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张锦英

教授 博士生导师 硕士生导师

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  • 学历: 博士研究生毕业
  • 学位: 博士

-2020

当前位置: 中文主页 - 论文---Publications - -2020

 39.   D. Zhao,* Q. Zhao, J. Zhang, Y. Liu, S. Guo,* Hierarchical Nanorods Constructed by Vertical WS2 Nanosheets on Carbon Nanotube Cores with Enhanced Lithium Storage Properties, ChemistrySelect, 2019, 4(43), 12779-12784.

38.      H. Huang, L. Zhang, B. Xiao, Y. Cheng, J. Zhang*, The structure and electronic properties of crimson phosphorus, Appl. Phys. Lett., 2019, 115, 163101. doi: 10.1063/1.5118860.

37.      C. Fu, H. Huang, J. Zhang*, one-step path to highly crystalline multi-walled carbon nanotubes with large inner diameters, IOP Conf. Ser.: Mater. Sci. Eng., 2019, 479, 012112.

 

36.  J. Huang, X. Zhao, H. Huang, Z. Wang, J. Li, Z. Li, X. Ji, Y. Cheng, J. Zhang,* Scalable production of few layered neat graphene by soft ball-microsphere rolling transfer, Carbon,, 2019, 154, 402-409. https://doi.org/10.1016/j.carbon.2019.08.026

 

35.   J. Huang, J. Chu, Z. Wang, J. Zhang,* A. Yang,* X. Li, C. Gao, H. Huang, X.Wang, Y. Cheng, M. Rong, Chemisorption of NO2 to MoS2 Nanostructures and its effects for MoS2 Sensors, ChemNanoMat. 2019, 5, 1123-1130.http://dx.doi.org/10.1002/cnma.201900350

34.  H. Huang, J. Zhang,* Y. Zhang, C. Fu, J. Huang, Y. Cheng, C. Niu, X. Zhao, H. Shinohara, Rock-salt and helix structures of silver iodides under ambient conditions, Natl. Sci. Rev., 2019, 6(4), 767-774. https://doi.org/10.1093/nsr/nwz041

 

Reports: Eurekalert   科学网

33.  Z Liu, J Huang, X. Zhao, H. Huang, C. Fu, Z. Li, Y. Cheng, C. Niu, J. Zhang,* A Facile Path to GrapheneWrapped PolydopamineEntwined Silicon Nanoparticles with High Electrochemical Performance, ChemPlusChem, 2019, 84(2), 203-209.     

Report: Chemistryviews

32.   D. Zhao, L. Zhang, C. Fu, J. Zhang,* C. Niu, The lithium and sodium storage performances of phosphorus and its hierarchical structure, Nano Res., 2019, 12(1), 1-17. DOI:10.1007/s12274-018-2206-6

31.  C. Han, R. Wang, A. Pan, W. Wang, H. Huang, J. Zhang,* C. Niu, Morphology-directing transformation of carbon nanotubes under the irradiation of pulsed laser with different pulse duration, Opt Laser Technol., 2019, 109, 27-32.

30. T. Mondal1, A. Tripathi1, A. Tiwari,* J. Zhang, T. Shripathi, and H. Shinohara, Temperature and pressure induced Raman studies of C60 oxide, J. Appl. Phys.,2018, 124, 195105.

29.  Y. Jiang, D. Wang, D. Xu, J. Zhang, Z. Wang,* Dimerization of Metallofullerenes to Obtain Materials with Enhanced Nonlinear Optical Properties, ChemPhysChem, 2018, 19, 2995-3000. DOI:10.1002/cphc.201800797

28.  Z. Liu, D. Xiao, H. Huang, J. Zhang* and C. Niu, Carve Designs of MoS2 Nanostructures by Controlling 3D MoS2 Nanomasks, Inorg. Chem. Front., 2018, 5, 2598-2604.  DOI: 10.1039/c8qi00788h.

 

27.     D. Zhao, L. Zhang, C. Fu, J. Huang, H. Huang, Z. Li, J. Zhang,* C. Niu, Hierarchical phosphorus hybrids with carbon nanotube veins and black phosphorus skins: Structure and lithium storage properties, Carbon, 2018, 139, 1057-1062.

26.     X. Li, J. Zhang,* Z. Liu, C. Fu, C. Niu, WS2 nanoflowers on carbon nanotube vines with enhanced electrochemical performances for lithium and sodium-ion batteries, J. Alloy. Compd.  2018, 766, 656-662. DOI: 10.1016/j.jallcom.2018.07.008.

25.     D. Zhao, J. Zhang,* C. Fu, J. Huang, D. Xiao, M. M. F. Yuen, C. Niu, Enhanced Cycling Stability of Ring-Shaped Phosphorus inside Multi-Walled Carbon Nanotubes as Anodes for Lithium-Ion Batteries, J. Mater. Chem. A2018, 6, 2540-2548. DOI: 10.1039/C7TA07683E.

24.      J. Zhang,* R. Wang, X. Zhu, A. Pan, C. Han, X. Li, D. Zhao, C. Ma, W. Wang, H. Su,* C. Niu, Pseudo-topotactic conversion of carbon nanotubes to T-carbon nanowires in methanol under irradiation of picosecond laser, Nat. Commun.2017, 8, 683. DOI:10.1038/s41467-017-00817-9

Reports:科学网   材料牛   国家自然科学基金网   西安交通大学新闻网    

23.      D. Zhao, B. Li, J. Zhang,* X. Li, D. Xiao, C. Fu, L. Zhang, Z. Li, J. Li, D. Cao, C. Niu,* A Hierarchical Phosphorus-Nanobarbed Nanowire HybridIts Structure and Electrochemical Properties, Nano Lett., 2017, 17(6), 3376-3382.

22.      T. Mondal, A. Tripathi, J. Zhang, T. Shripathi, H. Shinohara, A. Tiwari,* Thermal Conductivity of M@C82 [M = Dy, Gd] Thin Films, J. Phys. Chem. C, 2017, 121 (6), 3642–3647.

21.      J. Zhang,* D. Zhao, D. Xiao, C. Ma, H. Du, X. Li, L. Zhang, J. Huang, H. Huang, C-L. Jia,* D. Tománek,* C. Niu, Assembly of Ring-shaped Phosphorus within Carbon Nanotube Nanoreactors, Angew. Chem. Int. Ed. 2017, 56(7), 1850-1854.

20.      D. Xiao, J. Zhang,* X. Li, D. Zhao, H. Huang, J. Huang, D. Cao, Z. Li, C. Niu, Nanocarved MoS2-MoO2 Hybrids Fabricated Using in Situ Grown MoS2 as Nanomasks, Acs Nano, 2016, 10(10), 9509-9515.

19.      Y. Jiang, H. Wang,* B. Li, Y. Zhang, C. Xie, J. Zhang, G. Chen, C. Niu*, Interfacial engineering of Si/multi-walled carbon nanotube nanocomposites towards enhanced lithium storage performance, Carbon, 2016, 107, 600-606.

18.      Y. Jiang, Z. Li, B. Li, J. Zhang, C. Niu,* Ni3Si2 nanowires grown in situ on Ni foam for high-performance supercapacitors, J. Power Source, 2016, 320, 13-19.

17.      X. Li, J. Zhang,* R. Wang, H. Huang, C. Xie, Z. Li, J. Li, C. Niu*, In Situ Synthesis of Carbon Nanotube Hybrids with Alternate MoC and MoS2 to Enhance the Electrochemical Activities of MoS2, Nano Lett.,2015, 15, 5268-5272.

16.      T. Mondal, A. Tripathi, J. Zhang, V. Sathe, T. Shripathi, H. Shinohara, A. Tiwari,* Temperature-Dependent Raman Study of Gd@C82, J. Phys. Chem. C, 2015, 119, 12698-12702.

15.  X. Li, Z. Wang, J. Zhang,* C. Xie, B. Li, R. Wang, J. Li, C. Niu, Carbon nanotube hybrids with MoS2 and WS2 synthesized with control of crystal structure and morphology, Carbon, 2015, 85, 168-175.

14.  Y. Sun, R. Kitaura, J. Zhang, Y. Miyata, H. Shinohara, Metal catalyst-free flow chemical vapor deposition growth of single-wall carbon nanotubes using C60 colloidal solutions, Carbon, 2014, 68, 80-86.

13.  Z. Wang, Y. Nakanishi, S. Noda, H. Niwa, J. Zhang, R. Kitaura, H. Shinohara,* Missing Small-Bandgap Metallofullerenes: Their Isolation and Electronic Properties, Angew. Chem. Int. Ed., 2013, 52, 11770-11774.

12.  J. Zhang, F. Zhou, Y. Miyata, R. Kitaura, H. Su and H. Shinohara,* Chirality Selective Growth and Extraction of Single-Wall Carbon Nanotubes via Fullerene Nano-Peapods, RSC. Adv., 2013, 3, 16954-16957.

11.  J. Zhang, Z. Zhu, Y. Feng, H. Ishiwata, Y. Miyata, R. Kitaura, J. E. P. Dahl, R. M. K. Carlson, N. A. Fokina, P. R. Schreiner, D. Tomanek, H. Shinohara,* Evidence of Diamond Nanowires Formed inside Carbon Nanotubes from Diamantane Dicarboxylic Acid, Angew. Chem. Int. Ed., 2013, 52, 3717-3721.

Reports: Spie  Willey analytical science   Chemistryviews    Nanowerk    Azo Nano    Advanced Science News

10.  J. Zhang, Y. Feng, H. Ishiwata, Y. Miyata, R. Kitaura, J. E. P. Dahl, H. Shinohara,* D. Tomanek,* Synthesis and Transformation of Linear Adamantane Assemblies inside Carbon Nanotubes, ACS Nano, 2012, 6, 8674-8683.

9.  J. Zhang, Y. Miyata, R. Kitaura and H. Shinohara. Preferential synthesis and isolation of (6,5) single-wall nanotubes from one-dimensional C60 coalescence, Nanoscale, 2011, 3, 4190-4194.

8.  J. Zhang, K. Porfyrakis, J. J. L. Morton, M. R. Sambrook, J. Harmer, A. Ardavan, G. A. D. Briggs. Photoisomerization of a fullerene dimer, J. Phys. Chem. C, 2008, 112, 2802.

7.  K. Porfyrakis, M. R. Sambrook, T. J. Hingston, J. Zhang, A. Ardavan, G. A. D. Briggs. Synthesis of fullerene dimers with controllable length, Phys. Status Solidi B, 2007, 244, 3849.

6.  G. W. Morley, H. v. Tol, A. Ardavan, K. Porfyrakis, J. Zhang, G. A. D. Briggs. Efficient dynamic nuclear polarization at high magnetic fields, Phys. Rev. Lett., 2007, 98, 220501.

5.  J. Zhang, K. Porfyrakis, M. R. Sambrook, A. Ardavan, G. A. D. Briggs. Determination of the Thermal Stability of the Fullerene Dimers C120, C120O, and C120O2, J. Phys. Chem. B, 2006, 110, 16979.

4.  J. Zhang, J. J.L. Morton, M. R. Sambrook, K. Porfyrakis, A. Ardavan, G. Andrew D. Briggs. The effects of a pyrrolidine functional group on the magnetic properties of N@C60, Chem. Phys. Lett., 2006, 432, 523.

3.  M. Ma, J. Zhang, W. Liu, et al. Influence of Processing Technique on Practical Large Area Metal-matrix Composite Coating Produced by Laser Cladding. Proceedings of PICALO’04, Melbourne, Australia, April, 2004, LMP-LS = 1 * ROMAN I:33~37.

2.  J. Zhang, M. Ma, W. Liu, M. Zhong, W. Zhang, H. Zhang. Influence of V and Ti on the Microstructure of in-situ Particles Reinforced Fe-based Composite Coating by Laser Cladding, Heat Treatment of Metals, 2003, 28, 1.

1.  M. Ma, J. Zhang, W. Liu. Investigation of the anti-wearing properties and laser hardening of a critical engine part, Underwater Weapon, 2002, supplement: 238.