Two-Dimensional Correlation Spectroscopy
Applications in Vibrational and Optical Spectroscopy
(Sprache: Englisch)
Previously available only in papers and reviews, the work of these prominent authors have done in 2D optical and vibrational spectroscopy (IR, Raman, UV, Visible) is now in one volume. Their work is particularly useful for the analysis of large molecules...
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Previously available only in papers and reviews, the work of these prominent authors have done in 2D optical and vibrational spectroscopy (IR, Raman, UV, Visible) is now in one volume. Their work is particularly useful for the analysis of large molecules such as polymers, as these often cannot be analyzed by normal spectroscopy.
Klappentext zu „Two-Dimensional Correlation Spectroscopy “
A valuable tool for individuals using correlation spectroscopy and those that want to start using this technique. Noda is known as the founder of this technique, and together with Ozaki, they are the two biggest names in the area* First book on 2D vibrational and optical spectroscopy - single source of information, pulling together literature papers and reveiws
* Growing number of applications of this methodology - book now needed for people thinking of using this technique
* Limitations and benefits discussed and comparisons made with 2D NMR
* Discusses 20 optical and vibrational spectroscopy (IR, Raman, UV, Visible)
Inhaltsverzeichnis zu „Two-Dimensional Correlation Spectroscopy “
Preface.Acknowledgements.
1 Introduction.
1.1 Two-dimensional Spectroscopy.
1.2 Overview of the Field.
1.3 Generalized Two-dimensional Correlation.
1.4 Heterospectral Correlation.
1.5 Universal Applicability.
2 Principle of Two-dimensional Correlation Spectroscopy.
2.1 Two-dimensional Correlation Spectroscopy.
2.2 Generalized Two-dimensional Correlation.
2.3 Properties of 2D Correlation Spectra.
2.4 Analytical Expressions for Certain 2D Spectra.
2.5 Cross-correlation Analysis and 2D Spectroscopy.
3 Practical Computation of Two-dimensional Correlation Spectra.
3.1 Computation of 2D Spectra from Discrete Data.
3.2 Unevenly Spaced Data.
3.3 Disrelation Spectrum.
3.4 Computational Efficiency.
4 Generalized Two-dimensional Correlation Spectroscopy in Practice.
4.1 Practical Example.
4.2 Pretreatment of Data.
4.3 Features Arising from Factors other than Band Intensity Changes.
5 Further Expansion of Generalized Two-dimensional Correlation Spectroscopy - Sample-Sample Correlation and Hybrid Correlation.
5.1 Sample-Sample Correlation Spectroscopy.
5.2 Hybrid 2D Correlation Spectroscopy.
5.3 Additional Remarks.
6 Additional Developments in Two-dimensional Correlation Spectroscopy - Statistical Treatments, Global Phase Maps, and Chemometrics.
6.1 Classical Statistical Treatments and 2D Spectroscopy.
6.2 Global 2D Phase Maps.
6.3 Chemometrics and 2D Correlation Spectroscopy.
7 Other Types of Two-dimensional Spectroscopy.
7.1 Nonlinear Optical 2D Spectroscopy.
7.2 Statistical 2D Correlation Spectroscopy.
7.3 Other Developments in 2D Correlation Spectroscopy.
8 Dynamic Two-dimensional Correlation Spectroscopy Based on Periodic Perturbations.
8.1 Dynamic 2D IR
... mehr
Spectroscopy.
8.2 Dynamic 2D IR Dichroism Spectra of Polymers.
8.3 Repetitive Perturbations Beyond DIRLD.
9 Applications of Two-dimensional Correlation Spectroscopy to Basic Molecules.
9.1 2D IR Study of the Dissociation of Hydrogen-bonded N-Methylacetamide.
9.2 2D NIR Sample-Sample Correlation Study of Phase Transitions of Oleic Acid.
9.3 2D NIR Correlation Spectroscopy Study of Water.
9.4 2D Fluorescence Study of Polynuclear Aromatic Hydrocarbons.
10 Generalized Two-dimensional Correlation Studies of Polymers and Liquid Crystals.
10.1 Temperature and Pressure Effects on Polyethylene.
10.2 Reorientation of Nematic Liquid Crystals by an Electric Field.
10.3 Temperature-dependent 2D NIR of Amorphous Polyamide.
10.4 Composition-based 2D Raman Study of EVA Copolymers.
10.5 Polarization Angle-dependent 2D IR Study of Ferroelectric Liquid Crystals.
11 Two-dimensional Correlation Spectroscopy and Chemical Reactions.
11.1 2D ATR/IR Study of Bis(hydroxyethyl terephthalate) Oligomerization.
11.2 Hydrogen-Deuterium Exchange of Human Serum Albumin.
12 Protein Research by Two-dimensional Correlation Spectroscopy.
12.1 Adsorption and Concentration-dependent 2D ATR/IR Study of ²-Lactoglobulin.
12.2 pH-dependent 2D ATR/IR Study of Human Serum Albumin.
12.3 Aggregation of Lipid-bound Cytochrome c.
13 Applications of Two-dimensional Correlation Spectroscopy to Biological and Biomedical Sciences.
13.1 2D NIR Study of Milk.
13.2 2D IR Study of Synthetic and Biological Apatites.
13.3 Identification and Quality Control of Traditional Chine
8.2 Dynamic 2D IR Dichroism Spectra of Polymers.
8.3 Repetitive Perturbations Beyond DIRLD.
9 Applications of Two-dimensional Correlation Spectroscopy to Basic Molecules.
9.1 2D IR Study of the Dissociation of Hydrogen-bonded N-Methylacetamide.
9.2 2D NIR Sample-Sample Correlation Study of Phase Transitions of Oleic Acid.
9.3 2D NIR Correlation Spectroscopy Study of Water.
9.4 2D Fluorescence Study of Polynuclear Aromatic Hydrocarbons.
10 Generalized Two-dimensional Correlation Studies of Polymers and Liquid Crystals.
10.1 Temperature and Pressure Effects on Polyethylene.
10.2 Reorientation of Nematic Liquid Crystals by an Electric Field.
10.3 Temperature-dependent 2D NIR of Amorphous Polyamide.
10.4 Composition-based 2D Raman Study of EVA Copolymers.
10.5 Polarization Angle-dependent 2D IR Study of Ferroelectric Liquid Crystals.
11 Two-dimensional Correlation Spectroscopy and Chemical Reactions.
11.1 2D ATR/IR Study of Bis(hydroxyethyl terephthalate) Oligomerization.
11.2 Hydrogen-Deuterium Exchange of Human Serum Albumin.
12 Protein Research by Two-dimensional Correlation Spectroscopy.
12.1 Adsorption and Concentration-dependent 2D ATR/IR Study of ²-Lactoglobulin.
12.2 pH-dependent 2D ATR/IR Study of Human Serum Albumin.
12.3 Aggregation of Lipid-bound Cytochrome c.
13 Applications of Two-dimensional Correlation Spectroscopy to Biological and Biomedical Sciences.
13.1 2D NIR Study of Milk.
13.2 2D IR Study of Synthetic and Biological Apatites.
13.3 Identification and Quality Control of Traditional Chine
... weniger
Bibliographische Angaben
- Autoren: Isao Noda , Yukihiro Ozaki
- 2004, 1. Auflage, 312 Seiten, Maße: 22,9 cm, Gebunden, Englisch
- Verlag: Wiley & Sons
- ISBN-10: 0471623911
- ISBN-13: 9780471623915
Sprache:
Englisch
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