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Chemistry

D-Index
64
Citations
18452
World Ranking
7943
National Ranking
275

Overview

Jean Pinson is affiliated with Université Paris Cité in France and has contributed extensively to the fields of engineering and materials science. Their research spans several subfields, including electrical and electronic engineering, materials chemistry, organic chemistry, molecular biology, and biomedical engineering.

Their primary research topics focus on molecular junctions and nanostructures, conducting polymers and applications, quantum dots synthesis and properties, fiber-reinforced polymer composites, advanced biosensing and bioanalysis techniques, surface modification and superhydrophobicity, as well as graphene research and applications.

Jean Pinson has published in various scientific venues, with frequent contributions to Langmuir. Other notable venues include Biosensors, Advances in Colloid and Interface Science, Composites Part A Applied Science and Manufacturing, and Current Opinion in Electrochemistry.

  • Grafting of Diazonium Salts on Surfaces: Application to Biosensors (2020, Biosensors)
  • Surface functionalization of nanomaterials by aryl diazonium salts for biomedical sciences (2021, Advances in Colloid and Interface Science)
  • Covalent sizing surface modification as a route to improved interfacial adhesion in carbon fibre-epoxy composites (2020, Composites Part A Applied Science and Manufacturing)
  • Expanding the Scope of Surface Grafted Polymers Using Electroinitiated Polymerization (2020, Langmuir)
  • Surface modification of materials: Electrografting of organic films (2020, Current Opinion in Electrochemistry)

Jean Pinson has collaborated frequently with several researchers, including Claire Mangeney, Jérôme Médard, Philippe Decorse, Luke C. Henderson, and Fetah I. Podvorica.

The scientist has contributed to scholarly book literature as well, with a publication titled Aryl Diazonium Salts and Related Compounds released by Springer Nature in 2022.

Best Publications

  • Covalent Modification of Carbon Surfaces by Aryl Radicals Generated from the Electrochemical Reduction of Diazonium Salts

    Philippe Allongue;Michel Delamar;Bernard Desbat;Olivier Fagebaume

  • Covalent Modification of Carbon Surfaces by Grafting of Functionalized Aryl Radicals Produced from Electrochemical Reduction of Diazonium Salts

    Michel Delamar;Rachid Hitmi;Jean Pinson;Jean Michel Saveant

  • Attachment of organic layers to conductive or semiconductive surfaces by reduction of diazonium salts

    Jean Pinson;Fetah Podvorica

  • Electrografting: a powerful method for surface modification

    Daniel Bélanger;Jean Pinson

  • Electrochemical oxidation of aliphatic amines and their attachment to carbon and metal surfaces

    Alain Adenier;Mohamed M. Chehimi;Iluminada Gallardo;Jean Pinson

  • Electrochemical Formation of Close-Packed Phenyl Layers on Si(111)

    C. Henry de Villeneuve;J. Pinson;M. C. Bernard;P. Allongue

  • Influence of the anode materials on the electrochemical oxidation efficiency. Application to oxidative degradation of the pharmaceutical amoxicillin

    Flamur Sopaj;Manuel A. Rodrigo;Nihal Oturan;Fetah I. Podvorica

  • Grafting of Nitrophenyl Groups on Carbon and Metallic Surfaces without Electrochemical Induction

    Alain Adenier;Eva Cabet-Deliry;Annie Chausse;Sophie Griveau

  • Organic Layers Bonded to Industrial, Coinage, and Noble Metals through Electrochemical Reduction of Aryldiazonium Salts

    Marie-Claude Bernard;Annie Chausse;Eva Cabet-Deliry;Mohamed M. Chehimi

  • Covalent modification of iron surfaces by electrochemical reduction of aryldiazonium salts.

    Alain Adenier;Marie-Claude Bernard;Mohamed M. Chehimi;Eva Cabet-Deliry

  • Sterically hindered diazonium salts for the grafting of a monolayer on metals.

    Catherine Combellas;Frederic Kanoufi;Jean Pinson;Fetah I. Podvorica

  • The standard redox potential of the phenyl radical/anion couple.

    Claude P. Andrieux;Jean Pinson

  • Surface Modification of Conducting Substrates. Existence of Azo Bonds in the Structure of Organic Layers Obtained from Diazonium Salts

    Pascal Doppelt;Géraldine Hallais;Jean Pinson;and Fetah Podvorica

  • Immobilization of glucose oxidase on a carbon surface derivatized by electrochemical reduction of diazonium salts

    Christian Bourdillon;Michel Delamar;Christophe Demaille;Rachid Hitmi

  • Electrochemical Bonding of Amines to Carbon Fiber Surfaces Toward Improved Carbon‐Epoxy Composites

    Unknown

  • Effect of the anode materials on the efficiency of the electro-Fenton process for the mineralization of the antibiotic sulfamethazine

    Flamur Sopaj;Nihal Oturan;Jean Pinson;Fetah Podvorica

  • Organic monolayers on Si(111) by electrochemical method

    P. Allongue;C.Henry de Villeneuve;J. Pinson;F. Ozanam

  • The solvent as hydrogen-atom donor in organic electrochemical reactions. Reduction of aromatic halides

    F. M'Halla;J. Pinson;J. M. Saveant

  • Spontaneous Grafting of Iron Surfaces by Reduction of Aryldiazonium Salts in Acidic or Neutral Aqueous Solution. Application to the Protection of Iron against Corrosion

    Catherine Combellas;Michel Delamar;Frédéric Kanoufi;Jean Pinson

  • The Electrochemical Reduction of Diazonium Salts on Iron Electrodes. The Formation of Covalently Bonded Organic Layers and Their Effect on Corrosion

    Annie Chaussé;Mohamed M. Chehimi;Nadia Karsi;Jean Pinson

  • Hydroxylation by Electrochemically Generated OH Radicals. Mono- and Polyhydroxylation of Benzoic Acid: Products and Isomers' Distribution

    Mehmet A. Oturan;Jean Pinson

Frequent Co-Authors

Jean-Michel Savéant
Jean-Michel Savéant Université Paris Cité
Mehmet A. Oturan
Mehmet A. Oturan Université Paris Cité
Christian Amatore
Christian Amatore École Normale Supérieure
Mohamed M. Chehimi
Mohamed M. Chehimi Université Paris Cité
Christian Rolando
Christian Rolando University of Lille
Claude P. Andrieux
Claude P. Andrieux Université Paris Cité
Nihal Oturan
Nihal Oturan Université Gustave Eiffel
Pedatsur Neta
Pedatsur Neta National Institute of Standards and Technology
Daniel Bélanger
Daniel Bélanger University of Quebec at Montreal
Dominique Guyomard
Dominique Guyomard Centre national de la recherche scientifique, CNRS

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