- Thallium
- Silicon, Germanium and Tin
- Phosphorus
- Bismuth
- Oxygen
- Selenium
- Equilibria
- Solvation Studies of Ions
- Alkali Metals
- Beryllium
- Magnesium
- Calcium
- Group 3 and the Lanthanides
- Uranium
- Chromium
- Molybdenum
- Manganese, Iron and Nickel
- Ruthenium
- Rhodium and Iridium
- Palladium
- Boron
- Aluminium
- Thallium
- Tin
- Nitrogen
- Ionic Equilibria
- Group 1
- Group 2
- Group 3 and the Lanthanides
- Vanadium
- Niobium
- Chromium
- Molybdenum and Tungsten
- Rhenium
- Iron
- Ruthenium and Osmium
- Cobalt
- Nickel
- Palladium and Platinum
- Copper, Silver and Gold
- Group 12
- Boron
- Aluminium, Gallium and Indium
- Thallium
- Silicon
- Lead
- Nitrogen
- Equilibria among Uncharged Species
- Lithium
- Magnesium
- Titanium
- Zirconium
- Niobium
- Tantalum
- Chromium, Molybdenum and Tungsten
- Rhenium
- Iron
- Ruthenium
- Osmium
- Cobalt
- Rhodium
- Iridium
- Nickel
- Palladium
- Platinum
- Copper
- Gold
- Zinc
- Cadmium
- Boron
- Aluminium
- Gallium
- Silicon
- Tin
- Bismuth
- Xenon
- Course of Reactions
- Group 1
- Titanium and Zirconium
- Vanadium
- Tantalum
- Chromium
- Molybdenum and Tungsten
- Manganese
- Iron
- Ruthenium
- Cobalt, Rhodium and Iridium
- Palladium
- Platinum
- Cadmium
- Mercury
- Boron
- Aluminium
- Indium
- Silicon and Tin
- Nitrogen
- Phosphorus
- 4 Paramagnetic Complexes
- The Transition Metals
- Vanadium
- Chromium
- Molybdenum
- Tungsten
- Manganese
- Rhenium
- Iron
- Ruthenium and Osmium
- Cobalt
- Nickel
- Copper
- Complexes of the Lanthanides and Actinides
- Lanthanides
- Actinides
- 5 Solid-state NMR Spectroscopy
- Motion in Solids
- Structure of Solids
- Molecules Sorbed onto Solids
- Water Sorbed onto Solids
- Atoms and Other Molecules Sorbed onto Solids
- 6 Group 13 Compounds
- Boron Hydrides and Carboranes
- Other Compounds of Boron
- Complexes of Other Group 13 Elements
- 7 Group 14 Compounds
- 8 Group 15 Compounds
- 9 Compounds of Groups 16, 17 and 18
- 10 Appendix
- Chapter 2 Nuclear Quadrupole Resonance Spectroscopy
- 1 Introduction
- 2 Main Group Elements
- 2.1 Group 2 (Barium-137)
- 2.2 Group 13 (Aluminium-27, Gallium-69 and -71 and Indium-115)
- 2.3 Group 15 (Nitrogen-14, Arsenic-75, Antimony-121 and -123 and Bismuth-209)
- 2.4 Group 17 (Chlorine-35 and -37, Bromine-79 and -81 and Iodine-127)
- 3 Transition Metals and Lanthanides
- 3.1 Vanadium-51
- 3.2 Manganese-55
- 3.3 Cobalt-59
- 3.4 Copper-63 and -65
- 3.5 Niobium-93
- 3.6 Ruthenium-101
- 3.7 Palladium-105
- 3.8 Lanthanum-139
- 3.9 Europium-151 and -153
- References
- Chapter 3 Characteristic Vibrations of Compounds of Main Group Elements 218
- 1 Group 1
- 2 Group 2
- 3 Group 13
- 3.1 Boron
- 3.2 Aluminium
- 3.3 Gallium
- 3.4 Indium and Thallium
- 4 Group 14
- 4.1 Carbon
- 4.2 Silicon
- 4.3 Germanium
- 4.4 Tin
- 4.5 Lead
- 5 Group 15
- 5.1 Nitrogen
- 5.2 Phosphorus
- 5.3 Arsenic
- 5.4 Antimony
- 5.5 Bismuth
- 6 Group 16
- 6.1 Oxygen
- 6.2 Compounds Containing Sulfur or Selenium Rings or Chains
- 6.3 Other Sulfur and Selenium Compounds
- 6.4 Tellurium
- 7 Group 17
- References
- Chapter 4 Vibrational Spectra of Transition Element Compounds
- 1 Scandium, Yttrium and the Lanthanides
- 2 Titanium, Zirconium and Hafnium
- 3 Vanadium, Niobium and Tantalum
- 4 Chromium, Molybdenum and Tungsten
- 5 Manganese, Technetium and Rhenium
- 6 Iron, Ruthenium and Osmium
- 7 Cobalt, Rhodium and Iridium
- 8 Nickel, Palladium and Platinum
- 9 Copper, Silver and Gold
- 10 Zinc, Cadmium and Mercury
- 11 Actinides
- References
- Chapter 5 Vibrational Spectra of Some Coordinated Ligands
- 1 Carbon Donors
- 2 Boron Donors
- 3 Dihydrogen Complexes
- 4 Carbonyl Complexes
- 5 Nitrogen Donors
- 5.1 Molecular Nitrogen, Azido and Related Complexes
- 5.2 Amines and Related Ligands
- 5.3 Ligands Containing &C=N- Groups
- 5.4 Cyanides, Isocyanides and Related Complexes
- 5.5 Nitrosyl and Thionitrosyl Complexes
- 6 Phosphorus and Arsenic Donors
- 7 Oxygen Donors
- 7.1 Molecular Oxygen, Peroxo, Aquo and Related Complexes
- 7.2 Carboxylate and Related Complexes
- 7.3 Keto, Alkoxy, Ether and Related Complexes
- 7.4 Ligands Containing O-N, O-P or O-As Bonds
- 7.5 Ligands Containing O-S, O-Se or O-Te Bonds
- 7.6 Ligands Containing O-Cl Bonds
- 8 Sulfur, Selenium and Tellurium Donors
- 9 Potentially Ambident Ligands
- 9.1 Cyanates, Thio- and Selenocyanates and Their Iso-analogues
- 9.2 Ligands Containing N and O or P and O Donor Atoms
- 9.3 Ligands Containing N and S Donor Atoms
- 9.4 Ligands Containing S and O Donor Atoms
- References
- Chapter 6 Mössbauer Spectroscopy
- 1 Introduction
- 1.1 Books and Reviews
- 2 Theoretical
- 3 Methodology
- 4 Instrumentation
- 5 Iron-57
- 5.1 General Topics
- 5.2 Impurity Studies, Matrix Isolation, Polymers and Intercalation Compounds
- 5.3 Compounds of Iron
- 5.3.1 High-spin Iron(II) Compounds
- 5.3.2 High-spin Iron(III) Compounds
- 5.3.3 Mixed Valence Compounds and Unusual Valence States
- 5.3.4 Spin-crossover Compounds and Unusual Spin States
- 5.3.5 Low-spin and Covalent Compounds
- 5.4 Biological Systems and Related Compounds
- 5.5 Oxide and Chalcogenide Compounds of Iron
- 5.5.1 Hydroxides
- 5.5.2 Wüstite and Related Oxides
- 5.5.3 Haematite, Maghemite and Related Oxides
- 5.5.4 Magnetite and Spinel-type Oxides
- 5.5.5 Superconducting Ceramics Containing Iron
- 5.5.6 Other Oxides
- 5.5.7 Inorganic Oxide Glasses Containing Iron
- 5.5.8 Chalcogenides
- 5.6 Applications of Iron-57 Mössbauer Spectroscopy
- 5.6.1 Catalysts
- 5.6.2 Minerals
- 5.6.3 Steels and Corrosion Studies
- 5.6.4 Other Applications
- 6 Tin-119
- 6.1 Impurity Studies
- 6.2 Alloys
- 6.3 Inorganic Tin(II) Compounds
- 6.4 Inorganic Tin(IV) Compounds
- 6.5 Organotin(IV) Compounds
- 7 Other Elements
- 7.1 Main Group Elements
- 7.1.1 Germanium (Ge-73)
- 7.1.2 Antimony (Sb-121)
- 7.1.3 Tellurium (Te-125)
- 7.1.4 Iodine (I-127 and I-129)
- 7.1.5 Caesium (Cs-133)
- 7.2 Transition Metal Elements
- 7.2.1 Nickel (Ni-61)
- 7.2.2 Zinc (Zn-67)
- 7.2.3 Tantalum (Ta-183)
- 7.2.4 Iridium (Ir-193)
- 7.2.5 Gold (Au-197)
- 7.3 Lanthanide and Actinide Elements
- 7.3.1 Europium (Eu-151)
- 7.3.2 Gadolinium (Gd-155)
- 7.3.3 Dysprosium (Dy-161)
- 7.3.4 Erbium (Er-166)
- 7.3.5 Thulium (Tm-169)
- 7.3.6 Ytterbium (Yb-172)
- 7.3.7 Neptunium (Np-237)
- 7.3.8 Uranium (U-238)
- 8 Backscatter and Conversion Electron Mössbauer Spectroscopy
- 8.1 Theory and Instrumentation
- 8.2 Films and Implantation Studies
- 8.3 Corrosion Studies and Steels
- 8.4 Alloys
- 8.5 Oxides
- 8.6 Other Elements
- 9 Synchrotron Radiation Mössbauer Spectroscopy
- References
- Chapter 7 Gas-phase Molecular Structures Determined by Electron Diffraction
- 1 Introduction
- 2 Compounds of Elements in Group 13
- 3 Compounds of Elements in Group 14
- 4 Compounds of Elements in Group 15
- 5 Compounds of Elements in Group 16
- 6 Transition Metal Compounds 450
- References
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