崔伟斌

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崔伟斌

2024-01-09 01:24| 来源: 网络整理| 查看: 265

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稀土永磁方向 1. “The influence of grain morphology and easy axis orientation on the coercivity of Sm(Co0.9Cu0.1)5 thin films”, W. B. Cui, L. Ma, H. Sepehri-Amin, Y. K. Takahashi and K. Hono, Acta Mater., 107, 49-58 (2016) 2. “Origin analysis of coercivity enhancment mechanism in diffusion-processed Nd-Fe-B magnets”, Weibin Cui, Yanqing Fu, Tie Liu, Guojian Li, Qiang Wang, J Alloy and Comp., 686 101 (2016) 3. “Hard-magnetic properties of spacer-layer tuned NdFeB/Ta/Fe nanocomposite films”, W. B. Cui, H. Sepheri-Amin, Y. K.Takahashi and K. Hono, Acta Mater., 84, 405-412 (2015) 4. “Nd2Fe14B/FeCo anisotropic nanocomposite films with a large maximum energy product”, Weibin Cui, Yukiko K. Takahashi, Kazuhiro Hono, Adv. Mater., 24, 6530 (2012) 5. “Exchange coupling in hard/soft-magnetic multilayer films with non-magnetic spacer layers”, W. B. Cui, W. Liu, W. J. Gong, X. H. Liu, S. Guo, F. Yang, Z. H. Wang and Z. D. Zhang, J. Appl. Phys. 111, 07B503 (2012) 6. “Microstructure optimization to achieve high coercivity in anisotropic Nd–Fe–B thin films” W. B. Cui, Y. K.Takahashi and K. Hono, Acta Materialia 59 7768 (2011) 7. “Structure, magnetic properties and coercivity mechanism of the Mo-spacered Nd2Fe14B/α-Fe textured multilayer films”, W. B. Cui, W. Liu, J. Li, F. Yang, Q. Zhang, X. G. Liu, Z. D. Zhang, J. Phys. D: Appl. Phys. 41 245007 (2008) 8. “Anisotropic behavior of exchange coupling in textured Nd2Fe14B/α-Fe multilayer films”, W. B. Cui, S. J. Zheng, W. Liu, X. L. Ma, F. Yang, Q. Yao, X. G. Zhao, J. Appl. Phys., 104 053903 9. “Phase formation and magnetic properties of Nd2Fe14B-type Nd16Co76B8-xC­x alloys and their hydrides”. W. B. Cui, W. Liu, X. K. Lv, X. G. Zhao, Z. D. Zhang, Physica B 400 273 (2007) 10. “Enhanced coercivity in Nd-Fe-C alloys prepared by a re-milling process”, W. B. Cui, W. Liu, X. G. Zhao, S. L. Chen, Q. Yao, Z. D. Zhang, J Alloy and Comp. 436 392 (2007) 磁制冷方向: 1. “The origin of large overestimation of the magnetic entropy changes calculated directly by Maxwell relation”. Cui Weibin, Liu Wei, Zhang Zhidong, Appl. Phys. Lett., 96, 222509 (2010) 2. “Interstitial-nitrogen effect on phase transition and magnetocaloric effect in Mn(As,Si) (invited)” W. B. Cui, X. K. Lv, F. Yang, Y. Yu, R. Skomoski, X. G. Zhang, W. Liu, and Z. D. Zhang, J. Appl. Phys., 107 09A938 (2010) 3. “Carbon-doping effects on the metamagnetic transition and magnetocaloric effect in MnAsCx”, W. B. Cui, W. Liu, Q. Zhang, B. Li, X. H. Liu, F. Yang, X. G. Zhao, Z. D. Zhang, J. Magn. Magn. Mater., 322 2223 (2010) 4. “Magnetocaloric effects and reduced thermal hysteresis in Si-doped MnAs compounds”, W. B. Cui, W. Liu, X. H. Liu, S. Guo, Z. Han, X. G. Zhao, Z. D. Zhang, J. Alloy and Comp., 479 189 (2009) 5. “Beneficial effect of minor Al substitution on the magnetocaloric effect of Mn1-xAlxAs”, W. B. Cui, W. Liu, X. H. Liu, S. Guo, Z. Han, X. G. Zhao, Z. D. Zhang, Mater. Lett., 63 595 (2009) 垂直磁记录介质: 1. “Microstructure and magnetic properties of FePt-TiC-C granular thin films for perpendicular recording”, W. B. Cui, B. S. D. Varaprasad, Y. K. Takahashi, K. Hono, Solid State Communications.182 17 (2014) 2. “Beneficial Effects of Si3N4 Buffer/Spacer Layers on the Magnetic Properties of Exchange-Coupled PtFe/Fe Composite Films”, W. B. Cui, W. J. Gong, X. G. Zhao, C. W. Shih, W. Liu and Z. D. Zhang, IEEE. Trans. Magn.,49 3656 (2013) 3. “Magnetic properties of exchange-coupled PtFe/Fe films with spacer layers”, W. B. Cui, W. Liu, F. Yang, D. Li, S. Delikanli, S. Guo, W. J. Gong and Z. D. Zhang, J. Appl. Phys., 07A717 (2011) 4. “Ordering temperature of L10-type FePt films reduced by CuO addition”, W. B. Cui, X. H. Liu, F. Yang, X. K. Lv, S. Guo, W. J. Gong, W. Liu, Z. D. Zhang, J., Magn. Magn. Mater., 322 2027 (2010)



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