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[1] Y. Zhang, J. Qiao, S. Gao, F. Hu, D. He, B. Wu, Z. Yang, B. Xu, Y. Li, Y. Shi, W. Ji, P. Wang, X. Wang, M. Xiao, H. Xu, J.-B. Xu, X. Wang, Probing Carrier Transport and Structure-Property Relationship of Highly Ordered Organic Semiconductors at the Two-Dimensional Limit, Physical Review Letters, 116 (2016).[2] S. Zhou, J. Wang, X. Chang, S. Wang, B. Qian, Z. Han, Q. Xu, J. Du, P. Wang, S. Dong, Magnetoelectricity coupled exchange bias in BaMnF4, Scientific Reports, 5 (2015) 18392.[3] Q. Xu, Z. Wu, J. Hong, X. Chang, X. Li, S. Yan, P. Wang, Structural and chemical characterization of novel NixZn1−xGa2O4 nanocatalysts at atomic resolution, Applied Surface Science, 353 (2015) 419-424.[4] Q. Xu, Y. Sheng, M. Khalid, Y. Cao, Y. Wang, X. Qiu, W. Zhang, M. He, S. Wang, S. Zhou, Q. Li, D. Wu, Y. Zhai, W. Liu, P. Wang, Y.B. Xu, J. Du, Magnetic interactions in BiFe(0).(5)Mn(0).(5)O(3) films and BiFeO(3)/BiMnO(3) superlattices, Sci Rep, 5 (2015) 9093.[5] P. Sun, S. Qin, X. Wang, R. An, Q. Xu, X. Cui, Y. Sun, S. Wang, P. Wang, Q. Fan, Off-stoichiometric Li3-3xV2+x(PO4)3/C as cathode materials for high-performance lithium-ion batteries, Journal of Power Sources, 293 (2015) 922-928.[6] J. Ruan, X. Qiu, Z. Yuan, D. Ji, P. Wang, A. Li, D. Wu, Improved memory functions in multiferroic tunnel junctions with a dielectric/ferroelectric composite barrier, Applied Physics Letters, 107 (2015) 232902.[7] K. Lu, Q. Huang, P. Wang, L. Mao, Physicochemical Changes of Few-Layer Graphene in Peroxidase-Catalyzed Reactions: Characterization and Potential Ecological Effects, Environ Sci Technol, 49 (2015) 8558-8565.[8] F. Fei, Z. Wei, Q. Wang, P. Lu, S. Wang, Y. Qin, D. Pan, B. Zhao, X. Wang, J. Sun, X. Wang, P. Wang, J. Wan, J. Zhou, M. Han, F. Song, B. Wang, G. Wang, Solvothermal Synthesis of Lateral Heterojunction Sb2Te3/Bi2Te3 Nanoplates, Nano Lett, 15 (2015) 5905-5911.[9] A.J. D’Alfonso, A.V. Martin, A.J. Morgan, P. Wang, H. Sawada, A.I. Kirkland, L.J. Allen, Generalized Fourier Holography Meets Coherent Diffractive Imaging, Microscopy Today, 23 (2015) 28-33.[10] X. Chang, S. Wang, Q. Qi, M.A. Gondal, S.G. Rashid, D. Yang, M.A. Dastageer, K. Shen, Q. Xu, P. Wang, Constrained growth of ultrasmall BiOCl nanodiscs with a low percentage of exposed {001} facets and their enhanced photoreactivity under visible light irradiation, Applied Catalysis B: Environmental, 176-177 (2015) 201-211.[11] X. Chang, S. Wang, Q. Qi, M.A. Gondal, S.G. Rashid, S. Gao, D. Yang, K. Shen, Q. Xu, P. Wang, Insights into the growth of bismuth nanoparticles on 2D structured BiOCl photocatalysts: an in situ TEM investigation, Dalton Trans, (2015).[12] L. Xie, P. Wang, X.Q. Pan, A perturbation theory study of electron vortices in electromagnetic fields: the case of infinitely long line charge and magnetic dipole, Micron, 63 (2014) 9-14.[13] L.L. Fan, S. Chen, Z.L. Luo, Q.H. Liu, Y.F. Wu, L. Song, D.X. Ji, P. Wang, W.S. Chu, C. Gao, C.W. Zou, Z.Y. Wu, Strain dynamics of ultrathin VO(2) film grown on TiO(2) (001) and the associated phase transition modulation, Nano Lett, 14 (2014) 4036-4043.[14] A.J. D'Alfonso, A.J. Morgan, A.W.C. Yan, P. Wang, H. Sawada, A.I. Kirkland, L.J. Allen, Deterministic electron ptychography at atomic resolution, Physical Review B, 89 (2014).[15] J. Benson, Q. Xu, P. Wang, Y. Shen, L. Sun, T. Wang, M. Li, P. Papakonstantinou, Tuning the catalytic activity of graphene nanosheets for oxygen reduction reaction via size and thickness reduction, ACS Appl Mater Interfaces, 6 (2014) 19726-19736.[16] P. Wang, A.J. D'Alfonso, A. Hashimoto, A.J. Morgan, M. Takeguchi, K. Mitsuishi, M. Shimojo, A.I. Kirkland, L.J. Allen, P.D. Nellist, Contrast in atomically resolved EF-SCEM imaging, Ultramicroscopy, 134 (2013) 185-192.[17] A. Shmeliov, J.S. Kim, K.B. Borisenko, P. Wang, E. Okunishi, M. Shannon, A.I. Kirkland, P.D. Nellist, V. Nicolosi, Impurity induced non-bulk stacking in chemically exfoliated h-BN nanosheets, Nanoscale, 5 (2013) 2290-2294.[18] A.J. Morgan, A.J. D’Alfonso, P. Wang, H. Sawada, A.I. Kirkland, L.J. Allen, Fast deterministic single-exposure coherent diffractive imaging at sub-Ångström resolution, Physical Review B, 87 (2013).[19] X. Zhang, M. Takeguchi, A. Hashimoto, K. Mitsuishi, P. Wang, P.D. Nellist, A.I. Kirkland, M. Tezuka, M. Shimojo, Three-dimensional observation of SiO2 hollow spheres with a double-shell structure using aberration-corrected scanning confocal electron microscopy, J Electron Microsc (Tokyo), 61 (2012) 159-169.[20] P. Wang, A.I. Kirkland, P.D. Nellist, A.J. D’Alfonso, A.J. Morgan, L.J. Allen, A. Hashimoto, M. Takeguchi, K. Mitsuishi, M. Shimojo, Current Developments of Scanning Confocal Electron Microscopy in a Double Aberration-Corrected Transmission Electron Microscope, Microscopy and Microanalysis, 18 (2012) 532-533.标签: 南京大学 现代工程与应用科学学院
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