Their intrinsic low lattice thermal conductivity, combined with high Seebeck coefficients and tunable electrical properties through doping (with Te most of the time) or through metallic particles addition (Y, Nb …), contributes to their superior performance. Unlike many other high-ZT materials, Mg3Sb2-based compounds are composed of earth abundant, light weight elements and offers good thermal and oxidative stability (especially on the Sb rich side), making them well suited for waste heat recovery application.
Moreover, recent advances have enable the development of efficient p and n type variants, thus facilitating the construction of fully Mg-based thermoelectric modules with matched thermal and mechanical properties. The simple crystal structure and compatibility with scalable, low cost synthesis methods further enhance the appeal of Mg3Sb2 based materials as leading candidates for sustainable, high performance thermoelectric conversion.
In this Project, thermoelectric materials synthesis, densification and implementation within unicouples will be carried out. Synthesis methods will include reactive ball milling and traditional high temperature synthesis, densification of the powder will be performed using spark plasma sintering.
Both these steps will be the object of thorough studies as each of them have an impact on the final microstructure and nanostructure of the samples that in turn can have a remarkable influence of the final transport properties and evidently on the final thermoelectric conversion rate.
The best performing obtained materials will be used to build thermoelectric unicouples to be tested in real life conditions. Within this project, two different type of materials will be studied: doped Mg3X2 (X=Sb,Bi) and AgX2 based ductile materials.
Contract duration: 12 to 24 months depending on budget.
Where to apply
E-mail: franck.gascoin@ensicaen.fr
Requirements
Research Field: Chemistry
Education Level: PhD or equivalent
Skills/Qualifications
- Strong background in solid-state chemistry and materials science
- Experience in inorganic materials synthesis
- Experience in structural and microstructural characterization techniques
- Experience in physical property measurements and data analysis
Specific Requirements
- PhD in Materials Science, Solid-State Chemistry, Physics or a closely related field with proven hands-on experience in the synthesis and processing of inorganic or intermetallic materials.
- Good written and spoken English, with demonstrated ability to prepare scientific reports, publications and presentations.
Research Experience
Material sciences, Solid State Chemistry. The position is open to early-career researchers, including candidates who have recently completed their PhD.
Languages: ENGLISH
Level: Excellent
Additional Information
Benefits
Gross salary: ~ €2780/month
Eligibility criteria
PhD in Materials Science, Solid-State Chemistry, Physics or a closely related field.
Selection process
Interested candidates are invited to submit CV (with publication list and research interests), PhD or equivalent diploma, cover letter, and a letter of recommendation to Pr Franck Gascoin (franck.gascoin@ensicaen.fr).
Website for additional job details: https://crismat.cnrs.fr
Work Location(s)
Number of offers available: 1
Company/Institute: Université de Caen Normandie - CRISMAT research unit
Country: France
City: Caen
Postal Code: 14000
Street: 6 Boulevard du Maréchal Juin
Contact
City: Caen
Website: http://www.unicaen.fr
Street: Esplanade de la Paix 14032 CAEN CEDEX
Postal Code: CS 14032
E-Mail: franck.gascoin@ensicaen.fr