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Preface | p. xi |
Contributors | p. xiii |
A Historical Overview | p. 1 |
The First Decades After the Discovery of CD and ORD by Aimé Cotton in 1895 | p. 3 |
Organic Stereochemistry | p. 37 |
Some Inherently Chiral Chromophores-Empirical Rules and Quantum Chemical Calculations | p. 39 |
Electronic CD of Benzene and Other Aromatic Chromophores for Determination of Absolute Configuration | p. 73 |
Electronic CD Excition Chirality Method: Principles and Applications | p. 115 |
CD Spectra of Chiral Extended ¿-Electron Compounds: Theoretical Determination of the Absolute Stereochemistry and Experimental Verification | p. 167 |
Assignment of the Absolute Configurations of Natural Products by Means of Solid-State Electronic Circular Dichroism and Quantum Mechanical Calculations | p. 217 |
Dynamic Stereochemistry and Chiroptical Spectroscopy of Metallo-Organic Compounds | p. 251 |
Circular Dichroism of Dynamic Systems: Switching Molecular and Supramolecular Chirality | p. 289 |
Electronic Circular Dichroism of Supramolecular Systems | p. 317 |
The Online StereoChemical Analysis of Chiral Compounds by Hplc-Ecd Coupling in Combination with Quantum-Chemical Calculations | p. 355 |
Determination of the Structures of Chiral Natural Products Using Vibrational Circular Dichroism | p. 387 |
Determination of Molecular Absolute Configuration: Guidelines for Selecting a Suitable Chiroptical Approach | p. 421 |
Inorganic Stereochemistry | p. 449 |
Applications of Electronic Circular Dichroism to Inorganic Stereochemistry | p. 451 |
Biomolecules | p. 473 |
Electronic Circular Dichroism of Proteins | p. 475 |
Electronic Circular Dichroism of Peptides | p. 499 |
Electronic Circular Dichroism of Peptidomimetics | p. 545 |
Circular Dichroism Spectroscopy of Nucleic Acids | p. 575 |
Electronic Circular Dichroism of Peptide Nucleic Acids and Their Analogues | p. 587 |
Circular Dichroism of Protein-Nucleic Acid Interactions | p. 615 |
Drug and Natural Product Binding to Nucleic Acids Analyzed by Electric Circular Dichroism | p. 635 |
Probing HSA and AGP Drug-Binding Sites by Electronic Circular Dichroism | p. 665 |
Conformational Studies of Biopolymers, Peptides, Proteins, and Nucleic Acids. A Role for Vibrational Circular Dichroism | p. 707 |
Structure and Behavior of Biomolecules from Raman Optical Activity | p. 759 |
Optical Rotation, Electronic Circular Dichroism, and Vibrational Circular Dichroism of Carbohydrates and Glycoconjugates | p. 795 |
Electronic Circular Dichroism in Drug Discovery | p. 819 |
Index | p. 843 |
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