Frontiers and advances in molecular spectroscopy / edited by Jaan Laane.

Other author Laane, Jaan.
Format Electronic
Publication InfoAmsterdam, Netherlands : Elsevier, [2018]
Descriptionxxi, 763 pages : illustrations ; 23 cm
Supplemental ContentFull text available from eBook - Chemistry 2017 [EBCC17]
Subjects

Portion of title Molecular spectroscopy
Contents Note continued: 6.2. SERS Detection and Identification of Bacteremia Developments -- 7. Origins of Bacterial SERS Signals -- 7.1. Chemical/Molecular Origins of the SERS Spectra of Bacteria -- 7.2. Purines Dominate the Bacterial SERS Spectra -- 7.3. Biochemical Origins of the SERS Spectra of Bacteria -- 7.4. Chemical and Biochemical Origins of SERS Spectra of STD Pathogens -- 8. Forensics -- 8.1. Introduction -- 8.2. SERS Detection and Identification of Human Body Fluids -- 9. Conclusion -- Acknowledgments -- References -- 11. Quantitative Spectrometry of Complex Molecular Systems by Hypothetical Addition Multivariate Analysis With Numerical Differentiation (HAMAND) / Hiro-o Hamaguchi -- 1. Introduction -- 2. The Principle of HAMAND -- 3. Mathematical Procedure -- 4. Applications of HAMAND -- 4.1. Solution Sample -- 4.2. Solid Sample -- 4.3. Forensic Sample -- 5. Discussion -- Acknowledgments -- References -- 12. Progress in FAST CARS Toward Quantum Biophotonics / Marian O. Scully -- 1. Introduction -- 2. Basic Principles of FAST CARS -- 3. Applications to Biosensing -- 4. Versatile FAST CARS -- 5. Heterodyne Single-Beam FAST CARS Microscopy -- 6. FAST CARS With Surface Enhancement -- 7. Conclusion -- Acknowledgments -- References -- 13. Coherent Raman Generation in Solid-State Materials Using Spatial and Temporal Laser Field Shaping / Alexei V. Sokolov -- 1. Introduction -- 2. Basic Principles of Molecular Modulation -- 3. Broadband Coherent Light Generation in the Raman-Active Crystal PbWO4 -- 3.1. Introduction -- 3.2. Coherent Raman Generation via Two-Color Laser Fields -- 3.3. Coherent Raman Generation via Three-Color Laser Fields -- 3.4. Coherent Raman Generation via Linearly Chirped Pulses -- 4. Using Molecular Modulation to Obtain an Ultrafast Pulse -- 4.1. Introduction -- 4.2. Manipulating Raman Sideband Phase via Commercial Pulse Shaper -- 4.3. Manipulating Raman Sideband Phase via Spherical Mirrors -- 5. The Raman Process With Optical Vortices -- 5.1. Introduction -- 5.2. Topological Charge Transfer -- 5.3. Experiments With Single-Charged Pump/Stokes -- 5.4. Experiments With Multiply Charged Pump/Stokes -- 6. Summary -- References -- Further Reading -- 14. Vibrational Optical Activity: From Small Chiral Molecules to Protein Pharmaceuticals and Beyond / Laurence A. Nafie -- 1. Introduction -- 1.1. Overview of VOA History -- 1.2. Overview of the Current State of the Art -- 2. Vibrational Circular Dichroism -- 2.1. Theory -- 2.2. Instrumentation and Measurement -- 2.3. Calculations -- 2.4. Established Applications -- 2.5. Frontiers of VCD -- 3. Raman Optical Activity -- 3.1. Theory -- 3.2. Instrumentation and Measurement -- 3.3. Calculations -- 3.4. Established Applications -- 3.5. Frontiers of ROA -- 4. Complementarity of VCD and ROA -- 5. Conclusions and Summary -- 5.1. VCD Frontiers -- 5.2. ROA Frontiers -- 5.3. Chiroptical Spectroscopy Frontiers -- References -- 15. High-Resolution Laboratory Terahertz Spectroscopy and Applications to Astrophysics / Stephan Schlemmer -- 1. Introduction -- 2. Molecules in Astrophysical Observations -- 2.1. Complex Organic Molecules in Space -- 2.2. Molecular Ions in Space -- 3. Terahertz Absorption Spectroscopy -- 4. Action Spectroscopy of Ions in Cold Traps -- 4.1. LIR Infrared Spectroscopy -- 4.2. IR/THz Double Resonance Spectroscopy -- 4.3. Frequency Comb Based Spectra -- 4.4. LIR Intensities -- 5. Future Trends in THz Spectroscopy -- 5.1. LIR Schemes -- 5.2. Different Experimental Approaches -- Acknowledgments -- References -- 16. Studying Interaction, Ion-Pair Formation, and Mixing Behavior of Protic Ionic Liquids by Means of Far-Infrared Spectroscopy / Ralf Ludwig -- 1. Introduction -- 2. FIR Spectroscopy -- 3. Protic Ionic Liquids -- 4. The Subtle Balance of Coulomb Interaction, Hydrogen Bonding and Dispersion Forces -- 4.1. Detecting and Quantifying H-Bonds -- 4.2. Pure Interaction by Removing Reduced Mass Effects -- 4.3. The Influence of Dispersion Forces on the FIR Spectra -- 4.4. Dispersion Forces Compete With Hydrogen Bonds -- 5. Ion Speciation -- 5.1. Ion Speciation in Water -- 5.2. Ion Pair Formation in Dimethylsulfoxide (DMSO) -- 5.3. Reformation of Contact Ion Pairs With Increasing Temperature -- 6. Mixing Behavior -- 6.1. Nonideal Mixing Behavior Due to Hydrogen Bonds -- 6.2. Cluster Formation Controls Macroscopic Properties -- 7. Conclusions -- References -- 17. Advancements in Microwave Spectroscopy / Jens-Uwe Grabow -- 1. Introduction -- 2. Technical Advancements -- 2.1. Chiral Discrimination -- 2.2. Diffusion of Chirp- and Tone-Excitation Fourier Transform Spectrometers -- 3. Molecular Systems -- 3.1. Chemical Information From MW -- 3.2. Internal Dynamics -- 4. Astrochemistry -- 4.1. Laboratory Investigations -- 4.2. Detection in the Interstellar Space -- Acknowledgments -- References -- 18. Nitric Oxide Laser-Induced Fluorescence Imaging Methods and Their Application to Study High-Speed Flows / Simon W. North -- 1. Introduction -- 2. Nitric Oxide Laser Induced Fluorescence -- 2.1. Temperature Measurements Using NO Fluorescence: Two-Line NO PLIF -- 2.2. Velocity Measurements Using Molecular Tagging Techniques: NO Fluorescence MTV -- 3. Experimental Measurements -- 3.1. NO2 Photodissociation MTV -- 3.2. Temperature Measurements Using NO2 Photodissociation -- 3.3. Simultaneous Measurement of Velocity and Temperature -- 3.4. The "Invisible Ink" VENOM Variant -- 4. Conclusions -- References -- 19. Photogeneration of Rare Molecules in Cryogenic Matrices: Spectroscopists' Adventures in Wonderland / Rui Fausto -- 1. Introduction -- 2. Act I -- Narrowband IR-Induced Transformations -- 2.1. Scene 1.1: The Case of 2-Fluorobenzoic Acid -- 2.2. Scene 1.2: Glycolic Acid -- Probing Consecutive Conformational Isomerizations -- 2.3. Scene 1.3: The Genesis of Rare Dimers of Acetic Acid -- 2.4. Scene 1.4: Conformational Switching by Excitation of a Remote Bond -- 3. Act II -- Narrowband UV-Induced Transformations -- 3.1. Scene 11.1: p-Anisaldehyde -- Dependence of the Photostationary State Position on the Wavelength -- 3.2. Scene II.2: Bond-Shift Isomers of 1,3-Dipolar Species (Nitrile Imines) -- 3.3. Scene II.3: Photoproduction of a Rare Spiro-2H-Azirine -- 3.4. Scene II.4: First Observation of a Nitrene Tunneling Reaction -- 4. Conclusion -- Acknowledgements -- References -- 20. Matrix Isolation Spectroscopic Studies: Thermal and Soft Photochemical Bimolecular Reactions / Bruce S. Ault -- 1. Introduction and Scope -- 2. Introduction to Matrix Isolation and Experimental Details -- 2.1. Cryogenics and Vacuum Hardware -- 2.2. Preparation of Reactive Intermediates -- 2.3. Applications of Computational Chemistry -- 3. Thermal Reactions and Complex Formation -- 3.1. Hydrogen-Bonded Complexes -- 3.2. Intermediate Lewis Acid-Base Complexes -- 3.3. Reactions of Diborane -- 3.4. Reactions of Chromyl Chloride and Metal Oxo Compounds -- 4. Ozonolysis of Alkenes -- 4.1. cis-2-Butene -- 4.2. Cyclopentene and Cyclopentadiene -- 4.3. Ethene and Propene -- 4.4. Bicylic Alkenes -- 4.5. 1,3- and 1,4-Cyclohexadiene: A Non-Criegee Mechanism -- 5. Reaction of Ozone With Volatile Organometallic Compounds -- 5.1. Introduction and Dimethylzinc -- 5.2. Dimethylcadmium -- 5.3. Trimethyl Metals -- 5.4. Metallocenes -- 6. Soft Photochemical Reactions -- 6.1. Ozone Reaction With Ferrocene -- 6.2. Electronic Spectroscopy -- 7. Conclusions -- Acknowledgments -- References -- Further Reading -- 21. Theory of Enantiomer-Specific Microwave Spectroscopy / Kevin K. Lehmann -- 1. Introduction -- 2. Stark Induced Chiral Emission -- 2.1. Signals in the Perturbative Limit -- 2.2. High Stark Field Mixing -- 2.3. Effect of Variation in Excitation Strength -- 3. Three Wave Mixing -- 3.1. Polarization Calculation -- 3.2. The Effects of Lack of Phase Matching -- 4. Some Extensions -- 5. Conclusions -- Acknowledgments -- References.
Bibliography noteIncludes bibliographical references and index.
Access restrictionAvailable only to authorized users.
Technical detailsMode of access: World Wide Web
Genre/formElectronic books.
LCCN 2018300724
ISBN9780128112205 (pbk.)
ISBN0128112204 (pbk.)

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