Publications of Ruben Bueno Villoro

Journal Article (13)

1.
Journal Article
Zavanelli, D.; Isotta, E.; Bueno Villoro, R.; Zhang, S.; Scheu, C.; Bux, S.; Snyder, G. J.: Metallic grain boundary resistance in the high temperature thermoelectric La3Te4. Journal of materiomics 11 (6), 101116 (2025)
2.
Journal Article
Hatami Naderloo, R.; Bueno Villoro, R.; Mattlat, D. A.; Ying, P.; Song, S.; Bayesteh, S.; Nielsch, K.; Scheu, C.; Ren, Z.; Zhu, H. et al.; Zhang, S.; He, R.: Performance advancements in P-type TaFeSb-based thermoelectric materials through composition and composite optimizations. Energy & Environmental Science 18, pp. 738 - 749 (2025)
3.
Journal Article
Isotta, E.; Jiang, S.; Bueno Villoro, R.; Nagahiro, R.; Maeda, K.; Mattlat, D. A.; Odufisan, A. R.; Zevalkink, A.; Shiomi, J.; Zhang, S. et al.; Scheu, C.; Snyder, G. J.; Balogun, O.: Heat Transport at Silicon Grain Boundaries. Advanced Functional Materials 34 (40), 2405413 (2024)
4.
Journal Article
Sailler, S.; Bueno Villoro, R.; Bayesteh, S.; Schlörb, H.; Cichocka, O. M.; Nielsch, K.; Zhang, S.; Pérez, N.: Grain boundary chemistry and increased thermoelectric performance in Bi2Se3–Fe3O4 nanocomposites. Materials Today Physics 46, 101477 (2024)
5.
Journal Article
Ying, P.; Bueno Villoro, R.; Bahrami, A.; Wilkens, L.; Reith, H.; Mattlat, D. A.; Pacheco, V.; Scheu, C.; Zhang, S.; Nielsch, K. et al.; He, R.: Performance Degradation and Protective Effects of Atomic Layer Deposition for Mg-based Thermoelectric Modules. Advanced Functional Materials 34 (45), 2406473 (2024)
6.
Journal Article
Ai, X.; Lei, B.; Cichocka, M. O.; Giebeler, L.; Bueno Villoro, R.; Zhang, S.; Scheu, C.; Pérez, N.; Zhang, Q.; Sotnikov, A. et al.; Singh, D. J.; Nielsch, K.; He, R.: Enhancing the thermoelectric properties via modulation of defects in p-type MNiSn-based (M = Hf, Zr, Ti) half-Heusler materials. Advanced Functional Materials 33 (48), 2305582 (2023)
7.
Journal Article
Bueno Villoro, R.; Naderloo, R. H.; Mattlat, D. A.; Jung, C.; Nielsch, K.; Scheu, C.; He, R.; Zhang, S.: Composite design of half-Heusler thermoelectrics: Selective doping of grain boundary phases in NbFeSb by InSb. Materials Today Physics 38, 101240 (2023)
8.
Journal Article
Bueno Villoro, R.; Wood, M.; Luo, T.; Bishara, H.; Abdellaoui, L.; Zavanelli, D.; Gault, B.; Snyder, G. J.; Scheu, C.; Zhang, S.: Fe segregation as a tool to enhance electrical conductivity of grain boundaries in Ti(Co,Fe)Sb half Heusler thermoelectrics. Acta Materialia 249, 118816 (2023)
9.
Journal Article
Bueno Villoro, R.; Zavanelli, D.; Jung, C.; Mattlat, D. A.; Naderloo, R. H.; Pérez, N. A.; Nielsch, K.; Snyder, G. J.; Scheu, C.; He, R. et al.; Zhang, S.: Grain Boundary Phases in NbFeSb Half-Heusler Alloys: A New Avenue to Tune Transport Properties of Thermoelectric Materials. Advanced Energy Materials 13 (13), 2204321 (2023)
10.
Journal Article
Zubair, M.; Felten, M.; Hallstedt, B.; Vega-Paredes, M.; Abdellaoui, L.; Bueno Villoro, R.; Lipinska-Chwalek, M.; Ayeb, N.; Springer, H.; Mayer, J. et al.; Berkels, B.; Zander, D.; Korte-Kerzel, S.; Scheu, C.; Zhang, S.: Laves phases in Mg–Al–Ca alloys and their effect on mechanical properties. Materials and Design 225, 111470 (2023)
11.
Journal Article
Gomell, L.; Tsai, S.-P.; Roscher, M.; Bueno Villoro, R.; Konijnenberg, P. J.; Zaefferer, S.; Scheu, C.; Gault, B.: In-situ nitriding of Fe2VAl during laser surface remelting to manipulate microstructure and crystalline defects. Physical Review Materials 6 (8), 085405 (2022)
12.
Journal Article
Luo, T.; Serrano Sanchez, F. M.; Bishara, H.; Zhang, S.; Bueno Villoro, R.; Kuo, J. J.; Felser, C.; Scheu, C.; Snyder, G. J.; Best, J. P. et al.; Dehm, G.; Yu, Y.; Raabe, D.; Fu, C.; Gault, B.: Dopant-segregation to grain boundaries controls electrical conductivity of η-type NbCo(Pt)Sn half-Heusler alloy mediating thermoelectric performance. Acta Materialia 217, 117147 (2021)
13.
Journal Article
Abdellaoui, L.; Chen, Z.; Yu, Y.; Luo, T.; Hanus, R.; Schwarz, T.; Bueno Villoro, R.; Cojocaru-Mirédin, O.; Snyder, G. J.; Raabe, D. et al.; Pei, Y.; Scheu, C.; Zhang, S.: Parallel Dislocation Networks and Cottrell Atmospheres Reduce Thermal Conductivity of PbTe Thermoelectrics. Advanced Functional Materials 31 (20), 2101214 (2021)
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