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2018年
 

        [1] 邱万奇,李浩,洪涛,刘仲武,钟喜春,焦东玲,周克崧,CuCr0.5表面制备Cu-Diamond层及其性能,稀有金属材料与工程,47 (11) (2018) 3554-3558

        [2] D.R. Peng, X.C. Zhong, J.H. Huang, H. Zhang, Y.L. Huang, X.T. Dong, D.L. Jiao, Z.W. Liu, R.V. Ramanujan, Novel processing of Cu-bonded La–Ce–Fe–Co–Si magnetocaloric composites for magnetic refrigeration by low-temperature hot pressing, MRS Communications (2018), 8, 1216–1223

        [3] Wei Li, Lizhong Zhao, Zhongwu Liu*, Micromagnetic simulation on the magnetic properties of Nd2Fe14B/α-Fe nanocomposites with Fe nanowires as the soft phase, Frontier of Materials Science. 12 (4), (2018) 348-353

        [4] D.L. Jiao, X.C. Zhong, H. Zhang, W.Q. Qiu, Z.W. Liu, R.V. Ramanujan, Thermal stability, magnetic and magnetocaloric properties of Gd55Co35M10 (M=Si, Zr and Nb) melt-spun ribbons, Current Applied Physics, 18 (12) (2018) 1523-1527

        [5] X.C. Zhong, H.Y. Yu, Z.W. Liu, R.V. Ramanujan, Influence of crystallization treatment on structure, magnetic properties and magnetocaloric effect of Gd71Ni29 melt-spun ribbons, Current Applied Physics, 18 (11) (2018) 1289-1293

        [6] Meixia Wu, Laijun Liu, Zhongwu Liu*, Investigation on the electric and magnetoelectric properties of BaSrCo2Fe11.5Ga0.5O22 Ferrite, Journal of Materials Science: Materials in Electronics, 29 (20) (2018) 17865-17871

        [7] M. Hussain, Zubair Ahmad, L.Z. Zhao, Rizwan Akram, Z.Y. Zhang, A. Gulzar, X.C. Zhong, Z.W. Liu*, Magnetic properties and exchange interaction of rapidly quenched La or Ce substituted nanocrystalline NdFeB alloys with various compositions, Journal of Magnetism and Magnetic Materials, 468 (2018) 141-147

        [8] Xiaoyan Sun, Zhongwu Liu, Zhigang Zheng, Hongya Yu, Dechang Zeng, Improved adsorption of Congo red by nanostructured flower-like FeII-FeIII hydroxy complex, Water Science and Technology, 78 (4) (2018) 506-514

        [9] J.S. Zhang, M.L. Zhong, L.Z. Zhao, X.F. Liao, H.X. Zeng, X.C. Zhong, Z.C. Zhong, Z.W. Liu*, Reducing Dy content by Ce substitution in nanocomposite (Nd,Dy)-Fe-B/α-Fe alloys, Journal of Alloys and Compounds, 766 (2018) 1061-1066

        [10] Q. Zhou, R.Z. Tang, F.M. Xiao, Z.W. Liu, Coercivity enhancement of Nd-Ce-Fe-B sintered magnets by the grain boundary diffusion process using Nd-Al-Cu alloy, IEEE Transaction on Magnetics. 54(11) (2018) 2102804

        [11] Y.X. Wu, H.Y. Yu, Z.W. Liu*, Numerical investigation of the magnetic and electric field distributions produced by biconical transcranial magnetic stimulation coil for optimal design, IEEE Transaction on Magnetics. 54 (11) (2018) 5001105

        [12] 邓沃湛,刘仲武*,张翼飞,王开祥,烧结氧分压对二次料制备的MnZn铁氧体性能的影响,材料科学与工程学报,2018, 已接收

        [13] Hui Zhang, Zhongwu Liu, X.C. Zhong, Dongling Jiao, W.Q. Qiu, Molecular dynamics simulation of diamond and graphite structures without setting any initial Bravais lattice and with Lennard-Jones interatomic potentials,

        [14] Hui Zhang, Zhongwu Liu, X.C. Zhong, Dongling Jiao, W.Q. Qiu, Molecular dynamics simulation of crystallization and non-crystallization of Lennard-Jones particles without setting any initial Bravais lattice

        [15] 钟喜春,郭兴家,廖僖,刘仲武,王开祥,张翼飞,不同类型电磁加热用磁条材料的成分、结构与性能对比分析,磁性材料与器件,494)(201816-23

        [16] 邱万奇,王书林,程奕天,刘仲武,钟喜春,焦东玲,周克崧,低温反应溅射沉积a-(Al,Cr)2O3膜,材料研究学报,32(4) (2018) 278-282

        [17] Jun Cao, Y. L. Huang, Y. H. Hou, G.Q. Zhang, Z.Q. Shi, Z.C. Zhong, Z.W. Liu, Effects of intergranular phase on the coercivity for MnBi magnets prepared by spark plasma sintering, AIP Advances 8(5) 2018: 055132

        [18] X.F. Liao, L.Z. Zhao, J.S. Zhang, X.C. Zhong, D.L. Jiao, Z.W. Liu*, Enhanced formation of 2:14:1 phase in La-based rare earth-iron-boron permanent magnetic alloys by Nd substitution, Journal of Magnetism and Magnetic Materials, 464 (2018) 31-35

        [19] D.L. Jiao, X.C. Zhong, W.Q. Qiu, Z.W. Liu, G.Q. Zhang, Structure and electric conduction in pulsed laser-deposited ZnO thin films individually doped with N, P, or Na, Journal of Electronic Materials, 47 (7) (2018) 3521-3528

        [20] X.C. Zhong, X.L. Feng, J.H. Huang, Y.L. Huang, Z.W. Liu, R.V. Ramanujan, Influence of particle size on the mechanical properties and magnetocaloric effect of La0.8Ce0.2(Fe0.95Co0.05)11.8Si1.2/Sn composites, Journal of Magnetism and Magnetic Materials, 463 (2018) 23-27

        [21] K.P. Su, C.Y. Zhao, H.O. Wang, S. Huang, Z.W. Liu, D.X. Huo, Synthesis, structure and magnetic properties of CoFe2O4 ferrite nanoparticles, Materials Research Express, 5 (5) 2018, 056102

        [22] K.P. Su, H.O. Wang, S. Huang, X.X Chen, J.J. Liu, D.X. Huo, L. Ma, Z.W. Liu, Magnetic anisotropy and enhanced remanence in textured polycrystalline MnAlCuC-based flakes, Journal of Materials Science, 53 (13) (2018) 9823-9829

        [23] 张振扬,赵利忠,张家胜,钟喜春,刘仲武*La2Fe14BCe2Fe14B合金在快淬和热处理过程中相析出行为的比较,材料导报/Materials Review32 (4) (2018) 1271-1275

        [24] H.Y. Mo, X.C. Zhong, D.L. Jiao, Z.W. Liu, H. Zhang, W.Q. Qiu, R.V. Ramanujan, Table-like magnetocaloric effect and enhanced refrigerant capacity in crystalline Gd55Co35Mn10 alloy melt spun ribbons, Physics Letters A, 382 (2018) 1679–1684

        [25] Lizhong Zhao, Jiasheng Zhang, Gulzar Ahmed, Xuefeng Liao, Zhongwu Liu*, and Jean-Marc Greneche Understanding the element segregation and phase separation in the Ce-substituted Nd-(Fe,Co)-B based alloys, Scientific Reports, 8 (2018) 6826

        [26] Gulzar Ahmed, Muddasir Hanif, Shuzhi Hu, Lizhong Zhao, Jiasheng Zhang, Zhongwu Liu*, ZnO flowers and graphene oxide hybridization for efficient photocatalytic degradation of o-xylene, Materials Chemistry and Physics, 212 (2018) 479-489

        [27] Xiaoyan Sun, Zhongwu Liu, Hongya Yu, Zhigang Zheng, Dechang Zeng, Facile synthesis of BiFeO3 nanoparticles by modified microwave-assisted hydrothermal method as visible light driven photocatalysts, Materials Letters, 219 (2018) 225-228

        [28] Q. Zhou, W. Li, Y. Hong, L.Z. Zhao, X.C. Zhong, H.Y. Yu, L.L. Huang, Z.W. Liu*, Microstructure improvement related coercivity enhancement for sintered NdFeB magnet after optimized additional heat treatment, Journal of Rare Earths, 36 (2018) 379-394

        [29] Gulzar Ahmed, Muddasir Hanif, Khalid Mahmood, Rihui Yao, Honglong Ning, Dongling Jiao, Mingmei Wu, Javid Khan, Zhongwu Liu*, Lattice defects of ZnO and hybrids with GO: characterization, EPR and optoelectronic properties, AIP Advances, 8 (2018) 025218

        [30] W. Li, L.Z. Zhao, Q. Zhou, X.C. Zhong, Z.W. Liu*, Effects of grain boundary configuration and characteristics on the demagnetization process and coercivity of anisotropic NdFeB magnets, Computational Materials Science, 148 (2018) 38-45

        [31] 肖俊儒, 刘仲武*, 楼华山, 詹慧雄, Pr70Cu30晶界扩散改善烧结钕铁硼废料矫顽力的研究, 物理学报/Acta Phys. Sin. 67 (6) (2018) 067502

        [32] X.T. Dong, X.C. Zhong, D.R. Peng, J.H. Huang, H. Zhang, D.L. Jiao, Z.W. Liu, R.V. Ramanujan, La0.8Ce0.2(Fe0.95Co0.05)11.8Si1.2/Sn42Bi58 magnetocaloric composites prepared by low temperature hot pressing, Journal of Alloys and Compounds, 737 (2018) 568-574

        [33] 唐春梅,廖欣悦,余红雅,刘仲武*热氧化溅射镀铜膜制备CuO纳米棒及其光致发光特性,科学通报/Chinese Science Bulletin, 63(2) (2018) 224-231

        [34] M. Fang, C.M. Tang, Z.W. Liu*, Microwave-assisted hydrothermal synthesis of Cu-doped ZnO single crystal nanoparticles with modified photoluminescence and confirmed ferromagnetism, Journal of Electronic Materials, 47(2) (2018) 1390-1396

        [35] W. Li, Q. Zhou, L.Z. Zhao, Q.X. Wang, X.C. Zhong, Z.W. Liu*, Micromagnetic simulation of anisotropic diffusion in the grain boundary diffusion processed sintered Nd-Fe-B magnets, Journal of Magnetism and Magnetic Materials, 451 (2018) 704-709

        [36] X.C. Zhong, X.L Feng, J.W. Huang, H. Zhang, Y.L. Huang, Z.W. Liu, D.L. Jiao, Microstructure evolution and large magnetocaloric effect of La0.8Ce0.2(Fe0.95Co0.05)11.8Si1.2 alloy prepared by strip-casting and annealing, AIP Advances 8(4) (2018): 048102

        [37] X.C. Zhong, X.J. Guo, S.Y. Zou, H.Y. Yu. Z.W. Liu, Y.F. Zhang, K.X. Wang, Improving soft magnetic properties of Mn-Zn ferrite by rare earth ions doping, AIP Advances 8(4) (2018): 047807

        [38] X.C. Zhong, X.Y. Shen, H.Y. Mo, D.L. Jiao, Z.W. Liu, W.Q. Qiu, H. Zhang, R.V. Ramanujan, Table-like magnetocaloric effect and large refrigerant capacity in Gd65Mn25Si10-Gd composite materials for near room temperature refrigeration, Materials Today Communications, 14 (2018) 22–26

        [39] X.C. Zhong, H.Y. Mo, X.W. Wang, X.Y. Shen, X.L. Feng, D.L. Jiao, Z.W. Liu, Effects of crystallization treatment on the structure and magnetic properties of Gd65Fe25Zn10 alloy ribbons for magnetic refrigeration, Journal of Alloys and Compounds, 730 (2018) 493-500