Synthèse et caractérisations de polymères conducteurs redox pour batteries organiques // Synthesis and characterization of redox conducting polymers for organic battery electrodes
ABG-132998
ADUM-67087 |
Thesis topic | |
2025-07-23 | Other public funding |
Université de Tours
TOURS - Centre Val de Loire - France
Synthèse et caractérisations de polymères conducteurs redox pour batteries organiques // Synthesis and characterization of redox conducting polymers for organic battery electrodes
- Chemistry
chimie organique, polymères conjugués
organic chemistry, conjugated polymers
organic chemistry, conjugated polymers
Topic description
Cette thèse sera consacrée à la synthèse et aux caractérisations physico-chimiques et électrochimiques de polymères conducteurs redox dopables-p pour cathode de batteries organiques. Les niveaux d'énergie et les potentiels redox seront ajustés et la porosité intrinsèque des matériaux sera contrôlée, ce qui pourra se faire en développant des stratégies de réticulation. La porosité permettra d'améliorer la conductivité ionique et de réduire les changements de volume lors des cycles de charge/décharge de manière à augmenter la durée de vie des électrodes.
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This PhD work will focus on the synthesis, physico-chemical and electrochemical
characterizations of p-dopable porous redox conducting polymers for organic cathodes. A
particular attention will be paid to the fine-tuning of energy levels and redox potentials, as
well as to the intrinsic porosity of the materials. We have developed an expertise in crosslinking
strategies that can be used to generate intrinsically porous materials. Intrinsic
porosity is expected to be a key parameter as it can lead to increased ionic conductivity and
help managing volume changes, thus preserving the morphological integrity of the materials
during electrochemical cycling.
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Début de la thèse : 01/10/2025
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This PhD work will focus on the synthesis, physico-chemical and electrochemical
characterizations of p-dopable porous redox conducting polymers for organic cathodes. A
particular attention will be paid to the fine-tuning of energy levels and redox potentials, as
well as to the intrinsic porosity of the materials. We have developed an expertise in crosslinking
strategies that can be used to generate intrinsically porous materials. Intrinsic
porosity is expected to be a key parameter as it can lead to increased ionic conductivity and
help managing volume changes, thus preserving the morphological integrity of the materials
during electrochemical cycling.
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Début de la thèse : 01/10/2025
Funding category
Other public funding
Funding further details
ANR Financement d'Agences de financement de la recherche
Presentation of host institution and host laboratory
Université de Tours
Institution awarding doctoral degree
Université de Tours
Graduate school
552 Energie, Matériaux, Sciences de la Terre et de l'Univers - EMSTU
Candidate's profile
Diplôme de Master en chimie organique ou sciences des matériaux. Une expérience en électrochimie ou dans le domaine des molécules ou polymères conjugués sera appréciée.
Completion or near completion of a Master's degree in materials science or organic chemistry. Knowledge and experience in the fields of conjugated polymers and electrochemistry will be appreciated. The candidate should be able to work and communicate within a multidisciplinary team.
Completion or near completion of a Master's degree in materials science or organic chemistry. Knowledge and experience in the fields of conjugated polymers and electrochemistry will be appreciated. The candidate should be able to work and communicate within a multidisciplinary team.
2025-08-22
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