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CEC

Coordination Chemistry

CEC via YouTube

Overview

This course on Coordination Chemistry aims to teach students about coordination compounds, IUPAC nomenclature, valence bond theory, isomerism, quantum chemistry, crystal field theory, stereochemistry, molecular orbital theory, and substitution reactions in coordination compounds. The course covers topics such as active methylene compounds, phenols, amino acids, and the stability of coordination compounds. The teaching method includes lectures on theoretical concepts, practical applications, and computational aspects. This course is intended for students and professionals interested in deepening their understanding of coordination chemistry and its relevance in various fields such as bioinorganic chemistry and materials science.

Syllabus

Coordination Compounds - III & IV.
Coordination Compounds.
Conformations.
Coordination Chemistry.
Coordination Chemistry - II.
IUPAC Nomenclature.
Organic Chemistry : IUPAC Nomenclature.
Valence Bond Theory.
Isomerism in Coordination Compounds.
Active Methylene Compound.
IUPAC Nomenclature and Alkanes.
Quantum Chemistry- Introduction.
Stereochemistry of Coordination Compounds.
Phenols.
Crystal Field Theory - I.
Coordination Chemistry : Crystal Field Theory.
Colours of Coordination Compounds and Factors Affecting 10Dq.
Quantum Chemistry.
Phenols - II.
Alkanes - II and Aromaticity.
Crystal Field Stabilization Energy of Complexes.
Evidences of Crystal Field Splitting and CFSE.
Introduction to Quantum Mechanics.
Octahedral vs Tetrahedral Coordination.
Amino Acids.
Tetragonal Distortion and Jahn-teller Effects.
Molecular Orbital Theory of Coordination Compounds.
Stability of Coordination Compounds.
Classical to Computational.
Quantum Chemistry : Wave function and Operators.
Substitution in Octahedral Coordination Compounds.
Special Reactions of Phenol.
Quantum Chemistry : Operators.
Substitution in Square Planar Complexes.
Metal ions in Biological System.
Hermitian Operator and Postulates of Quantum Mechanics.
Operators and Eigen Function.
Toxicity of Metal Ions.
Postulates of Quantum Mechanics.
Quantum Chemistry - Classical to Computational.
Aldehydes and Ketones - V.
Particle in One- Dimensional Box.
Particle in One- Dimensional Box - II.
Aldehydes and Ketones - VI.
Aldehydes and Ketones - VII.
Aldehydes and Ketones - VIII.
Properties and Application of 1-D Box.
Properties and Application of 1D Box - II.
Application of 1D Box and Particle in 2D Box.
Rigid Rotator.
Linear Harmonic Oscillator : Quantisation of Vibrational Energy.

Taught by

cec

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