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an original approach to making energy storage capacitors composed of eco-friendly waterborne polyelectrolyte coacervates using a cost-effective 3D printing technique. Water-processable polyelectrolytes
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inhomogeneities, make atomistic simulations a valuable tool to get precious insights into the mechanism and free energies of the process. The main objective of the post doc will be to explore the free energy
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secondary batteries based on economical, safe and environmentally friendly materials have the potential to impact the stationary energy storage market (> 32Bn$ by 2030). One direction to improve
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the degradation of bistriflimide (TFSI-), such as nucleophilic attacks by hydroxide. Estimates of the free energy profile along reaction coordinates will be obtained with enhanced sampling techniques (metadynamics
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Sorbonne Université | Villefranche sur Mer, Provence Alpes Cote d Azur | France | about 2 months ago
research project), please write to [email protected] and [email protected] before March 25th. Additional comments Contract for 15 to 20 months, renewable. Salary between €2900 and