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Theophilus Wallis
Theophilus Wallis
Federal Institute for Materials Research and Testing (BAM)
Bestätigte E-Mail-Adresse bei bam.de
Titel
Zitiert von
Zitiert von
Jahr
Grain boundary structural variations amplify segregation transition and stabilize co-existing spinodal interfacial phases
T Wallis, RD Kamachali
Acta Materialia 242, 118446, 2023
92023
Thermal stability of nanoscale ferroelectric domains by molecular dynamics modeling
AJ Klomp, R Khachaturyan, T Wallis, K Albe, A Grünebohm
Physical Review Materials 6 (10), 104411, 2022
42022
Dynamic stability of nano-scale ferroelectric domains by molecular dynamics modeling
AJ Klomp, R Khachaturyan, T Wallis, A Grünebohm, K Albe
arXiv preprint arXiv:2206.12243, 2022
4*2022
Giant segregation transition as origin of liquid metal embrittlement in the Fe-Zn system
RD Kamachali, T Wallis, Y Ikeda, U Saikia, A Ahmadian, CH Liebscher, ...
Scripta Materialia 238, 115758, 2024
12024
Giant segregation transition as origin of liquid metal embrittlement in the Fe-Zn system
R Darvishi Kamachali, T Wallis, Y Ikeda, U Saikia, A Ahmadian, ...
arXiv e-prints, arXiv: 2304.13336, 2023
1*2023
Density-based phase field modelling of the interplay between grain boundary segregation transition and structure
T Wallis, R Darvishi Kamachali
2023
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