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Characterization and Understanding of Degradation Mechanisms in Encapsulation Materials Used in New-Gene


Thesis topic details

General information

Organisation

The French Alternative Energies and Atomic Energy Commission (CEA) is a key player in research, development and innovation in four main areas :
• defence and security,
• nuclear energy (fission and fusion),
• technological research for industry,
• fundamental research in the physical sciences and life sciences.

Drawing on its widely acknowledged expertise, and thanks to its 16000 technicians, engineers, researchers and staff, the CEA actively participates in collaborative projects with a large number of academic and industrial partners.

The CEA is established in ten centers spread throughout France
  

Reference

SL-DES-26-0672  

Thesis topic details

Category

Engineering science

Thesis topics

Characterization and Understanding of Degradation Mechanisms in Encapsulation Materials Used in New-Generation Silicon Photovoltaic (PV) Modules under Humidity and UV Stress

Contract

Thèse

Job description

New-generation photovoltaic technologies (TOPCon, SHJ, tandems) are particularly sensitive to environmental stressors, including humidity (Damp Heat, DH), UV radiation, and thermal cycling. These stresses accelerate the degradation of encapsulation materials (EVA, POE, TPO), leading to performance losses in modules—such as reduced transparency, delamination, metal contact corrosion, and Potential-Induced Degradation (PID). Despite their increasing adoption, these novel encapsulants lack long-term durability data, while widely used EVA exhibits premature aging (degradation after 10–15 years of exposure). The combined degradation mechanisms (DH + UV + temperature) remain understudied, yet they reflect real-world exposure conditions
This thesis aims to identify and understand the physicochemical degradation mechanisms of polymer encapsulants under coupled stressors, focusing on:
- Multi-scale analysis (chemical structure, optical properties, microstructure) of materials during accelerated aging
- Development of an experimental protocol replicating real-world conditions (coupled DH/UV stress) to assess material resilience
- Study of additive roles in encapsulant degradation, including UV absorbers, peroxides etc.

University / doctoral school

Sciences Fondamentales - Clermont-Auvergne
Clermont-Auvergne

Thesis topic location

Site

Grenoble

Requester

Position start date

01/10/2026

Person to be contacted by the applicant

LANDA Margot margot.landa@cea.fr
CEA
DES/DTS//LPM
Département des technologies solaires
Bâtiment Lynx 4, Bureau 331
50 avenue du Lac Léman
73375 Le Bourget du Lac

0479792930

Tutor / Responsible thesis director

BUSSIERE Pierre-Olivier pierre-olivier.bussiere@sigma-clermont.fr
Institut de Chimie de Clermont-Ferrand
ICCF
Institut de Chimie de Clermont-Ferrand – UMR 6296
Université Clermont Auvergne
20 avenue Blaise Pascal TSA 62006
63178 Aubière cedex

En savoir plus

www.linkedin.com/in/margot-landa-5b9867a5