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Portail > Offres > Offre UMR5215-ETIPAL-001 - Offre Postdoc H/F Assemblage dirigé de nano-objets photoluminescents pour de nouvelles générations d'écrans TV

Postdoc offer M/W Directed assembly of photoluminescent nano-objects for the next generation of displaysluminescents pour de nouvelles générations d'écrans TV

This offer is available in the following languages:
Français - Anglais

Date Limite Candidature : jeudi 5 novembre 2020

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General information

Reference : UMR5215-ETIPAL-001
Workplace : TOULOUSE,TOULOUSE
Date of publication : Thursday, October 15, 2020
Type of Contract : FTC Scientist
Contract Period : 36 months
Expected date of employment : 1 February 2021
Proportion of work : Full time
Remuneration : between 2648 et 3054€ (gross salary per month) depending on experience.
Desired level of education : PhD
Experience required : Indifferent

Missions

The goal of this project is to make the proof of concept of a new technology called μ-P3RL. A key point will be the development of co-assembly of red and green microperles synthesized by the Nexdot company by nanoxerography via electrical microcontact printing (e-µCP) (electrostatic trapping of colloidal nano-objects on charged patterns using conductive stamps on electret materials).

Activities

3 main research axes will be investigated :
* Charge injection in flexible and transparent substrates by e-µCP
* Co assembly of 3D pixels of red and green micropearls
* Optical characterizations of red and green matrices of pixels

Skills

PhD in Physics/Chemistry & Nanosciences & Micro,Nanotechnology & Micro/nanofabrication
* Good communication skills
* Scientific rigor
* Knowledge in Nano/MIcrofabrication and/or Physico-chemistry of nano-objects is a big plus
*Need to understand and speak French either

Work Context

The candidate will be part of the Nanotech team @ LPCNO lab in Toulouse (INSA de Toulouse Campus in Rangueil).
The Nanotech team develops innovative techniques of directed assembly of colloidal nanoparticles synthesized by soft chemistry on rigid/flexible surfaces or to form self-supported membranes. The final objective of such developments is the realization of nano-devices exploiting the original properties of those nano-objects.
Presently, more than 85 persons (researchers, lecturers, technical staff, students, post-docs) work at the LPCNO, organized in 6 research groups.

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