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Nolwenn MayetNM

Nolwenn Mayet

Chemist specialized in electrochemistry

€290/day
Paris, FR
3-7 years

Average response time: 1 hour

Freelancer profile translated to English.
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About Nolwenn

PhD in chemistry and specialist in electrochemistry, I put my scientific expertise at the service of industrial companies, start-ups and laboratories to: optimize your electrochemical processes, develop electrode materials, train your teams in electrochemical techniques (cyclic and linear voltammetry, chronoamperometry, etc.), write protocols and bibliographic reports (I am the author of a review), etc. I also have experience in analytical chemistry: transmission and scanning electron microscopy, liquid and gas chromatography, mass spectrometry, IR and UV-vis spectrophotometry, XPS, etc.

Residing in Île de France, I can travel throughout France. Do not hesitate to contact me to discuss your project.

Keywords: electrochemistry, chemistry, analytical chemistry, chromatography, HPLC, mass spectrometry, electron microscopy, zeta potential, water chemistry, solid chemistry, green chemistry, materials science, surface characterization, nanoparticle synthesis, nanomaterials, inorganic chemistry, bibliographic research, scientific literature, scientific popularization, content creation, translation, publication writing
  • French

    Native or bilingual

  • English

    Fluent

Can work on-site
Paris (up to 50km), Lyon (up to 50km), Limoges (up to 50km), Bordeaux (up to 50km), Rouen (up to 50km)

Experience

  • Indépendant
    Consultant
    January 2022 - Today (4 years and 7 months)
    Paris, France
    Independent chemistry consultant, specializing in electrochemistry and analytical chemistry for clients.
    Chemistry Electrochemistry R&D analytical chemistry Scientific monitoring
  • Université de Poitiers
    PhD student in electrochemistry
    CHEMICAL
    October 2016 - March 2020 (3 years and 5 months)
    Unsupported gold-based nanoparticle of controlled shapes (rods, octahedrons, etc.) were prepared by the seed growth method. Physicochemical characterizations (UV-visible, electron microscopy, etc.) allowed observation of nanoparticles of the desired shape and size. Electrochemical characterizations such as lead potential deposition by cyclic voltammetry revealed the crystallographic orientation and the presence of high Miller index faces. The surface oxidation of these nanoparticles in electrolytic support medium depends on the different crystallographic orientations.
    Electrochemistry Research and development Bibliographic research Nanotechnology Chemistry

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Education

  • PhD
    University of Poitiers
    2019
    Doctorat en électrochimie

Skill set

Categories

  • Other