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Lecture
IR Spectroscopy in Coordination Chemistry
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Oxidative Addition and Reductive Elimination
Explores oxidative addition, reductive elimination, insertion reactions, and factors influencing these reactions in organometallic chemistry.
Laser Micro-Processing: Materials and Spectroscopy
Explores laser micro-processing of materials, fluorescence, spectroscopy, and band structures.
Catalyst Characterization II
Explores advanced catalyst characterization techniques, including CO stretching frequency shifts on Pt surfaces and reflection techniques for studying events at interfaces.
Ligand Field Theory: Crystal Field Splitting
Delves into ligand field theory, crystal field splitting, and molecular orbitals in transition metal complexes.
Coordination Chemistry: High Spin Complexes and Ligands
Explores high spin complexes and ligands in coordination chemistry, discussing their impact on metal ions' spin states and magnetic properties.
Ligand Field Theory: Pi-Acceptors and Electrochemical Series
Explores ligand field theory, pi-acceptors, bonding in complexes, and spectrochemical series in 3-d metals.
Isomers and Chirality: Understanding Coordination Complexes
Discusses isomers, chirality, and the stability of coordination complexes.
Optical Spectroscopy: Fundamentals and Applications
Covers the fundamentals of optical spectroscopy and its applications in various fields, exploring the design and operation of spectrometers.
Finding Kagome Lattice Systems
Explores the algorithm for classifying systems based on the Kagome lattice structure in materials science.
Catalyst Characterization I
Explores compound identification through infrared spectroscopy, vibrational spectroscopy, and the analysis of acid sites using probe molecules.