Photoionization spectroscopy of nucleobases and analogues in the gas phase using synchrotron radiation as excitation light source.
Explore this paper's citation graph
Summary
This chapter focuses on experimental work performed with VUV synchrotron radiation and related ab initio quantum chemical calculations of higher excited states beyond the ionization energy.
- Type
- review
- Published
- 2015-01-01
- Cited by
- 25
- References
- 153
- OpenAlex
- https://openalex.org/W110620646
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:9570181
Keywords
Chemistry, Photoionization, Nucleobase, Ionization, Thymine
References
- Algebraic propagator approaches and intermediate-state representations. I. The biorthogonal and unitary coupled-cluster methods.
- The yield, processing, and biological consequences of clustered DNA damage induced by ionizing radiation.
- Vertical ionization energies of adenine and 9-methyl adenine.
- VUV photoionization of gas phase adenine and cytosine: a comparison between oven and aerosol vaporization.
- Resonantly-enhanced two-photon ionization and mass-analyzed threshold ionization (MATI) spectroscopy of 2-hydroxypyridine
- The effect of microhydration on ionization energies of thymine.
- The effect of pi-stacking, H-bonding, and electrostatic interactions on the ionization energies of nucleic acid bases: adenine-adenine, thymine-thymine and adenine-thymine dimers.
- Electronic structure and conformational properties of the amide linkage: Part 2. Conformational analysis of the amide group by photoelectron spectroscopy
- Ionization of cytosine monomer and dimer studied by VUV photoionization and electronic structure calculations.
- Current aspects on the radiation induced base damage in DNA
- Ionization potentials and donor properties of nucleic acid bases and related compounds
- Analytic energy derivatives for ionized states described by the equation‐of‐motion coupled cluster method
- Proton Coupled Electron Transfer (PCET) in DNA on Formation of Radiation Produced Ion Radicals
- Explicitly correlated coupled cluster methods with pair-specific geminals
- Theoretical study of the spectroscopy of methyl substituted 2-Pyridones, tautomers and ions☆
- Coupled‐cluster methods with noniterative triple excitations for restricted open‐shell Hartree–Fock and other general single determinant reference functions. Energies and analytical gradients
- J. Mol. Struct. (Theochem)
- State-selected unimolecular decomposition of δ-valerolactam+ and δ-valerolactam2+ cations: theory and experiment.
- Ultraviolet photoelectron studies of biological purines: the valence electronic structure of adenine.
- Photofragmentation of guanine, cytosine, leucine and methionine
Cited by
- VUV photoionization and dissociative photoionization spectroscopy of the interstellar molecule aminoacetonitrile: Theory and experiment
- Vacuum Ultraviolet Photoionization of Complex Chemical Systems.
- Vibrationally resolved photoelectron spectroscopy of electronic excited states of DNA bases: application to the ã state of thymine cation.
- VUV action spectroscopy of protonated leucine-enkephalin peptide in the 6-14 eV range.
- Lowest ionisation and excitation energies of biologically important heterocyclic planar molecules
- Photoelectron spectra of 2-thiouracil, 4-thiouracil, and 2,4-dithiouracil.
- Electronic, structural and vibrational induced effects upon ionization of 2-quinolinone.
- Identifying Cytosine-Specific Isomers via High-Accuracy Single Photon Ionization.
- Challenges in Simulating Light-Induced Processes in DNA
- Watson-Crick Base Pair Radical Cation as a Model for Oxidative Damage in DNA.
- FT-IR and FT-Raman spectra of 5-chlorocytosine: Solid state simulation and tautomerism. Effect of the chlorine substitution in the Watson-Crick base pair 5-chlorodeoxycytidine-deoxyguanosine.
- Unveiling the complex vibronic structure of the canonical adenine cation.
- Reactions of water with radical cations of guanine, 9-methylguanine, 2'-deoxyguanosine and guanosine: keto-enol isomerization, C8-hydroxylation, and effects of N9-substitution.
- Valence Photoionization of Thymine: Ionization Energies, Vibrational Structure, and Fragmentation Pathways from the Slow to the Ultrafast.
- Reaction Kinetics, Product Branching and Potential Energy Surfaces of 1O2-induced 9-Methylguanine-Lysine Cross-linking: A Combined Mass Spectrometry, Spectroscopy and Computational Study.
- State-dependent fragmentation of protonated uracil and uridine
- Dynamics and Multiconfiguration Potential Energy Surface for the Singlet O2 Reactions with Radical Cations of Guanine, 9-Methylguanine, 2'-Deoxyguanosine, and Guanosine.
- A cluster source for photoelectron spectroscopy in VUV and X-ray ranges
- Singlet Oxygen Oxidation of the Radical Cations of 8-Oxo-2'-deoxyguanosine and Its 9-Methyl Analogue: Dynamics, Potential Energy Surface, and Products Mediated by C5-O2 -Addition.
- Singlet O2 Reactions with Radical Cations of 8-Bromoguanine and 8-Bromoguanosine: Guided-Ion Beam Mass Spectrometric Measurements and Theoretical Treatments.
Related papers
- DNA Nucleobase Under Ionizing Radiation: Unexpected Proton Transfer by Thymine Cation in Water Nanodroplets.
- DNA Nucleobase Under Ionizing Radiation: Unexpected Proton Transfer by Thymine Cation in Water Nanodroplets
- Experimental and computational study of the gas-phase interactions between lead(II) ions and two pyrimidic nucleobases: Uracil and thymine
- Application of chromium‐doped fullerene as a carrier for thymine and uracil nucleotides: Comprehensive density functional theory calculations
- Study on the strengths of chemical bonds evaluated by the PAEM for nucleobases
- Comparison of gas phase intrinsic properties of cytosine and thymine nucleobases with their O-alkyl adducts: different hydrogen bonding preferences for thymine versus O-alkyl thymine
- Nucleobase Mapping of Self-Assembled Monolayers by Chemical Force Microscopy
- The selectivity of nucleobases in DNA binding by Ru(phenanthroline) 3 complex
- Comment on “A study of HeI photoelectron spectroscopy on the electronic structure of the nitrate free radical NO3” [J. Chem. Phys. 106, 3003 (1997)]