Page 230 - Read Online
P. 230

Page 14 of 14         Kautsar et al. Energy Mater. 2025, 5, 500129  https://dx.doi.org/10.20517/energymater.2025.26

                   anisotropic magnet by low-temperature grain boundary diffusion of Nd Dy Cu  eutectic alloy. Scr. Mater. 2013, 69, 647-50.  DOI
                                                                 60
                                                                       20
                                                                    20
               42.      Bahl, C. R. H. Estimating the demagnetization factors for regular permanent magnet pieces. AIP. Advances. 2021, 11, 075028.  DOI
               43.      Breitenstein, O.; Warta, W.; Schubert, M. C. Lock-in Thermography. Springer International Publishing, Cham, 2018.  DOI
               44.      Uchida, K. I.; Daimon, S.; Iguchi, R.; Saitoh, E. Observation of anisotropic magneto-Peltier effect in nickel. Nature 2018, 558, 95-9.
                   DOI
               45.      Miura, A.; Masuda, K.; Hirai, T.; et al. High-temperature dependence of anomalous Ettingshausen effect in SmCo -type permanent
                                                                                               5
                   magnets. Appl. Phys. Lett. 2020, 117, 082408.  DOI
               46.      Wid, O.; Bauer, J.; Müller, A.; Breitenstein, O.; Parkin, S. S.; Schmidt, G. Investigation of the unidirectional spin heat conveyer effect
                   in a 200 nm thin yttrium iron garnet film. Sci. Rep. 2016, 6, 28233.  DOI  PubMed  PMC
               47.      Seki, T.; Iguchi, R.; Takanashi, K.; Uchida, K. Visualization of anomalous Ettingshausen effect in a ferromagnetic film: direct
                   evidence of different symmetry from spin Peltier effect. Appl. Phys. Lett. 2018, 112, 152403.  DOI
               48.      Das, R.; Iguchi, R.; Uchida, K. Systematic investigation of anisotropic Magneto-Peltier effect and anomalous Ettingshausen effect in
                   Ni thin films. Phys. Rev. Appl. 2019, 11, .034022.  DOI
               49.      Campos MF, Romero SA, de Castro JA. Estimation of texture and anisotropy field in a NdDyFeCoB magnet by magnetic
                   measurements at the perpendicular direction. J. Magn. Magn. Mater. 2022, 564, 170119.
               50.      Lee, Y.; Huang, G.; Shih, C.; Chang, W.; Chang, H.; You, J. Coercivity enhancement in hot deformed Nd Fe B-type magnets by
                                                                                          2
                                                                                            14
                   doping low-melting RCu alloys (R = Nd, Dy, Nd + Dy). J. Magn. Magn. Mater. 2017, 439, 1-5.  DOI
               51.      Cui, B. Z.; Zheng, L. Y.; Marinescu, M.; Liu, J. F.; Hadjipanayis, G. C. Textured Nd Fe B flakes with enhanced coercivity. J. Appl.
                                                                           2  14
                   Phys. 2012, 111, 07A735.  DOI
               52.      Hirosawa, S.; Matsuura, Y.; Yamamoto, H.; Fujimura, S.; Sagawa, M.; Yamauchi, H. Magnetization and magnetic anisotropy of R Fe
                                                                                                        2
                    B measured on single crystals. J. Appl. Phys. 1986, 59, 873-9.  DOI
                   14
               53.      Hu, C.; Xia, K.; Fu, C.; Zhao, X.; Zhu, T. Carrier grain boundary scattering in thermoelectric materials. Energy. Environ. Sci. 2022,
                   15, 1406-22.  DOI
               54.      Dong, H.; Wen, B.; Melnik, R. Relative importance of grain boundaries and size effects in thermal conductivity of nanocrystalline
                   materials. Sci. Rep. 2014, 4, 7037.  DOI  PubMed  PMC
               55.      Cahill, D. G.; Watson, S. K.; Pohl, R. O. Lower limit to the thermal conductivity of disordered crystals. Phys. Rev. B. 1992, 46, 6131.
                   DOI
               56.      Cahill, D. G.; Pohl, R. O. Lattice vibrations and heat transport in crystals and glasses. Annu. Rev. Phys. Chem. 1988, 39, 93-121.  DOI
               57.      Sakuma, A.; Suzuki, T.; Furuuchi, T.; Shima, T.; Hono, K. Magnetism of Nd-Fe films as a model of grain boundary phase in Nd-Fe-B
                   permanent magnets. Appl. Phys. Express. 2016, 9, 013002.  DOI
               58.      Stankiewicz, J.; Bartolomé, J. Magnetotransport properties of Nd Fe B. Phys. Rev. B. 1999, 59, 1152.  DOI
                                                             2  14
               59.      Ding, L.; Koo, J.; Xu, L.; et al. Intrinsic anomalous Nernst effect amplified by disorder in a half-metallic semimetal. Phys. Rev. X.
                   2019, 9, 041061.  DOI
               60.      Behnia, K.; Aubin, H. Nernst effect in metals and superconductors: a review of concepts and experiments. Rep. Prog. Phys. 2016, 79,
                   046502.  DOI  PubMed
               61.      Zhou, W.; Masuda, K.; Sakuraba, Y. Origin of negative anomalous Nernst thermopower in Mn-Ga ordered alloys. Appl. Phys. Lett.
                   2021, 118, 152406.  DOI
   225   226   227   228   229   230   231   232   233   234   235