研究领域
自旋电子学材料与器件、碳材料、磁性半导体、纳米结构与纳米材料、材料的电子显微学、计算材料科学
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1) Zhaochu Luo,Xiaozhong Zhang, et al., Silicon-Based Current-Controlled Reconfigurable Magnetoresistance Logic Combined with Non-Volatile Memory,Adv. Func. Mater. online published on 10 NOV 2014. (DOI: 10.1002/adfm.201402955)
2) An Bao , Hong-Shuai Tao, Hai-Di Liu, XiaoZhong Zhang & Wu-Ming Liu, Quantum magnetic phase transition in square-octagon lattice, Scientific Reports, 4 6918 (2014)
3) Chen J, Zhang X, et al., Enhanced low field magnetoresistance in germanium and silicon-diode combined device at room temperature. Appl. Phys. Lett. 105, 193508 (2014).
4) Jimin Wang, Xiaozhong Zhang, et al., Magnetic field controllable nonvolatile resistive switching effect in silicon device, Appl. Phys. Lett. 104, 243511. ( 2014)
5) Rizwan Ur Rehman, Xiaozhong Zhang, ChengyueXiong, Yi Yu, Semiconducting amorphous carbon thin films for transparent conducting electrodes, Carbon 76 (2014) 64-70.
6) X.Z. Zhang, C.H. Wan, X.L. Gao, J.M. Wang,& X.Y. Tan, Low-voltage magnetoresistance in silicon Reply, Nature 501, E1-E2 (2013).
7) Y. Yu, X. Zhang, Y. G. Zhao, N. Jiang, R. Yu, J. W. Wang, C. Fan, X. F. Sun, J. Zhu. Atomic-scale study of topological vortex-like domain pattern in multiferroic hexagonal manganites. Appl. Phys. Lett. 103, 032901 (2013).
8) Jimin Wang, Xiaozhong Zhang, Caihua Wan, Johan Vanacken,Victor V. Moshchalkov,Magnetotransport properties of undoped amorphous carbonFilms, CARBON, 59 (2013) 278-282
9) C. H. Wan , X. Z. Zhang, X. L. Gao, J. M. Wang & X. Y. Tan, Geometrical enhancement of low-field magnetoresistance in silicon, Nature 477, 304-307 (2011).
10) L H Wu, X Zhang, J Vanacken, N Schildermans, C H Wan, and V VMoshchalkov, Room-temperature Non-saturating Magnetoresistance of Intrinsic Bulk Silicon in High Pulsed Magnetic Fields, Appl. Phys. Lett. 98 (2011) 112113.
11) Chengguo Zhang, X. Zhang, Yonghao Sun, et al., Atomistic simulation of Y-site substitution in multiferroic h-YMnO3, Phys. Rev. B 83(2011)054104.
12) XiliGao, Xiaozhong Zhang, Caihua Wan, Xin Zhang, Lihua Wu, and Xinyu Tan, Abnormal humindity-dependent electrical properties of amorphous carbon/silicon, Appl. Phys. Lett. 97(2010)212101.
13) Su Li and Xiaozhong Zhang, Sb2O3-induced tapered ZnO nanowire arrays: the kinetics of radial growth and morphology control, J. Phys. Chem. C, 114 (2010) 10379–10385.
14) Caihua Wan, Xiaozhong Zhang,Xin Zhang, XiliGao and Xinyu Tan, Photoconductivity of iron doped amorphous carbon films on n-type silicon substrates, Appl. Phys. Lett. 95 (2009). 022105
15) Xin Zhang, Xiaozhong Zhang, Caihua Wan and LihuaWu , A bias voltage dependent positive magnetoresistance in Cox–C1-x /Si heterostructure, Appl. Phys. Lett. 95 (2009) 022503.
16) F.L Tang and X. Zhang, Hole distribution and local structure in La2 - xSrxCuO4, Appl. Phys. Lett. 90, (2007) 142501.
17) X. Zhang, W.G. Yang, L. N. Zhang, J. J. Qi and J. Yuan , Correlation of Bonding of Grain Boundary and Fracture Mode with Local Electronic Structure in Steels by Electron Energy Loss Spectroscopy, Appl. Phys. Lett.90 (2007) 171905.
18) F.L. Tang and X. Zhang, Atomic distribution and local structure in charge-ordered La1/3Ca2/3MnO3, Phys. Rev. B 73 (2006) 144401
19) Lisheng Wang, X. Zhang, Songqing Zhao, Junjie Qi, Guoyuan Zhou , Y. L. Zhou, Synthesis of well aligned ZnO nanowires using simple PVD approach on c-axis oriented ZnO thin films without catalysts, Appl. Phys. Lett. 86 (2005) 024108.
20) Xue QZ, Zhang X, Anomalous electrical transport properties of amorphous carbon films on Si substrates, Carbon 43 (2005) 760-764.