论文

2018年

  器件与应用 

  第一单位: 

  1.        Li, H. Yang, X. Y. You, L. X. Wang, H. Q. Hu, P. Zhang, W. J. Wang, Z. Xie, X. M. Improving detection efficiency of superconducting nanowire single-photon detector using multilayer antireflection coating[J]. AIP Advances, 2018, 8(11): 115022. 

  2.        Chen, H. Liang, T. T. Kong, X. Y. Wang, Y. L. Wang, H. Zhang, G. F. Xie, X. M. Study on bias reversal readout working at suppressing low frequency noise of dc SQUID with different βc[J]. Physica C: Superconductivity and its Applications, 2018, 553: 61-64. EI收录 

  3.        Lv, C. L. Zhang, W. J. You, L. X. Hu, P. Wang, H. Q. Li, H. Zhang, C. J. Huang, J. Wang, Y. Yang, X. Y. Wang, Z. Xie, X. M. Improving maximum count rate of superconducting nanowire single-photon detector with small active area using series attenuator[J]. AIP Advances, 2018, 8(10): 105018. 

  4.        Zhang, X. Zhang, G. F. Ying, L. L .Xiong, W. Han, H. X. Wang, Y. L. Rong, L. L. Xie, X. M. Wang, Z. Fabrication and measurement of Nb-based SQUID magnetometer[J]. Physica C: Superconductivity and its Applications, 2018, 548: 1-4. EI收录 

  5.        You, L. X. Quan, J. Wang, Y. Ma, Y. X. Yang, X. Y. Liu, Y. J. Li, H. Li, J. G. Wang, J. Liang, J. T. Wang, Z.Xie, X. M. Superconducting nanowire single photon detection system for space applications[J]. Optics express, 2018, 26(3): 2965-2971. 

  6.        Zhang, L .You, L. X. Yang, X. Y. Wu, J. J. Lv, C. L. Guo, Q. Zhang, W. J. Li, H. Peng, W. Wang, Z. Xie, X. M. Hotspot relaxation time of NbN superconducting nanowire single-photon detectors on various substrates[J]. Scientific reports, 2018, 8(1): 1486. 

  7.        Huang, X. L. Dong, H. Qiu, Y. Li, B. Tao, Q. Zhang, Y. Krause, H. J. Offenhausser, A. Xie, X. M. Adaptive suppression of power line interference in ultra-low field magnetic resonance imaging in an unshielded environment[J]. Journal of Magnetic Resonance, 2018, 286: 52-59. 

  8.        Huang, J. Zhang, W. J. You, L. X. Zhang, C. J. Lv, C. L. Wang, Y. Liu, X. Y .Li, H. Wang, Z. High speed superconducting nanowire single-photon detector with nine interleaved nanowires[J]. Superconductor Science and Technology, 2018, 31(7): 074001. 

  9.        Li, F. Zhang, H. Zhang, L. Peng, W. Wang, Z. Ferromagnetic Josephson junctions based on epitaxial NbN/Ni60Cu40/NbN trilayer[J]. AIP Advances, 2018, 8(5): 055007. 

  10.    Wang, H. Yang, R. T. Li, G. Q. Wu, L. Liu, X. Y. Chen, L. Ren, J. Wang, Z. Inductance analysis of superconducting quantum interference devices with 3D nano-bridge junctions[J]. Superconductor Science and Technology, 2018, 31(5): 055015. 

  11.    Wu, X. L. Chen, L. Wang, H. Wu, L. Li, F. Liu, X. Y. Wang, Z. Fabrication of Three-Dimensional Nanobridge Junction Arrays for SQIFs[J]. IEEE Transactions on Applied Superconductivity, 2018, 28(4): 1-5. 

  12.    Xiong, W. Xu, W. N. Wu, Y. Li, G. Q. Ying, L. L. Peng, W. Ren, J. Wang, Z. Measurement of Specific Capacitance for Nb/Al–AlOx/Nb Josephson Junctions in Single-Flux Quantum Circuit Applications[J]. IEEE Transactions on Applied Superconductivity, 2018, 28(4): 1-5. 

  13.    Yang, X. Y. You, L. X. Zhang, L. Lv, C. L. Li, H. Liu, X. Y. Zhou, H. Wang, Z. Comparison of Superconducting Nanowire Single-Photon Detectors Made of NbTiN and NbN Thin Films[J]. IEEE Transactions on Applied Superconductivity, 2018, 28(1): 1-6. 

  14.    Zhang, L. You, L. X. Ying, L. L. Peng, W. Wang, Z. Characterization of surface oxidation layers on ultrathin NbTiN films[J]. Physica C: Superconductivity and its Applications, 2018, 545: 1-4. EI收录 

  15.    Zhang, Q. Y. Wang, H. W. Li, G. Q. Tang, X. Ren, J. Peng, W. Wang, Z. Geometric Dependence of Washer Inductance for NbN DC SQUIDs[J]. IEEE Transactions on Applied Superconductivity, 2018, 28(7): 1-4. 

  16.    Zhang, Q. Y. Wang, H. W. Tang, X. Xue, H. Peng, W. Wang, Z. Josephson Tunneling Behaviors in NbN/AlN/NbN Junctions with an Ultrathin NbN Film[J]. IEEE Transactions on Applied Superconductivity, 2018, 28(8): 1-4. 

  17.    Zhang, W. J. Yang, X. Y. Li, H. You, L. X. Lv, C. L. Zhang, L. Zhang, C. J. Liu, X. Y. Wang, Z. Xie, X. M. Fiber-coupled superconducting nanowire single-photon detectors integrated with a bandpass filter on the fiber end-face[J]. Superconductor Science and Technology, 2018, 31(3): 035012. 

  18.    Zhou, H. He, Y. H. Lv, C. L. You, L. X. Li, Z. H. Wu, G. Zhang, W. J. Zhang, L. Liu, X. Y. Yang, X. Y. Wang, Z. Photon-counting chirped amplitude modulation lidar system using superconducting nanowire single-photon detector at 1550-nm wavelength[J]. Chinese Physics B, 2018, 27(1): 018501. 

  19.    Li, H. Wu, A. M. You, L. X. Optical Beam Steering With an All-Silicon Particle Chain[J]. IEEE Photonics Journal, 2018, 10(5): 1-6. 

  20.    You, L. X. Miniaturizing superconducting nanowire single-photon detection systems[J]. Superconductor Science and Technology, 2018, 31(4): 040503. 

  21.    Chen, H. Yang, K. Lu, L. Kong, X. Y. Wang, H. Wu, J. Wang, Y. L. Research on Intelligent Control System of DC SQUID Magnetometer Parameters for Multi-channel System[J]. Journal of Low Temperature Physics, 2018, 192(1-2): 33-40. 

  22.    Yang, K. Wang, J. L. Kong, X. Y. Yang, R. H. Chen, H. Optimization of pick-up coils for weakly damped SQUID gradiometers[J]. Chinese Physics B, 2018, 27(5): 050701. 

  23.    李俊杰,伍俊,荣亮亮,谢晓明.基于GPS授时的高精度光泵磁力仪计频方法[J].仪表技术与传感器,2018(11):36-38.国内核心 

  合作发表: 

  24.    Liu, Y. Zhao, Q. Li, M. H. Guan, J. Y. Zhang, Y. B. Bai, B. Zhang, W. J. Liu, W. Z. Wu, C. Yuan, X. Li, H. Munro, W. J. Wang, Z. You, L. X. Zhang, J. Ma, X. F. Fan, J. Y. Zhang, Q. Pan, J. W. Device-independent quantum random-number generation[J]. Nature, 2018, 562(7728): 548.(一区,IF=41.577 

  25.    Abellan, C. Acin, A. Alarcon, A. Alibart, O. Andersen, C. K. Andreoli, F. Beckert, A. Beduini, F. A. Bendersky, A. Bentivegna, M. Bierhorst, P. Burchardt, D. Cabello, A. Carine, J. Carrasco, S. Carvacho, G. Cavalcanti, D. Chaves, R. Cortes-Vega, J. Cuevas, A. Delgado, A. de Riedmatten, H. Eichler, C. Farrera, P. Fuenzalida, J. Garcia-Matos, M. Garthoff, R. Gasparinetti, S. Gerrits, T. Jouneghani, F. G. Glancy, S. Gomez, E. S. Gonzalez, P. Guan, J. Y. Handsteiner, J. Heinsoo, J. Heinze, G. Hirschmann, A. Jimenez, O. Kaiser, F. Knill, E. Knoll, L. T. Krinner, S. Kurpiers, P. Larotonda, M. A. Larsson, J. A. Lenhard, A. Li, H. Li, M. H. Lima, G. Liu, B. Liu, Y. Grande, I. H. L. Lunghi, T. Ma, X. Magana-Loaiza, O. S. Magnard, P. Magnoni, A. Marti-Prieto, M. Martinez, D. Mataloni, P. Mattar, A. Mazzera, M. Mirin, R. P. Mitchell, M. W. Nam, S. Oppliger, M. Pan, J. W. Patel, R. B. Pryde, G. J. Rauch, D. Redeker, K. Rielander, D. Ringbauer, M. Roberson, T. Rosenfeld, W. Salathe, Y. Santodonato, L. Sauder, G. Scheidl, T. Schmiegelow, C. T. Sciarrino, F. Seri, A. Shalm, L. K. Shi, S. C. Slussarenko, S. Stevens, M. J. Tanzilli, S. Toledo, F. Tura, J. Ursin, R. Vergyris, P. Verma, V. B. Walter, T. Wallraff, A. Wang, Z. Weinfurter, H. Weston, M. M. White, A. G. Wu, C. Xavier, G. B. You, L. X.  Yuan, X. Zeilinger, A. Zhang, Q. Zhang, W. Zhong, J.Challenging local realism with human choices. Nature , 2018, 557(7704): 212-216. (一区,IF=41.577 

  26.    Zhong, H. S. Li, Y. Li, W. Peng, L. C. Su, Z. E. Hu, Y. He, Y. M. Ding, X. Zhang, W.J. Li, H. Zhang, L. Wang, Z. You, L. X. Wang, X. L. Jiang, X. Li, L. Chen, Y. A. Liu, N. L. Lu, C, Y, and Pan, J. W. 12-photon entanglement and scalable scattershot boson sampling with optimal entangled-photon pairs from parametric down-conversion[J]. Physical Review Letters, 2018, 121(25): 250505.(一区,IF=8.839 

  27.    Chen, C. Ding, X. Qin, J. He, Y. Luo, Y. H. Chen, M. C. Liu, C. Wang, X. L. Zhang, W. J. Li, H. You, L. X. Wang, Z. Wang, D. W. Sanders, B. C. Yu, C. Y. Pan, J. W. Observation of topologically protected edge states in a photonic two-dimensional quantum walk[J]. Physical Review Letters, 2018, 121(10): 100502. (一区,IF=8.839 

  28.    Li, M. H. Wu, C. Zhang, Y. B. Liu, W. Z. Bai, B. Liu, Y. Zhang, W. J. Zhao, Q. Li, H. Wang, Z. You, L. X. Munro, W. J. Yin, J. Zhang, J. Peng, C. Z. Ma, X. F. Zhang, Q. Fan, J. Y. Pan, J. W. Test of local realism into the past without detection and locality loopholes[J]. Physical Review Letters, 2018, 121(8): 080404.(一区,IF=8.839 

  29.    Liu, Y. Yuan, X. Li, M. H. Zhang, W. J. Zhao, Q. Zhong, J. Q. Cao, Y. Li, Y. H. Chen, L. K. Li, H. Peng, T. Y. Chen, Y. A. Peng, C. Z. Shi, S. C. Wang, Z. You, L. X. Ma, X. F. Fan, J. Y. Zhang, Q. Pan, J. W. High-speed device-independent quantum random number generation without a detection loophole[J]. Physical Review Letters, 2018, 120(1): 010503.(一区,IF=8.839 

  30.    Wang, H. Li, W. Jiang, X. He, Y. M. Li, Y. H. Ding, X. Chen, M. C. Qin, J. Peng, C. Z. Schneider, C. Kamp, M. Zhang, W. J. Li, H. You, L. X. Wang, Z. Dowling, J. P. Hofling, S. Lu, C. Y. Pan, J. W. Toward scalable boson sampling with photon loss[J]. Physical Review Letters, 2018, 120(23): 230502. (一区,IF=8.839 

  31.    Ji, Y. J. Li, Z. W. Rong, L. L. Xie, L. J. Xie, X. M. Du, S. Y. Lin, J. Wang, Y. Transmitting oscillation suppression of low-Tc SQUID TEM system based on RC serial and multi-parallel capacity snubber circuit[J]. Journal of Central South University, 2018, 25(9): 2076-2084. 

  32.    Yao, X. Liu, X. You, L. X. Wang, Z. Feng, X. Liu, F. Cui, K. Y. Huang, Y. D. Zhang, W. Quantum secure ghost imaging[J]. Physical Review A, 2018, 98(6): 063816. 

  33.    Guan, J. Y. Arrazola, J. M. Amiri, R. Zhang, W. J. Li, H. You, L. X. Wang, Z. Zhang, Q. Pan, J. W. Experimental preparation and verification of quantum money[J]. Physical Review A, 2018, 97(3): 032338. 

  34.    Li, X. Y. Zhu, F. Qin, L. Zhang, J. S. Ren, M. Z. An, J. M. Zhang, W. You, L. X. Wang, Z. Xu, X. S. Two-photon interferences on a silica-on-silicon chip with telecom-band photon pairs generated in a fiber[J]. Optics Express, 2018, 26(22): 29471-29481. 

  35.    Peng, Z. H. Ding, J. H. Zhou, Y. Ying, L. L. Wang, Z. Zhou, L. Kuang, L. M. Liu, Y. X. Astafiev, O. V. Tsai, J. S. Vacuum-induced Autler-Townes splitting in a superconducting artificial atom[J]. Physical Review A, 2018, 97(6): 063809. 

  36.    Yao, X. Zhang, W. Li, H. You, L. X. Wang, Z. Huang, Y. D. Long-distance thermal temporal ghost imaging over optical fibers[J]. Optics letters, 2018, 43(4): 759-762. 

  37.    Ohkubo, M. Kim, Y. H. You, L. X. Introduction to the special issue Focus on Low and High-T c Superconducting Sensors and Detectors[J]. Superconductor Science & Technology, 2018, 31(4):040201.  

  38.    Zheng, X. B. Zhao, Z. Y. Peng, W. Zhang, J. B. Zhao, H. W. Shi, W. Z. Tuning the terahertz trapped modes of conductively coupled Fano-resonators in reflectional and rotational symmetry[J]. Optical Materials Express, 2018, 8(1): 105-118. 

  39.    Cao, W. H. Chen, H. Liang, T. T. Li, J. J. Kong, X. Y. Sun, T. B. Zhong, Q. Wang, X. S. Wang, L. R. Zhong, Y. Fabrication and characterization of SQUIDs with Nb/NbnSi 1-x /Nb junctions[J]. IEEE Transactions on Applied Superconductivity, 2018. 

  40.    Ji, Y. J. Huang, T. Z. Huang, W. Y. Rong, L. L. Meshfree method in geophysical electromagnetic prospecting: The 2d magnetotelluric example[J]. International Journal of Computational Methods, 2018, 15(02): 

  41.    Li, B. Dong, H. Huang, X. L. Qiu, Y. Tao, Q. Zhu, J. M. Performance study of aluminum shielded room for ultra-low-field magnetic resonance imaging based on SQUID: Simulations and experiments[J]. Chinese Physics B, 2018, 27(2): 020701. 

  42.    Du S, Zhang Y, Pei Y, Jiang, Kun. Rong, L. L. Yin, C. C. Ji, Y. J. Xie, X. M. Study of transient electromagnetic method measurements using a superconducting quantum interference device as B sensor receiver in polarizable survey area[J]. Geophysics, 2018, 83(2): E111-E116.EI收录 

    

  材料与物理研究 

  第一单位: 

  43.    Huang, T. Yang, S. W. He, P. Sun, J. Zhang, S. Li, D. D. Meng, Y. Zhou, J. S. Tang, H. X. Liang, J. R. Ding, G. Q. Xie, X. M. Phase-Separation-Induced PVDF/Graphene Coating on Fabrics toward Flexible Piezoelectric Sensors[J]. ACS applied materials & interfaces, 2018, 10(36): 30732-30740.一区,IF=8.097 

  44.    Liu, Z. H. Lou, R. Guo, P. J. Wang, Q. Sun, S. S. Li, C. H. Thirupathaiah, S. Fedorov, A. Shen, D. W. Liu, K. Lei, H. C. Wang, S. C. Experimental Observation of Dirac Nodal Links in Centrosymmetric Semimetal TiB2[J]. Physical Review X, 2018, 8(3): 031044.一区,IF=14.385 

  45.    Ge, X. M. Zhang, Y. H. Chen, L. X. Zheng, Y. H. Chen, Z. Y. Liang, Y. J. Hu, S. K .Li, J. Sui, Y. P. Yu, G. H. Jin, Z. Liu, X. Y. Mechanism of SiOx particles formation during CVD graphene growth on Cu substrates[J]. Carbon, 2018, 139: 989-998.一区,IF=7.082 

  46.    Wang, G. Zhang, M. Chen, D. Guo, Q. L. Feng, X. F. Niu, T. C. Liu, X. S. Li, A. Lai, J. W.Sun, D.Liao, Z. M. Wang, Y. Q. Chu, P. K. Ding, G. Q. Xie, X. M. Di, Z. F. Wang, X.. Seamless lateral graphene p–n junctions formed by selective in situ doping for high-performance photodetectors[J]. Nature Communications, 2018, 9.综合二区,IF=12.353 

  47.    Sun, Y. B. Xiao, H. Zhang, M. Xue, Z. Y. Mei, Y. F. Xie, X. M. Hu, T. Di, Z. F. Wang, X. Double quantum criticality in superconducting tin arrays-graphene hybrid[J]. Nature Communications, 2018, 9(1): 2159. 综合二区,IF=12.353 

  48.   Ma, Y. H. Mu, G. Hu, T. Zhu, Z. W. Li, Z. J. Li, W. Ji, Q. C. Zhang, X. Wang, L. L. Xie, X. M.Magnetic-field-induced metal-insulator quantum phase transition in CaFeAsF near the quantum limit[J].SCIENCE CHINA Physics, Mechanics & Astronomy, 2018, 61(12): 127408. 

  49.    Sun, Y. B. Zhang, M. Dong, L. X. Wang, G. F. Xie, X. M. Wang, X. Hu, T. Di, Z. F. Weak localization behavior observed in graphene grown on germanium substrate[J]. AIP Advances, 2018, 8(4): 045214. 

  50.    He, C. Y. Bu, X. M. Yang, S. W. He, P. Ding, G. Q. Xie, X. M. Core-shell SrTiO3/graphene structure by chemical vapor deposition for enhanced photocatalytic performance[J]. Applied Surface Science, 2018, 436: 373-381. EI收录 

  51.    Tian, S. Y. Zhu, G. N. Tang, Y. P. Xie, X. H. Wang, Q. Ma, Y. F. Ding, G. Q. Xie, X. M. Three-dimensional cross-linking composite of graphene, carbon nanotubes and Si nanoparticles for lithium ion battery anode[J]. Nanotechnology, 2018, 29(12): 125603. 

  52.    Wang, H. S. Tian, S. Y. Yang, S. W. Wang, G. You, X. F. Xu, L. X. Li, Q. T. He, P. Ding, G. Q. Liu, Z. Xie, X. M. Anode coverage for enhanced electrochemical oxidation: a green and efficient strategy towards water-dispersible graphene[J]. Green Chemistry, 2018, 20(6): 1306-1315. 

  53.    Huang, H. G. Yang, S. W. Li, Q. T. Yang, Y. C. Wang, G. You, X. F. Mao, B. H. Wang, H. S. Ma, Y. He, P. Liu, Z. Ding, G. Q. Xie, X. M. Electrochemical Cutting in Weak Aqueous Electrolytes: The Strategy for Efficient and Controllable Preparation of Graphene Quantum Dots[J]. Langmuir, 2017, 34(1): 250-258. 

  54.    Fan, C. C. Liu, J. S. Zhang, K. L. Liu, W. L. Lu, X. L. Liu, Z. T. Wu, D. Liu, Z. H. Shen, D. W. You, L. X. Two Gaps in Semiconducting EuSbTe3 Studied by Angle-Resolved Photoemission Spectroscopy[J]. Chinese Physics Letters, 2018, 35(7): 077104. 

  55.    Liu, Q. Han, Y. Cai, J. Crumlin, E. J. Li, Y. M. Liu, Z. CO2 Activation on Cobalt Surface in the Presence of H2O: An Ambient-Pressure X-ray Photoelectron Spectroscopy Study[J]. Catalysis Letters, 2018: 1-6. 

  56.    Liu, Q. Han, Y. Cao, Y. J. Li, X. B. Huang, W. G. Yu, Y. Yang, F. Bao, X. H. Li, Y. M. Liu, Z. In-situ APXPS and STM Study of the Activation of H2 on ZnO (1010) Surface[J]. Acta Physico-Chimica Sinica, 2018, 34(12): 1366-1372. 

  57.    Mao, B. H. Dai, Y. Cai, J. Li, Q. T. Jiang, C. G. Li, Y. M. Xie, J. Y. Liu, Z. Operando Ambient Pressure X-ray Photoelectron Spectroscopy Studies of Sodium–Oxygen Redox Reactions[J]. Topics in Catalysis, 2018, 61(20): 2123-2128. 

  58.    Chen, Z. Y. Zhang, Y. H. Ge, X. M. Sui, Y. P. Liang, Y. J. Hu, S. K. Li, J. Yu, G. H. Thermal-assisted direct transfer of graphene onto flexible substrates[J]. Materials Letters, 2018, 229: 252-255. 

  59.    Ge, X. M. Zhang, Y. H. Chen, Z. Y. Liang, Y. J. Hu, S. K. Sui, Y. P. Yu, G. H. Peng, S. G. Jin, Z. Liu, X. Y. Effects of carbon-based impurities on graphene growth[J]. Physical Chemistry Chemical Physics, 2018. 

  60.    Zhang, Y. H. Chen, Z. Y. Ge, X. M. Liang, Y. J. Hu, S. K. Sui, Y. P. Yu, G. H. A waterless cleaning method of the Cu foil for CVD graphene growth[J]. Materials Letters, 2018, 211: 258-260. 

  61.    Sui, Y. P. Chen, Z. Y. Zhang, Y. H. Hu, S. K. Liang, Y. J. Ge, X. M. Li, J. Yu, G. H. Peng, S. G. Jin, Z. Liu, X. Y. Growth promotion of vertical graphene on SiO2/Si by Ar plasma process in plasma-enhanced chemical vapor deposition[J]. RSC Advances, 2018, 8(34): 18757-18761. 

  62.    Wang, M. Zhang, D. J. Jiang, W. X. Li, Z. J. Han, C. Q. Jia, J. F. Li, J. X. Qiao, S. Qian, D. Tian, H. Gao, B. Growth and structural characterisation of Sr-doped Bi2Se3thin films[J]. Scientific reports, 2018, 8(1): 2192. 

  63.    Li, Z. J. Wang, M. Zhang, D. J. Feng,N. Jiang, W. X. Han, C. Q. Chen, W. J. Ye, M. Gao, C. L. Jia, J. F. Li, J. X. Qiao, S. Qian, D. Xu, B. Tian, H. Gao, B. Possible structural origin of superconductivity in Sr-doped Bi2Se3[J]. Physical Review Materials, 2018, 2(1): 014201. 

  64.    Xu, A. L. He, P. Huang, T. Li, J. R. Hu, X. R.Xiang, P. C. Chen, D. Yang, S. W. Wang, G. Ding, G. Q. Selective supramolecular interaction of ethylenediamine functionalized graphene quantum dots: Ultra-sensitive photoluminescence detection for nickel ion in vitro[J]. Synthetic Metals, 2018, 244: 106-112. EI收录 

  65.    Bu, X. M. Yang, S. W. Bu, Y. He, P. Yang, Y. Wang, G. Li, H. Wang, P. Wang, X. Y. Ding, G. Q. Yang, J. Xie, X. M. Highly Active Black TiO2/Ndoped Graphene Quantum Dots Nanocomposites For Sunlight Driven Photocatalytic Sewage Treatment[J]. ChemistrySelect, 2018, 3(1): 201-206. 

  66.    Zhang, K. L. Fan, C. C. Liu, W. L. Wu, Y. F. Lu, X. L. Liu, Z. T. Liu, J. S. Liu, Z. H. Shen, D. W. Growth of high-quality perovskite (110)-SrIrO3 thin films using reactive molecular beam epitaxy[J]. Chinese Physics B, 2018, 27(8): 088103. 

  67.    Wang, H. S. Deng, L. W. Li, L. Sun, Q. J. Xie, H. Wang, H. M. Electro-statically controllable graphene local heater[J]. Chinese Physics B, 2018, 27(3): 037203. 

  68.    牟刚, 马永辉. 铁基超导1111体系CaFeAsF 的单晶生长和物性研究[J]. 物理学报, 2018, 67(17): 177401-177401.综述性论文 

  合作发表: 

  69.   Liu, Y. F. Wu, T. R. Yin, Y. L. Zhang, X. F. Yu, Q. K. Searles, D. J. Ding, F. Yuan, Q. H. Xie, X. M.How Low Nucleation Density of Graphene on CuNi Alloy is Achieved[J]. Advanced Science, 2018: 1700961.一区,IF=12.441 

  70.    Peng, S. A. Jin, Z. Zhang, D. Y. Shi, J. Y. Niu, J. B. Huang, X. N. Yao, Y. Zhang, Y. H. Yu, G. H. How Do Contact and Channel Contribute to the Dirac Points in Graphene FieldEffect Transistors?[J]. Advanced Electronic Materials, 2018, 4(8): 1800158.一区,IF=5.466 

  71.    Li, J. R. Guo, Q. L. Zhang, N. Yang, S. W. Liu, Z. D. Xu, A. L. Tao, W. D. Wang, G. Chen, D. Ding, G. Q. Direct integration of polycrystalline graphene on silicon as a photodetector via plasma-assisted chemical vapor deposition[J]. Journal of Materials Chemistry C, 2018, 6(36): 9682-9690.一区,IF=5.976 

  72.    Wang, G. Guo, G. L. Chen, D. Liu, Z. D. Zheng, X. H. Xu, A. L.Yang, S. W. Ding, G. Q. Facile and highly effective synthesis of controllable lattice sulfur-doped graphene quantum dots via hydrothermal treatment of durian[J]. ACS applied materials & interfaces, 2018, 10(6): 5750-5759. 一区,IF=8.097 

  73.    Yao, Q. Shen, D. W. Wen, C. H. P. Hua, C. Q. Zhang, L. Q. Wang, N. Z. Niu, X. H. Chen, Q. Y. Dudin, P. Lu, Y. H. Zheng, Y. Chen, X. H. Wan, X. G.Feng, D. L. Charge Transfer Effects in Naturally Occurring van der Waals Heterostructures (PbSe)1.16(TiSe2)m(m=1,2)[J]. Physical Review Letters, 2018, 120(10): 106401. (一区,IF=8.839 

  74.    Wang, C. L. Wu, X. Ma, Y. H. Mu, G. Li, Y. Y. Luo, C. Xu, H. J. Zhang, Y. Y. Yang, J. Tang, X. D. Zhang, J. Bao, W. Z. Duan, C. G. Metallic few-layered VSe2nanosheets: high two-dimensional conductivity for flexible in-plane solid-state supercapacitors[J]. Journal of Materials Chemistry A, 2018, 6(18): 8299-8306.一区,IF=9.931 

  75.   Terashima, T. Hirose, H. T. Graf, D. Ma, Y. H. Mu, G. Hu, T. Suzuki, K. Uji, S. Ikeda, H.Fermi surface with Dirac fermions in CaFeAsF determined via quantum oscillation measurements[J].Physical Review X, 2018, 8(1): 011014. 一区,IF=14.385 

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