P. A Molecular Electron Density Theory Study of the Role of the Copper-Metallation of Azomethine Ylides in [3+2] Cycloaddition Reactions. J. Org. Chem. 2018, 83, 10959–10973.
Domingo, L.R.; Ríos-Gutiérrez, M.; Pérez, P. A Molecular Electron Density Theory Study of the Competitiveness of Polar Diels-Alder and Polar Alder Ene Reactions. Molecules 2018, 23, 1913.
Domingo, L.R.; Ríos-Gutiérrez, M.; Silvi, S,; Pérez. P. The Mysticism of Pericyclic Reactions. A Contemporary Rationalisation of Organic Reactivity Based on the Electron Density Analysis. Eur. J. Org. Chem. 2018, 1107–1120.
Domingo, L.R.; Ríos-Gutiérrez, M. Adjieufack, I.; Ndassa, I.M.; Nouhou, C.N.; Mbadcam, J.K. Molecular Electron Density Theory Study of Fused Regioselectivity in the Intramolecular [3+2] Cycloaddition Reaction of Nitrones. ChemistrySelect 2018, 3, 5412–5420.
Domingo, L.R.; Ríos-Gutiérrez,M.; Pérez. P. A Molecular Electron Density Theory Study of the Reactivity and Selectivities in [3+2] Cycloaddition Reactions of C,N-Dialkyl Nitrones with Ethylene Derivatives. J. Org. Chem. 2018, 83, 2182-2197.
Domingo, L. R. Molecular Electron Density Theory: A Modern View of Reactivity in Organic Chemistry. Molecules 21, 1319 (2016).
Ndassa,
Adjieufack , A. I.; Ndassa,
Domingo, L. R.; Ríos-Gutiérrez, M.; Pérez. P. A Molecular Electron Density Theory Study of the [3+2] Cycloaddition Reaction of Nitrones with Strained Allenes. RSC Adv. (2017)
Domingo, L. R.; Ríos-Gutiérrez, M. A. Molecular Electron Density Theory Study of the Reactivity of Azomethine Imine in [3+2] Cycloaddition Reactions. Molecules 2017, 22, 750.
Domingo, L. R.; Ríos-Gutiérrez, M.; Pérez, P. How does the Global Electron Density Transfer Diminish Activation Energies in Polar Cycloaddition Reactions? A Molecular Electron Density Theory Study. Tetrahedron 73, 1718-1724 (2017).
Domingo, L. R.; Ríos-Gutiérrez, M.; Chamorro, E.; Pérez, P. Aromaticity in Pericyclic Transition Structures? A Critical Rationalisation based on the Topological Analysis of the Electron Localisation Function Framework. ChemSelect 1, 6026 - 6039 (2016).
Domingo, L. R.; Ríos-Gutiérrez, M.; Pérez. P. An MEDT study of the carbenoid-type [3+2] cycloaddition reactions of nitrile ylides with electron-deficient chiral oxazolidinones. Org. Biomol. Chem. 14, 10427 - 10436 (2016).
Domingo, L. R.; Ríos-Gutiérrez, M.; Pérez. P. Chamorro, E. Understanding the [2n+2n] reaction mechanism between a carbenoid intermediate and CO2. Mol. Phys. 114, 1374-1391 (2016).
Substitution Reaction Reactions
Luis R. Domingo, Patricia Pérez, Mar Ríos-Gutiérrez, and M. José Aurell. Advanced Molecular Electron Density Theory Study of the Substituent Effects in Nucleophilic Substitution Reactions. ACS Omega 2025, 10, 30194-30206.
Luis R. Domingo, M. José Aurell, Patricia Pérez. Unveiling the Electronic Effects of the Lewis Acids in Nucleophilic Substitution Reactions: A Molecular Electron Density Theory Study. J. Org. Chem. 2026, 91, 2669–2682
Domingo, L.R.; Ríos-Gutiérrez, M.; Silvi, B.; Pérez. P. The Mysticism of Pericyclic Reactions. A Contemporary Rationalisation of Organic Reactivity Based on the Electron Density Analysis. Eur. J. Org. Chem. 1107–1120 (2018).
Domingo, L.R.; A New C-C Bond Formation Model Based on the Quantum Chemical Topology of Electron Density. RSC Adv. 4, 32415-32428 (2014).
Domingo, L. R.; Pérez, P.; A Quantum Chemical Topological Analysis of the C-C Bond Formation in Organic Reactions Involving Cationic Species. Phys. Chem. Chem. Phys. 16, 14108-14115 (2014).
Domingo,L.R.; Pérez, P.; Saez, J.A. Understanding the C-C bond formation in polar reactions. An ELF analysis of the Friedel-Crafts reaction between indoles and nitroolefins. RSC Advances 3, 7520-7528(2013).
Rhyman, L., Ramasami, P., Joule, J. A., Saez, J. A., Domingo, L. R. Understanding the formation of 3+2 and 2+4 cycloadducts in the Lewis acid catalysed reaction between methyl glyoxylate oxime and cyclopentadiene: a theoretical study. RSC Advances 3, 447-457 (2013).
- Review
Domingo, L. R.; Ríos-Gutiérrez, M.; Pérez. P. Applications of the Conceptual Density Functional Theory Indices to Organic Chemistry Reactivity. Molecules, 21, 748(2016).
Download Open Access Review
Domingo, L. R.; Pérez, P. Global and Local Reactivity Indices for Electrophilic/Nucleophilic Free Radicals. Org. Biomol. Chem. 11, 4350-4358 (2013).
Chamorro, E.; Pérez, P.; Domingo, L. R. On the nature of Parr functions to predict the most reactive sites along organic polar reactions. Chem. Phys. Lett. (2013).
Domingo, L. R., Perez, P., Saez, J. A. Understanding the local reactivity in polar organic reactions through electrophilic and nucleophilic Parr functions. RSC Advances 3, 1486–1494 (2013).
- Global and local reactivity indices for electrophilic /nucleophilic free radicals:
Domingo L.R.; Pérez P. Global and local reactivity indices for electrophilic /nucleophilic free radicals. Organic & Biomolecular Chemistry 11, 4350-4358 (2013).
- Reactivity difference index:
Domingo, L. R., Perez, P. The nucleophilicity N index in organic chemistry. Organic & Biomolecular Chemistry 9, 7168-7175 (2011).
Domingo, L. R., Chamorro, E., Perez, P. Understanding the reactivity of captodative ethylenes in polar cycloaddition reactions. A theoretical study. Journal of Organic Chemistry 73, 4615-4624 (2008).
Perez, P., Domingo, L. R., Duque-Norena, M., Chamorro, E. A condensed-to-atom nucleophilicity index. An application to the director effects on the electrophilic aromatic substitutions. Journal of Molecular Structure-Theochem 895, 86-91 (2009).
- Local electrophilicity index:
Domingo, L. R., Aurell, M. J., Perez, P., Contreras, R. Quantitative characterization of the local electrophilicity of organic molecules. Understanding the regioselectivity on Diels-Alder reactions. Journal of Physical Chemistry A 106, 6871-6875 (2002).
Domingo, L. R., Aurell, M. J., Perez, P., Contreras, R. Quantitative characterization of the global electrophilicity power of common diene dienophile pairs in Diels-Alder reactions. Tetrahedron 58, 4417-4423 (2002).
Jaramillo, P., Domingo, L. R., Chamorro, E., Perez, P. A further exploration of a nucleophilicity index based on the gas-phase ionization potentials. Journal of Molecular Structure-Theochem 865, 68-72 (2008).
Jaramillo, P., Domingo, L. R., Perez, P. Towards an intrinsic nucleofugality scale: The leaving group (LG) ability in CH(3)LG model system. Chemical Physics Letters 420, 95-99 (2006).
Domingo, L. R., Perez, P. , Contreras, R. Reactivity of the carbon-carbon double bond towards nucleophilic additions. A DFT analysis. Tetrahedron 60, 6585-6591 (2004).
Domingo, L. R., Saez, J. A., Perez, P. A comparative analysis of the electrophilicity of organic molecules between the computed IPs and EAs and the HOMO and LUMO energies. Chemical Physics Letters 438, 341-345 (2007).
Perez, P., Domingo, L. R., Aurell, A. J., Contreras, R. Quantitative characterization of the global electrophilicity pattern of some reagents involved in 1,3-dipolar cycloaddition reactions. Tetrahedron 59, 3117-3125 (2003).
M. Ríos-Gutiérrez, M. J. Aurell, L. R. Domingo. A Molecular Electron Density Theory Study of the Polar Diels-Alder of Naphtoquinone:Cr(CO)3 Complex with Cyclic Dienes. Polycycl Aromat Compd (2022) DOI: 10.1080/10406638.2022.2144910
L. R. Domingo M. J. Aurell, M. Ríos-Gutiérrez. Does Cr(CO)3 Really behave as Catalyst in the Diels-Alder Reaction of Styrene with Cyclopentadiene? A MEDT Study. ChemistrySelect 2022, 7, e202201435.
L.R. Domingo, Ríos-Gutiérrez, M.J. Aurell. Unveiling the Intramolecular Ionic Diels-Alder Reactions within the Molecular Electron Density Theory. Chemistry 2021, 3, 834-853.
L.R. Domingo, M. Ríos-Gutiérrez, M.J. Aurell. Unveiling the Ionic Diels-Alder Reactions within the Molecular Electron Density Theory. Molecules 2021, 26, 3638.
L.R. Domingo, P. Pérez. The Lithium Cation Catalysed Benzene Diels-Alder reaction. Insights on the Molecular Mechanism within the Molecular Electron Density Theory. J. Org. Chem. 2020, 85, 13121-13132.
L.R. Domingo, M. Ríos-Gutiérrez, P. Pérez. Unveiling the Lewis Acid Catalysed Diels-Alder Reactions Through the Molecular Electron Density Theory. Molecules 2020, 25, 2535.
L.R. Domingo, M. Ríos-Gutiérrez, P. Pérez. A Molecular Electron Density Theory Study of the Reactivity of Tetrazines in Aza-Diels-Alder Reactions. RSC Adv. 2020, 10, 15394-15405.
L.R. Domingo, M. Ríos-Gutiérrez, P. Pérez. A Molecular Electron Density Theory Study of the Enhanced Reactivity of Aza Aromatic Compounds Participating in Diels-Alder Reactions. Org. Biomol. Chem. 2020, 18, 292 - 304.
L.R.
Domingo, M. Ríos-Gutiérrez, P. Pérez. A Molecular Electron Density Theory Study
of the Competitiveness of Polar Diels-Alder and Polar Alder Ene Reactions. Molecules,
2018, 23, 1913.
L.R. Domingo. Why Diels-Alder reactions are non-concerted processes. J.Chil.Chem.Soc.2014,59,2615-2518.
L.R. Domingo, M.J. Aurell, P. Pérez. The mechanism of ionic Diels-Alder reactions. A DFT study of the oxa-Povarov reaction. RSC Adv.2014,4,16567-16577.
Domingo,L.R.; Pérez, P. and Ortega, D. Why do five-membered heterocyclic compounds sometimes not participate in polar Diels-Alder reactions?. Journal Organic Chemistry 78, 2462-2471 (2013).
Domingo, L. R., Perez, P., Saez, J. A. Understanding the regioselectivity in hetero Diels-Alder reactions. An ELF analysis of the reaction between nitrosoethylene and 1-vinylpyrrolidine. Tetrahedron 69, 107-114 (2013).
Domingo, L. R., Aurell, M. J., Perez, P., Contreras, R. Origin of the synchronicity on the transition structures of polar Diels-Alder reactions. Are these reactions 4+2 processes? Journal of Organic Chemistry 68, 3884-3890 (2003).
L. R. Domingo, P. Pérez. How Different Are Nitrile Oxides from Nitrones in zw-type [3+2] Cycloaddition Reactions? A Molecular Electron Density Theory Study. J. Org. Chem. 2025, 90, 3936-3950.
L. R. Domingo, M. Ríos-Gutiérrez P. Pérez. Why is Phenyl Azide so Unreactive in [3+2] Cycloaddition Reactions? Demystifying Sustman's Paradigmatic Parabola. Org. Chem. Front. 2023, 10, 5579-5591.
M. Ríos-Gutiérrez, Fabio Falcioni, L. R. Domingo, Paul L. A. Popelier. A Combined BET IQA-REG Study of the Activation Energy of non-polar zw-type [3+2] Cycloaddition Reactions. Phys. Chem. Chem. Phys. 2023
L. R. Domingo, M. Ríos-Gutiérrez, A. Barakat. A Molecular Electron Density Theory Study of the [3+2] Cycloaddition Reaction of an Azomethine Ylide with an Electrophilic Ethylene Linked to Triazole Ferrocene Units. Molecules 2022, 27, 6532.
L. R Domingo, M. Ríos-Gutiérrez, Nivedita Acharjee. Unveiling the cb-type Intramolecular [3+2] Cycloaddition Reactions of Fluorinated Azomethine Ylides to Ester Carbonyls with a Molecular Electron Density Theory Perspective. ChemistrySelect 2022, 7, e202201845.
M. Ríos-Gutiérrez, A. Barakat, L. R. Domingo. A Molecular Electron Density Theory Study of the pmr-type [3+2] Cycloaddition Reaction of Azomethine Ylides Derived from Isatins L-Proline with Phenyl Vinyl Sulphone. Organic 2022, 3, 122-136.
L.R. Domingo, M. Ríos-Gutiérrez, N. Acharjee. A Molecular Electron Density Theory Study of the Lewis Acid Catalyzed [3+2] Cycloaddition Reactions of Nitrones with Nucleophilic Ethylenes. Eur. J. Org. Chem. 2022,e202101417.
L.R. Domingo, K. Kula, M. Ríos-Gutiérrez, R. Jasinski. Understanding the Participation of Fluorinated Azomethine Ylides in Carbenoid-type [3+2] Cycloaddition Reactions with Ynal Systems: A Molecular Electron Density Theory Study. J. Org. Chem. 2021,86,12644-12653.
M. Ríos-Gutiérrez, L.R. Domingo, F. Ghodsi. Unveiling the Different Reactivity of Bend and Linear Three-Atom-Components Participating in [3+2] Cycloaddition Reactions. Organics 2021, 2, 274-286.
L.R. Domingo, N. Acharjee. Unveiling the Chemo- and Regioselectivity of the [3+2] Cycloaddition Reaction between 4-Chlorobenzonitrile Oxide and b-Aminocinnamonitrile with a MEDT Perspective- ChemistrySelec 2021, 6, 4521-4532.
M.Ríos-Gutiérrez, L.R. Domingo, R. Jasinski. Understanding the different reactivity of (Z)- and (E)-b-nitrostyrenes in [3+2] cycloaddition reactions. An MEDT study. RSC Adv. 2021, 11, 9698-9708.
L.R. Domingo, M. Ríos-Gutiérrez, N. Acharjee. Unveiling the Unexpected Reactivity of Electrophilic Diazoalkanes in [3+2] Cycloaddition Reactions within Molecular Electron Density Theory. Chemistry 2021 3, 74-93.
L.R. Domingo, M. Rios Gutierrez, J. Castellanos Soriano. Understanding the Origin of the Regioselectivity in Non-polar [3+2] Cycloaddition Reactions through the Molecular Electron Density Theory. Organics 2020, 1, 19-35.
L.R. Domingo, N. Acharjee, H. A Mohammad-Salim. Understanding the reactivity of trimethylsilyldiazoalkanes participating in [3+2] cycloadditions towards diethylfuminate with a molecular electron density theory perspective. Organics 2020, 1, 3-18.
L.R. Domingo, K. Kula, M. Ríos-Gutiérrez. Unveiling the Reactivity of Cyclic Azomethine Ylides in [3+2] Cycloaddition Reactions within the Molecular Electron Density Theory. Eur. J. Org. Chem. 2020, 5938-5948.
L. Rhyman, M. Ríos-Gutiérrez, L.R. Domingo, P. Ramasami. Unveiling the High Reactivity of Benzyne in the Formal [3+2] Cycloaddition Reactions towards Thioamides through the Molecular Electron Density Theory. Tetrahedron 2020, 76, 131458.
L.R Domingo, N.Acharjee. Unravelling the Strain-Promoted [3+2] Cycloaddition Reactions of Phenyl Azide with Cycloalkynes from the Molecular Electron Density Theory Perspective.
New J. Chem. 2020, 44, 13633-13643.
L.R Domingo, N.Acharjee. Unveiling the High Reactivity of Strained Dibenzocyclooctyne in [3+2] Cycloaddition Reactions with Diazoalkanes through the Molecular Electron Density Theory. J.Phys. Org. Chem. 2020,e4100.
M. Ríos-Gutiérrez, L.R. Domingo, M. Esseffar, A. Oubella, M. Youssef Ait Itto. Unveiling the Different Chemical Reactivity of Diphenyl Nitrilimine and Phenyl Nitrile Oxide in [3+2] Cycloaddition Reactions with (R)-Carvone through the Molecular Electron Density Theory. Molecules 2020, 25, 1085.
L.R. Domingo, M. Ríos-Gutiérrez, P. Pérez. Unveiling the Role of the Strain of Cyclohexyne in [3+2] Cycloaddition Reactions through the Molecular Electron Density Theory- Org. Biomol. Chem. 2019, 17, 498-508.
M. Ríos-Gutiérrez, L.R. Domingo. Unravelling the Mysteries of the [3+2] Cycloaddition Reactions Eur. J. Org. Chem. 2019, 267-282.
Domingo, L.R.; Emamian, S. R. Understanding the Mechanisms of [3+2] Cycloaddition Reactions. The Pseudoradical versus the Zwitterionic Mechanism. Tetrahedron 70, 1267-1273 (2014).
Domingo, L. R., Saez, J. A. Understanding the Electronic Reorganization along the Nonpolar [3+2] Cycloaddition Reactions of Carbonyl Ylides. Journal of Organic Chemistry 76, 373-379 (2011).
Organic reactions.
Domingo, L.R.; Sáez, J.A. Understanding the selectivity in the formation of δ-lactams vs β-lactams in the Staudinger reactions of chloro-cyan-ketene with unsaturated imines. An DFT study. RSC Adv, 4, 58559-58566 (2014).
Domingo, L.R.; Aurell, M.J.; Pérez, P.; Understanding the Polar Mechanism of the Ene Reaction. A DFT Study. 12, 7581-7590 (2014).
Domingo, L. R.; Aurell, M. J.; Sáez, J. A.; Mekelleche, S. M.; Understanding the mechanism of the Povarov reaction. A DFT study. RSC Adv. 4, 16567-16577 (2014).
Domingo, L. R.; Aurell, M. J.; Pérez, P; The mechanism of ionic Diels-Alder reactions. A DFT study of the oxa-Povarov reaction. RSC Adv. 4, 16567-16577 (2014).
Domingo, L. R., Saez, J. A., Arno, M. An ELF analysis of the C-C bond formation step in the N-heterocyclic carbene-catalyzed hydroacylation of unactivated C-C double bonds. RSC Advances 2, 7127-7134 (2012).
L.R. Domingo, M. Ríos-Gutiérrez, P. Pérez. A DFT Study of the Ionic [2+2] Cycloaddition Reactions of Keteniminium Cations with Terminal Acetylenes. Tetrahedron, 2015, 71, 2421-2427.
L.R. Domingo, P. Pérez, R. Contreras. Strain-Induced Electrophilicity in Cycloalkynes. A DFT Analysis of the Polar [2+2] Cycloaddition between Cyclopentyne and Enol Ethers. Eur. J. Org. Chem. 2006, 498-506.
M. Arnó, R. J. Zaragozá, L.R. Domingo. Lewis acid induced [2+2] Cycloadditions of Silyl Enol Ethers with a,b-Unsaturated Esters. A DFT Analysis. Eur. J. Org. Chem. 2005,3 973-3979.
L.R. Domingo, P. Pérez, R. Contreras. A DFT
analysis of the strain-induced regioselective [2+2] cycloaddition of benzyne
possessing fused four-membered ring. Lett. Org. Chem. 2005, 2, 68-73.