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Chemistry

D-Index
53
Citations
7213
World Ranking
13336
National Ranking
522

Overview

Josep M. Anglada is affiliated with the Spanish National Research Council in Spain. Their research primarily focuses on atmospheric chemistry, with significant work on the chemistry of aerosols and atmospheric ozone. Anglada's scholarly output spans multiple interconnected scientific fields, including Earth and Planetary Sciences and Chemistry, with specific subfields covering Atmospheric Science, Organic Chemistry, Atomic and Molecular Physics, and Environmental Engineering.

The primary scientific topics in Anglada's research include:

  • Atmospheric chemistry and aerosols
  • Atmospheric Ozone and Climate
  • Spectroscopy and Quantum Chemical Studies
  • Electrochemical Analysis and Applications
  • Air Quality Monitoring and Forecasting
  • Free Radicals and Antioxidants
  • Molecular Junctions and Nanostructures

Anglada has published extensively in several high-impact journals. Frequent publication venues include:

  • Journal of the American Chemical Society
  • Proceedings of the National Academy of Sciences
  • Nature Reviews Chemistry
  • Chemical Science
  • The Journal of Organic Chemistry

Selected recent papers illustrate the range of their investigations:

  • Molecular reactions at aqueous interfaces, 2020, Nature Reviews Chemistry
  • Photoinduced Oxidation Reactions at the Air-Water Interface, 2020, Journal of the American Chemical Society
  • Fast Sulfate Formation Initiated by the Spin-Forbidden Excitation of SO2 at the Air-Water Interface, 2022, Journal of the American Chemical Society
  • The Aqueous Surface as an Efficient Transient Stop for the Reactivity of Gaseous NO2 in Liquid Water, 2020, Journal of the American Chemical Society
  • Photosensitization mechanisms at the air-water interface of aqueous aerosols, 2022, Chemical Science

Throughout their career, Anglada has frequently collaborated with a number of researchers. Notable co-authors include:

  • Joseph S. Francisco
  • Manuel F. Ruiz-López
  • Marilia T. C. Martins-Costa
  • Ramón Crehuet
  • Chu Gong

Josep M. Anglada's research contributions address complex chemical processes occurring at the interface between air and water, the behavior of transient species in atmospheric reactions, and the mechanisms underlying photoinduced oxidation and sulfate formation. These areas of work are relevant to understanding environmental and atmospheric phenomena at molecular and surface levels.

Best Publications

  • Molecular reactions at aqueous interfaces

    Manuel F. Ruiz-Lopez;Joseph S. Francisco;Marilia T. C. Martins-Costa;Josep M. Anglada

  • Effects of the substituents on the reactivity of carbonyl oxides. A theoretical study on the reaction of substituted carbonyl oxides with water.

    J. M. Anglada;J. González;M. Torrent-Sucarrat

  • The Ozonolysis of Ethylene: A Theoretical Study of the Gas-Phase Reaction Mechanism

    Josep M. Anglada;Ramon Crehuet;Josep Maria Bofill

  • Unimolecular Isomerizations and Oxygen Atom Loss in Formaldehyde and Acetaldehyde Carbonyl Oxides. A Theoretical Investigation

    Josep M. Anglada;Josep M. Bofill;Santiago Olivella;Albert Solé

  • Interconnection of Reactive Oxygen Species Chemistry across the Interfaces of Atmospheric, Environmental, and Biological Processes

    Josep M. Anglada;Marilia Martins-Costa;Marilia Martins-Costa;Joseph S. Francisco;Manuel F. Ruiz-López;Manuel F. Ruiz-López

  • Sulfuric Acid as Autocatalyst in the Formation of Sulfuric Acid

    Miquel Torrent-Sucarrat;Joseph S. Francisco;Josep M. Anglada

  • The reactions of SO3 with HO2 radical and H2O···HO2 radical complex. Theoretical study on the atmospheric formation of HSO5 and H2SO4

    Javier Gonzalez;Miquel Torrent-Sucarrat;Josep M. Anglada

  • Atmospheric significance of water clusters and ozone-water complexes.

    Josep M. Anglada;Gerald J. Hoffman;Lyudmila V. Slipchenko;Marilia M.Costa

  • Water effects on atmospheric reactions

    Unknown

  • Atmospheric formation of OH radicals and H2O2 from alkene ozonolysis under humid conditions.

    Josep M. Anglada;Philippe Aplincourt;Josep M. Bofill;Dieter Cremer

  • Impact of the water dimer on the atmospheric reactivity of carbonyl oxides

    Josep M. Anglada;Albert Solé

  • Tropospheric formation of hydroxymethyl hydroperoxide, formic acid, H2O2, and OH from carbonyl oxide in the presence of water vapor: a theoretical study of the reaction mechanism.

    Ramon Crehuet;Josep M. Anglada;Josep M. Bofill

  • A REDUCED-RESTRICTED-QUASI-NEWTON-RAPHSON METHOD FOR LOCATING AND OPTIMIZING ENERGY CROSSING POINTS BETWEEN TWO POTENTIAL ENERGY SURFACES

    Josep Maria Anglada;Josep Maria Bofill

  • Impact of Water on the OH + HOCl Reaction

    Javier Gonzalez;Josep M. Anglada;Robert J. Buszek;Joseph S. Francisco

  • Ion release from dental casting alloys as assessed by a continuous flow system: Nutritional and toxicological implications.

    José F. López-Alías;Jordi Martinez-Gomis;Josep M. Anglada;Maria Peraire

  • Complex Mechanism of the Gas Phase Reaction between Formic Acid and Hydroxyl Radical. Proton Coupled Electron Transfer versus Radical Hydrogen Abstraction Mechanisms

    Josep M. Anglada

  • The Mechanism of Methoxy Radical Oxidation by O2 in the Gas Phase. Computational Evidence for Direct H Atom Transfer Assisted by an Intermolecular Noncovalent O···O Bonding Interaction

    Josep M. Bofill;Santiago Olivella;and Albert Solé;Josep M. Anglada

  • Comparative evaluation of four finishing systems on one ceramic surface.

    Jordi Martínez-Gomis;Josep Bizar;Josep Maria Anglada;Jordi Samsó

  • Reactivity of atmospherically relevant small radicals at the air-water interface.

    Marilia T. C. Martins-Costa;Josep M. Anglada;Joseph S. Francisco;Manuel F. Ruiz-Lopez

  • Evaluation of the Nonlinear Optical Properties for Annulenes with Hückel and Möbius Topologies.

    Miquel Torrent-Sucarrat;Josep M. Anglada;Josep M. Luis

  • Effects of a single water molecule on the OH + H2O2 reaction.

    Robert J. Buszek;Miquel Torrent-Sucarrat;Josep M. Anglada;Joseph S. Francisco

  • Finding transition states using reduced potential-energy surfaces

    Josep Maria Bofill;Josep Maria Anglada

  • Theoretical investigation of the eight low-lying electronic states of the cis- and trans-nitric oxide dimers and its isomerization using multiconfigurational second-order perturbation theory (CASPT2)

    R. Sayós;R. Valero;J. M. Anglada;Miguel González

Frequent Co-Authors

Manuel F. Ruiz-López
Manuel F. Ruiz-López University of Lorraine
Joseph S. Francisco
Joseph S. Francisco University of Pennsylvania
Sigrid D. Peyerimhoff
Sigrid D. Peyerimhoff University of Bonn
Josep M. Luis
Josep M. Luis University of Girona
Robert J. Buenker
Robert J. Buenker University of Wuppertal
Dieter Cremer
Dieter Cremer Southern Methodist University
José M. Lluch
José M. Lluch Autonomous University of Barcelona
Ignasi Sirés
Ignasi Sirés University of Barcelona
Elfi Kraka
Elfi Kraka Southern Methodist University
Fernando P. Cossío
Fernando P. Cossío University of the Basque Country

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