Lenoir, T.; Chéhab, B.; Mouton, I.; Robaut, F.; De Geuser, F.; Gault, B.; Després, A.; Blandin, J.-J.; Martin, G.: Influence of ageing on the high-temperature mechanical strength of the Al-4Mn-3Ni-2Cu-1Zr alloy produced by laser powder bed fusion. Materials Science and Engineering: A 948, 149372 (2025)
Harding, I.; Mouton, I.; Gault, B.; Kumar, K. S.: Microstructural Evolution in an Fe–10Ni–0.1C Steel During Heat Treatment and High Strain-Rate Deformation. Metallurgical and Materials Transactions A 51, pp. 5056 - 5076 (2020)
Multiple Exciton Generation (MEG) is a promising pathway towards surpassing the Shockley-Queisser limit in solar energy conversion efficiency, where an incoming photon creates a high energy exciton, which then decays into multiple excitons.
In this project, we aim to design novel NiCoCr-based medium entropy alloys (MEAs) and further enhance their mechanical properties by tuning the multiscale heterogeneous composite structures. This is being achieved by alloying of varying elements in the NiCoCr matrix and appropriate thermal-mechanical processing.