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Number of items: 11.

Schönhöbel, A. M. ; Madugundo,, R. ; Barandiaran, J. M. ; Hadjipanayis, G. C. ; Palanisamy, D. ; Schwarz, T. ; Gault, B. ; Raabe, D. ; Skokov, K. ; Gutfleisch, Oliver ; Fischbacher, J. ; Schrefl, T. (2020):
Nanocrystalline Sm-based 1:12 magnets.
In: Acta Materialia, 200, pp. 652-658. ISSN 13596454,
DOI: 10.1016/j.actamat.2020.08.075,
[Article]

Nieves, P. ; Arapan, S. ; Maudes-Raedo, J. ; Marticorena-Sánchez, R. ; Del Brío, N. L. ; Kovacs, A. ; Echevarria-Bonet, C. ; Salazar, D. ; Weischenberg, J. ; Zhang, H. ; Vekilova, O. Yu. ; Serrano-López, R. ; Barandiaran, J. M. ; Skokov, K. ; Gutfleisch, O. ; Eriksson, O. ; Herper, H. C. ; Schrefl, T. ; Cuesta-López, S. (2019):
Database of novel magnetic materials for high-performance permanent magnet development.
In: Computational Materials Science, 168, pp. 188-202. Elsevier, ISSN 09270256,
DOI: 10.1016/j.commatsci.2019.06.007,
[Article]

Sepehri-Amin, H. ; Dirba, I. ; Tang, Xin ; Ohkubo, T. ; Schrefl, T. ; Gutfleisch, O. ; Hono, K. (2019):
Development of high coercivity anisotropic Nd-Fe-B/Fe nanocomposite powder using hydrogenation disproportionation desorption recombination process.
In: Acta Materialia, 175, pp. 276-285. Elsevier, ISSN 13596454,
DOI: 10.1016/j.actamat.2019.06.017,
[Article]

Sepehri-Amin, H. ; Thielsch, J. ; Fischbacher, J. ; Ohkubo, T. ; Schrefl, T. ; Gutfleisch, O. ; Hono, K. (2017):
Correlation of microchemistry of cell boundary phase and interface structure to the coercivity of Sm(Co0.784Fe0.100Cu0.088Zr0.028)7.19 sintered magnets.
In: Acta Materialia, 126, pp. 1-10. Elsevier Science Publishing, ISSN 13596454,
[Article]

Akdogan, O. ; Sepehri-Amin, H. ; Dempsey, N. M. ; Ohkubo, T. ; Hono, K. ; Gutfleisch, O. ; Schrefl, T. ; Givord, D. (2015):
Preparation, Characterization, and Modeling of Ultrahigh Coercivity Sm-Co Thin Films.
In: Advanced Electronic Materials, 1 (5), pp. n/a-n/a. WILEY, ISSN 2199160X,
[Article]

Mcguiness, P. ; Akdogan, O. ; Asali, A. ; Bance, S. ; Bittner, F. ; Coey, J. M. D. ; Dempsey, N. M. ; Fidler, J. ; Givord, D. ; Gutfleisch, O. ; Katter, M. ; Le Roy, D. ; Sanvito, S. ; Schrefl, T. ; Schultz, L. ; Schwöbl, C. ; Soderžnik, M. ; Šturm, S. ; Tozman, P. ; Üstüner, K. ; Venkatesan, M. ; Woodcock, T. G. ; Žagar, K. ; Kobe, S. (2015):
Replacement and Original Magnet Engineering Options (ROMEOs): A European Seventh Framework Project to Develop Advanced Permanent Magnets Without, or with Reduced Use of, Critical Raw Materials.
In: JOM, 67 (6), pp. 1306-1317. Springer, ISSN 1047-4838,
[Article]

Hrkac, G. ; Butler, K. ; Woodcock, T. G. ; Saharan, L. ; Schrefl, T. ; Gutfleisch, O. (2014):
Modeling of Nd-Oxide Grain Boundary Phases in Nd-Fe-B Sintered Magnets.
In: JOM, 66 (7), pp. 1138-1143. Springer US, ISSN 1047-4838,
[Article]

Bance, S. ; Oezelt, H. ; Schrefl, T. ; Ciuta, G. ; Dempsey, N. M. ; Givord, D. ; Winklhofer, M. ; Hrkac, G. ; Zimanyi, G. ; Gutfleisch, O. ; Woodcock, T. G. ; Shoji, T. ; Yano, M. ; Kato, A. ; Manabe, A. (2014):
Influence of defect thickness on the angular dependence of coercivity in rare-earth permanent magnets.
In: Applied Physics Letters, 104 (18), p. 182408. AIP Publishing LLC, ISSN 0003-6951,
[Article]

Hrkac, G. ; Woodcock, T. G. ; Butler, K. T. ; Saharan, L. ; Bryan, M. T. ; Schrefl, T. ; Gutfleisch, O. (2014):
Impact of different Nd-rich crystal-phases on the coercivity of Nd–Fe–B grain ensembles.
In: Scripta Materialia, 70, pp. 35-38. Elsevier Science Publishing, ISSN 13596462,
[Article]

Bance, S. ; Oezelt, H. ; Schrefl, T. ; Winklhofer, M. ; Hrkac, G. ; Zimanyi, G. ; Gutfleisch, O. ; Evans, R. F. L. ; Chantrell, R. W. ; Shoji, T. ; Yano, M. ; Sakuma, N. ; Kato, A. ; Manabe, A. (2014):
High energy product in Battenberg structured magnets.
In: Applied Physics Letters, 105 (19), p. 192401. AIP Publishing LLC, ISSN 0003-6951,
[Article]

Woodcock, T. G. ; Zhang, Y. ; Hrkac, G. ; Ciuta, G. ; Dempsey, N. M. ; Schrefl, T. ; Gutfleisch, O. ; Givord, D. (2012):
Understanding the microstructure and coercivity of high performance NdFeB-based magnets.
In: Scripta Materialia, 67 (6), pp. 536-541. Elsevier Science Publishing, ISSN 1359-6462,
[Article]

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