代表论文:
·He, X.; Ding, S.*, Giil, H. G.; Wang, J.; Bhukta, M.; Wu, M.; Shi, W.; Lin, Z.; Liang, Z.; Yang, J.*; Kläui, M.; Brataas, A.; Hou, Y.*; Wu, R.*; Spin Seebeck in the weakly exchange-coupled Van der Waals antiferromagnet across the spin-flip transition. Nature Communications, 2025, 16(1), 3037.
·Liu, D.; Xue, M.; Jia, C.; Zhang, W.; Yu, Y.; Wu, R.*; Kan, X.*; Yang, J.; Tian, M.; Wang, S.; Chen, X.* (2025). Enhanced Curie temperature in atomically thin perpendicular magnetic anisotropic oxide film through interfacial engineering. Applied Physics Letters, 2025, 126(12),122407.
·Liu, W.; He, X.; Zhang, J.; Zheng, F.; Zhao, Y. J.; Wu, R.*; Yang, J.; Kläui, M.; Hou, Y.*; Two-Dimensional Rare-Earth-Based Half-Metals with Topological Bimerons. Nano Letters, 2024, 24(48), 15473-15480.
·Pradhan, S. K.#*; Liu, Y.#; Zheng, F.; Song, D.*; Wu, R.*; Observation of Néel-type magnetic skyrmion in a layered non-centrosymmetric itinerant ferromagnet CrTe1.38. Applied Physics Letters, 2024, 125(15),152402.
·Mohapatra, J.*; Xing, M.; Wu, R.*; Yang, J.; Liu, J. P.*; Giant exchange bias by tuning Co/CoO core/shell structure. Scripta Materialia, 2023, 230, 115400.
·MacManus-Driscoll, J. L.*; Wu, R.*; Li, W.*; Interface-related phenomena in epitaxial complex oxide ferroics across different thin film platforms: opportunities and challenges. Materials Horizons, 2023, 10(4): 1060-1086.(Review, backcover)
·Wu, R.; Ross, A.; Ding, S.; Peng, Y.; He, F.; Ren, Y.; Lebrun, R.; Wu, Y.; Wang, Z.; Yang, J.; Brataas, A.; & Kläui, M. (2022). Magnetotransport Study of van der Waals Cr PS 4/(Pt, Pd) Heterostructures: Spin-Flop Transition and Room-Temperature Anomalous Hall Effect. Physical Review Applied, 2022, 17(6), 064038.
·Wu, R.*; MacManus-Driscoll, J.L.*; Recent developments and the future perspectives in magnetoelectric nanocomposites for memory applications. APL Materials 2022; 10 (1), 010901.(Invited perspective)
·Wu, R.*; Zhang, D.; Maity, T.*; Lu, P.; Yang, J.; Gao, X.; Zhao, S.; Wei, X.; Zeng, H.; Kursumovic, A.; Tian, G.; Li, W.; Yun, C.; Wang, Y.; Ren, Z.; Zhou, Z.; Liu, M.; Zhang, K. H. L.; Jia, Q.; Yang, J.; Wang, H.; MacManus-Driscoll, J. L.*, Self-biased magnetoelectric switching at room temperature in three-phase ferroelectric–antiferromagnetic–ferrimagnetic nanocomposites. Nature Electronics, 2021, 4 (5), 333-341.
·Xu, H.#; Wu, R.#; Zhang, J.-Y.; Han, W.; Chen, L.; Liang, X.; Haw, C. Y.; Mazzolini, P.; Bierwagen, O.; Qi, D.-C.*; Zhang, K. H. L.*, Revealing the Electronic Structure and Optical Properties of CuFeO2 as a p-Type Oxide Semiconductor. ACS Applied Electronic Materials 2021, 3 (4), 1834-1841.
·Wu, R.#; Xue, M.#; Maity, T.; Peng, Y.; Giri, S. K.; Tian, G.; MacManus-Driscoll, J. L.*; Yang, J.*, Influence of atomic roughness at the uncompensated Fe/CoO (111) interface on the exchange-bias effect. Physical Review B 2020, 101 (1), 014425.
·Wen, X.; Wu, R.*; Yang, W.-Y.; Wang, C.-S.; Liu, S.-Q.; Han, J.-Z.; Yang, J.-B., Room-temperature electric control of exchange bias effect in CoO1–δ/Co films using Pb(Mg1/3Nb2/3) 0.7Ti0.3O3 (110) substrates. Chinese Physics B 2020, 29 (9), 098503.
·Wu, R.#*; Yun, C.#; Wang, X.; Lu, P.; Li, W.; Lin, Y.; Choi, E.-M.; Wang, H.; MacManus-Driscoll, J. L.*, All-oxide nanocomposites to yield large, tunable perpendicular exchange bias above room temperature. ACS Applied Materials & Interfaces 2018, 10 (49), 42593-42602.
·Wu, R.; Kursumovic, A.; Gao, X.; Yun, C.; Vickers, M. E.; Wang, H.; Cho, S.*; MacManus-Driscoll, J. L.*, Design of a vertical composite thin film system with ultralow leakage to yield large converse magnetoelectric effect. ACS Applied Materials & Interfaces 2018, 10 (21), 18237-18245.
·Wu, R.*; Ding, S.; Lai, Y.; Tian, G.; Yang, J.*, Enhancement of exchange bias in ferromagnetic/antiferromagnetic core-shell nanoparticles through ferromagnetic domain wall formation. Physical Review B 2018, 97 (2), 024428.
·Park, C.#; Wu, R.#; Lu, P.; Zhao, H.; Yang, J.; Zhang, B.; Li, W.; Yun, C.; Wang, H.; MacManus-Driscoll, J. L.*; Cho, S.*, Use of Mesoscopic Host Matrix to Induce Ferrimagnetism in Antiferromagnetic Spinel Oxide. Advanced Functional Materials 2018, 28 (11), 1706220.
·Xia, Y.#; Wu, R.#; Zhang, Y.; Liu, S.; Du, H.; Han, J.; Wang, C.; Chen, X.; Xie, L.; Yang, Y.; Yang, J.*, Tunable giant exchange bias in the single-phase rare-earth–transition-metal intermetallics YMn12−xFex with highly homogenous intersublattice exchange coupling. Physical Review B 2017, 96 (6), 064440.
·Wu, R.; Yun, C.; Ding, S.; Wen, X.; Liu, S.; Wang, C.; Han, J.; Du, H.; Yang, J., A separation of antiferromagnetic spin motion modes in the training effect of exchange biased Co/CoO film with in-plane anisotropy. Journal of Applied Physics 2016, 120 (5), 053902.
·Wu, R.; Wei, J. Z.; Peng, X. L.; Fu, J. B.; Liu, S. Q.; Zhang, Y.; Xia, Y. H.; Wang, C.S.; Yang, Y.C.; Yang, J. B.; The asymmetric magnetization reversal in exchange biased granular Co/CoO films. Applied Physics Letters, 2014, 104(18),182403.