论文著作:
[1]Jie Jiang, Song Wen, Ying Zhang, Bing Sun, Ruiji Meng, Shoutao Ma, Yanan Qian, Wei Xu, Zhe Yang, Zifeng Yan. Influence of the Oxide Gas on Thermal Decomposing Explosion of Methyl Nitrite Based on Instantaneous Flame Characterization. Combustion and Flame. 2021.
[2] Zongge Li, Yan Ma, Yiyan Wang, Nianxi Liu, Ying Zhang, and Guoxin Zhang. Formamide-derived “glue” for hundred-gram scale synthesis of atomically dispersed iron-nitrogen-carbon electrocatalysts. Nanoscale. 2021
[3] Zongge Li, Danni Wang, Huifang Li, Mang Ma, Ying Zhang, Zifeng Yan, Stefano Agnoli, Guoxin Zhang, and Xiaoming Sun. Single-atom Zn for boosting supercapacitor performance. Nano Research. 2021
[4] Yu Wang, Guoxin Zhang, Mang Ma, Yiyan Wang, Ying Zhang, Xiaoming Sun,Zifeng Yan Sacrificial carbon nitride-templated hollow FeCo-NC material for highly efficient oxygen reduction reaction and Al-air battery. Electrochimica Acta. 2020.
[5] Yiyan Wang, Anuj Kumar, Mang Ma, Yin Jia, Yu Wang, Ying Zhang, Guoxin Zhang, Xiaoming Sun, and Zifeng Yan. Hierarchical peony-like FeCo-NC with conductive network and highly active sites as efficient electrocatalyst for rechargeable Zn-air battery. Nano Research. 2020.
[6] Yiyan Wang, Guoxin Zhang, Mang Ma, Yan Ma, Jiankun Huang, Chen Chen, Yin Jia, Ying Zhang, Xiaoming Sun, and Zifeng Yan, Ultrasmall NiFe-double hydroxide strongly coupled on atomically dispersed FeCo-NC nanoflowers as efficient bifunctional catalyst for rechargeable Zn-air battery. Science China Materials. 2020.
[7] Mang Ma, Anuj Kumard, Danni Wang, Yiyan Wang, Yin Jia, Ying Zhang, Guoxin Zhang, Zifeng Yan, Xiaoming Sun. Boosting the bifunctional oxygen electrocatalytic performance of atomically dispersed Fe site via atomic Ni neighboring. Applied Catalysis B: Environmental. 2020.
[8] Tete Zhao, Anuj Kumar, Xuya Xiong, Mang Ma, Yiyan Wang, Ying Zhang, Stefano Agnoli,
Guoxin Zhang, and Xiaoming Sun. Assisting Atomic Dispersion of Fe in N‑Doped Carbon by Aerosil for High-Efficiency Oxygen Reduction. ACS Appl. Mater. Interfaces. 2020.
[9] Ying Zhang, Hu Zhao, Xiaofei Zhao, Jiannan Lin, Na Li, Ziyang Huo, Zifeng Yan, Miao Zhang and Shi Hu. Narrow-Bandgap Nb2O5 Nanowires with Enclosed Pores as High- Performants Photocatalyst. Science China Materials. 2018.
[10] Ying Zhang, Chi Ho Wong, Yan Dong, Xijun Hu.Dramatic enhancement of superconductivity in single crystalline nanowire arrays of Sn. Scientific Reports. 2017.
[11] Zhao Yuxin ,Zhang, Ying, Zhao Hu,Li Xuejin,Li Yanpeng,Wen Ling,Yan Zifeng ,Huo Ziyang,Epitaxial growth of hyperbranched Cu/Cu2O/CuO core-shell nanowire heterostructures for lithium-ion batteries,Nano Research,2015.
[12] Zhao Yuxin,Fan LiLi,Zhang Ying ,Zhao Hu,Li Xuejin,Li Yanpeng,Wen Ling,Yan Zifeng ,Huo Ziyang,Hyper-Branched (5)Cu@Cu2O Coaxial Nanowires Mesh Electrode for Ultra-Sensitive Glucose Detection.,Acs Applied Materials & Interfaces,2015.
[13]Tao Binglin,Zhang Ying,Han Dezhi,Li Yanpeng,Yan Zifeng,Synthesis of corundum-type In2O3 porous spheres and their photocatalytic properties,Journal of Materials Chemistry A,2014.
[14] Zhao Yuxin、Zhang Ying、Li Yanpeng、He Zhaoyang、Yan Zifeng ,Rapid and large-scale synthesis of Cunanowires via a continuous flow solvothermal process and its application in dye-sensitized solar cells. (DSSCs) ,RSC Advances, 2012.
[15] Yuxin Zhao, Juan Wang, Ying Zhang, Yanpeng Li, Zi ,A flexible chemical vapor deposition method to synthesize copper@carbon core–shell structured nanowires and the study of their structural electrical properties ,New Journal of Chemistry, 2012.
[16] Ying Zhang, Frank Lin, Zifeng Yan, Xijun Hu. Mechanism of forming an ink-bottle-like pore structure basedon SBA-15 by a novel MOCVD technique. Chinese Science Bullent. 2010
[17] Ying Zhang, Frank Lin, Zifeng Yan, Xijun Hu. Formation of an ink-bottle-like pore structure in SBA-15 by MOCVD. Chem. Comm. 2008.
[18] Ying Zhang, Frank Lin, Zifeng Yan, Xijun Hu. Fabrication of copper nanowire encapsulated in the pore channels of SBA-15 by metal organic chemical vapor deposition. J. Phys. Chem. C. 2007.