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Iankevich, Gleb ; Sarkar, Abhishek ; Katnagallu, Shyam ; Chellali, Mohammed Reda ; Wang, Di ; Velasco, Leonardo ; Singh, Ruby ; Reisinger, Thomas ; Kruk, Robert ; Hahn, Horst (2023)
A New Class of Cluster-Matrix Nanocomposite Made of Fully Miscible Components.
In: Advanced Materials, 35 (9)
doi: 10.1002/adma.202208774
Artikel, Bibliographie
Ye, Xinglong ; Yan, Fengkai ; Schäfer, Lukas ; Wang, Di ; Geßwein, Holger ; Wang, Wu ; Chellali, Mohammed Reda ; Stephenson, Leigh T. ; Skokov, Konstantin ; Gutfleisch, Oliver ; Raabe, Dierk ; Hahn, Horst ; Gault, Baptiste ; Kruk, Robert (2021)
Magnetoelectric Tuning of Pinning‐Type Permanent Magnets through Atomic‐Scale Engineering of Grain Boundaries.
In: Advanced Materials, 33 (5)
doi: 10.1002/adma.202006853
Artikel, Bibliographie
Mu, Xiaoke ; Chellali, Mohammed Reda ; Boltynjuk, Evgeniy ; Gunderov, Dmitry ; Valiev, Ruslan Z. ; Hahn, Horst ; Kübel, Christian ; Ivanisenko, Yulia ; Velasco, Leonardo (2021)
Unveiling the local atomic arrangements in the shear band regions of metallic glass.
In: Advanced Materials, 33 (12)
doi: 10.1002/adma.202007267
Artikel, Bibliographie
Ye, Xinglong ; Singh, Harish K. ; Zhang, Hongbin ; Geßwein, Holger ; Chellali, Mohammed Reda ; Witte, Ralf ; Molinari, Alan ; Skokov, Konstantin ; Gutfleisch, Oliver ; Hahn, Horst ; Kruk, Robert (2020)
Giant voltage-induced modification of magnetism in micron-scale ferromagnetic metals by hydrogen charging.
In: Nature Communications, 11 (1)
doi: 10.1038/s41467-020-18552-z
Artikel, Bibliographie
Nandam, Sree Harsha ; Adjaoud, Omar ; Schwaiger, Ruth ; Ivanisenko, Yulia ; Chellali, Mohammed Reda ; Wang, Di ; Albe, Karsten ; Hahn, Horst (2020)
Influence of topological structure and chemical segregation on the thermal and mechanical properties of Pd-Si nanoglasses.
In: Acta Materialia
doi: 10.1016/j.actamat.2020.03.021
Artikel, Bibliographie
Molina‐Jirón, Concepción ; Chellali, Mohammed Reda ; Kumar, C. N. Shyam ; Kübel, Christian ; Velasco, Leonardo ; Hahn, Horst ; Moreno‐Pineda, Eufemio ; Ruben, Mario (2019)
Direct conversion of CO2 to multi‐layer graphene using Cu–Pd alloys.
In: ChemSusChem, 12 (15)
doi: 10.1002/cssc.201901404
Artikel, Bibliographie