Project description
Research could lead to improved lithium–sulfur battery designs
Lithium–sulfur batteries seem to be ideal successors to conventional lithium–ion ones as they could be cheaper and hold more energy per weight. However, the energy densities achieved so far have failed to match theoretical predictions. The difficulty in loading sufficient amounts of sulfur on the porous carbon cathode limits the ability to fully develop its electrochemical potential. The EU-funded NanoEvolution project will bring attention to aspects that are not well understood. It will investigate the mass and charge transport properties of lithium–sulfur batteries and reveal more about the electrochemical reaction mechanisms, in particular multiple-step sulfur reduction. Modelling and experimental work will increase our understanding of the kinetics and morphology of lithium–sulfur deposition in carbon electrodes at unprecedented length scales.
Objective
                                Lithium-sulfur (Li-S) batteries are considered a strategic candidate to achieve both significantly higher energy storage and better sustainability than current Lithium-ion batteries. They operate by converting sulfur into lithium sulfide and back on discharge/charge. However, practically achieved energies are far from theoretical values due to difficulties to load sulfur in high areal and volume density in the porous carbon cathode and to fully use it electrochemically. Current experimental techniques are strong in aspects, but fail to combine the required coverage of length scales ranging from sub-nanometers to micrometers in the crucial real-time in situ fashion. 
NanoEvolution aims to i) identify nanoscale structure-transport-performance correlations, ii) understand capacity limitations and reaction mechanisms, and iii) derive design criteria for improved Li-S battery performance. To achieve these goals, structure-sensitive in situ scattering and imaging methods during electrochemically operating custom-built in situ Li-S cells will be implemented. Specifically, in situ small and wide angle X-ray scattering (SWAXS) will be established and synergistically combined with nanoscale phase evolution modelling for data analysis. In situ nanoscale X-ray tomography will be realized to achieve continuous structural sensitivity from (sub-)nanometer (SWAXS) to sub-micrometer scales (tomography). 
The novel combination of modelling and structure-sensitive in situ experiments allows real-time detection of the Li2S/sulfur morphology and location within the nanoporous carbon electrode during charge and discharge, at length scales so far not accessible to other methods. This allows to determine the final cause for capacity limitation (mass transport vs. charge transport), ii) elucidate the nature of the multiple-step sulfur reduction (oxidation) reaction, and iii) derive design criteria for improved sulfur loading, capacity utilization, and power densities.
                            
                                Fields of science (EuroSciVoc)
                                                                                                            
                                            
                                            
                                                CORDIS classifies projects with EuroSciVoc, a multilingual taxonomy of fields of science, through a semi-automatic process based on NLP techniques. See:   The European Science Vocabulary.
                                                
                                            
                                        
                                                                                                
                            CORDIS classifies projects with EuroSciVoc, a multilingual taxonomy of fields of science, through a semi-automatic process based on NLP techniques. See: The European Science Vocabulary.
- natural sciences computer and information sciences data science
- natural sciences chemical sciences electrochemistry electric batteries
- natural sciences chemical sciences inorganic chemistry alkali metals
- natural sciences chemical sciences electrochemistry electrolysis
You need to log in or register to use this function
We are sorry... an unexpected error occurred during execution.
You need to be authenticated. Your session might have expired.
Thank you for your feedback. You will soon receive an email to confirm the submission. If you have selected to be notified about the reporting status, you will also be contacted when the reporting status will change.
            Programme(s)
            
              
              
                Multi-annual funding programmes that define the EU’s priorities for research and innovation.
                
              
            
          
                      Multi-annual funding programmes that define the EU’s priorities for research and innovation.
- 
                  H2020-EU.1.3. - EXCELLENT SCIENCE - Marie Skłodowska-Curie Actions
                                      MAIN PROGRAMME
                                    
 See all projects funded under this programme
- 
                  H2020-EU.1.3.2. - Nurturing excellence by means of cross-border and cross-sector mobility
                                    
 See all projects funded under this programme
            Topic(s)
            
              
              
                Calls for proposals are divided into topics. A topic defines a specific subject or area for which applicants can submit proposals. The description of a topic comprises its specific scope and the expected impact of the funded project.
                
              
            
          
                      
                  Calls for proposals are divided into topics. A topic defines a specific subject or area for which applicants can submit proposals. The description of a topic comprises its specific scope and the expected impact of the funded project.
            Funding Scheme
            
              
              
                Funding scheme (or “Type of Action”) inside a programme with common features. It specifies: the scope of what is funded; the reimbursement rate; specific evaluation criteria to qualify for funding; and the use of simplified forms of costs like lump sums.
                
              
            
          
                      Funding scheme (or “Type of Action”) inside a programme with common features. It specifies: the scope of what is funded; the reimbursement rate; specific evaluation criteria to qualify for funding; and the use of simplified forms of costs like lump sums.
MSCA-IF - Marie Skłodowska-Curie Individual Fellowships (IF)
See all projects funded under this funding scheme
              Call for proposal
                
                  
                  
                    Procedure for inviting applicants to submit project proposals, with the aim of receiving EU funding.
                    
                  
                
            
                          Procedure for inviting applicants to submit project proposals, with the aim of receiving EU funding.
(opens in new window) H2020-MSCA-IF-2019
See all projects funded under this callCoordinator
Net EU financial contribution. The sum of money that the participant receives, deducted by the EU contribution to its linked third party. It considers the distribution of the EU financial contribution between direct beneficiaries of the project and other types of participants, like third-party participants.
8092 Zuerich
Switzerland
The total costs incurred by this organisation to participate in the project, including direct and indirect costs. This amount is a subset of the overall project budget.
 
           
        