SCI论文
  1. X.-X. Peng, Y.-Q. Lu, L.-L. Zhou, T. Sheng, S.-Y. Shen, H.-G. Liao, L. Huang, J.-T. Li, S.-G. Sun, Graphitized porous carbon materials with high sulfur loading for lithium-sulfur batteries. Nano Energy 32, 503-510 (2017);DOI:10.1016/j.nanoen.2016.12.060.>>Fulltext Link

  2. J.-H. Du, T. Sheng, C. Xiao, N. Tian, J. Xiao, A.-Y. Xie, S. Liu, Z.-Y. Zhou, S.-G. Sun, Shape transformation of {hk0}-faceted Pt nanocrystals from a tetrahexahedron into a truncated ditetragonal prism. Chemical Communications 53, 3236-3238 (2017);DOI:10.1039/c7cc00432j.>>Fulltext Link

  3. G.-L. Xu, T. Sheng, L. Chong, T. Ma, C.-J. Sun, X. Zuo, D.-J. Liu, Y. Ren, X. Zhang, Y. Liu, S. M. Heald, S.-G. Sun, Z. Chen, K. Amine, Insights into the Distinct Lithiation/Sodiation of Porous Cobalt Oxide by in Operando Synchrotron X-ray Techniques and Ab Initio Molecular Dynamics Simulations. Nano Letters 17, 953-962 (2017);DOI:10.1021/acs.nanolett.6b04294.>>Fulltext Link

  4. B.-W. Zhang, T. Sheng, Y.-X. Wang, X.-M. Qu, J.-M. Zhang, Z.-C. Zhang, H.-G. Liao, F.-C. Zhu, S.-X. Dou, Y.-X. Jiang, S.-G. Sun, Platinum-Cobalt Bimetallic Nanoparticles with Pt Skin for Electro-Oxidation of Ethanol. Acs Catalysis 7, 892-895 (2017);DOI:10.1021/acscatal.6b03021.>>Fulltext Link

  5. H. Yin, Q. Guo, D. He, J. Li, S. Sun, Acid-induced crystallinity enhancement of graphite-like C3N3+xHy synthesized through a facile one-pot approach. Chemical Physics Letters 669, 22-28 (2017);DOI:10.1016/j.cplett.2016.12.006.>>Fulltext Link

  6. Y.-C. Wang, L. Huang, P. Zhang, Y.-T. Qiu, T. Sheng, Z.-Y. Zhou, G. Wang, J.-G. Liu, M. Rauf, Z.-Q. Gu, W.-T. Wu, S.G. Sun, Constructing a Triple-Phase Interface in Micropores to Boost Performance of Fe/N/C Catalysts for Direct Methanol Fuel Cells. ACS Energy Letters 2, 645-650 (2017);DOI:10.1021/acsenergylett.7b00071>>Fulltext Link

  7. S. H. Cao, Z. R. Ni, L. Huang, H. J. Sun, B. Tang, L. J. Lin, Y. Q. Huang, Z. Y. Zhou, S. G. Sun, Z. Chen, In Situ Monitoring Potential-Dependent Electrochemical Process by Liquid NMR Spectroelectrochemical Determination: A Proof-of-Concept Study. Analytical Chemistry 89, 3810-3813 (2017);DOI:10.1021/acs.analchem.7b00249.>>Fulltext Link

  8. L.L. Zhou, S.Y. Shen, X.X. Peng, L.N. Wu, Q. Wang, C.H. Shen, T.T. Tu, L. Huang, J.T. Li, S. G. Sun, New Insights into the Structure Changes and Interface Properties of Li3VO4 Anode for Lithium-Ion Batteries during the Initial Cycle by in Situ Techniques. Acs Applied Materials & Interfaces, 8, 23739-23745 (2016) , DOI:10.1021/acsami.6b07811. >>Fulltext Link

  9. T. Zhang, J. T. Li, J. Liu, Y. P. Deng, Z. G. Wu, Z. W. Yin, J. H. Wu, L. Huang, S. G. Sun, Improving the Electrochemical Performance of Li1.14Ni0.18Mn0.62O2 by Modulating Structure Defects via a Molten Salt Method. Chemelectrochem, 3, 98-104 (2016) , DOI:10.1002/celc.201500390. >>Fulltext Link

  10. T. Zhang, J. T. Li, J. Liu, Y. P. Deng, Z. G. Wu, Z. W. Yin, D. Guo, L. Huang, S. G. Sun, Suppressing the voltage-fading of layered lithium-rich cathode materials via an aqueous binder for Li-ion batteries. Chemical Communications 52, 4683-4686 (2016) , DOI:10.1039/c5cc10534j. >>Fulltext Link

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