代表性论文
https://publons.com/researcher/2772501/xuefeng-qian/
[1] He K, Tadesse Tsega T, Jiantao Zai*,Xuefeng Qian*, et al. Utilizing the Space‐charge Region of FeNi‐LDH/CoP p‐n Junction to Promote the Performance in Oxygen Evolution Electrocatalysis[J]. Angewandte Chemie International Edition, 2019.
[2] Ma D, Hu B, Wu W, Jiantao Zai*,Xuefeng Qian*, et al. Highly active nanostructured CoS2/CoS heterojunction electrocatalysts for aqueous polysulfide/iodide redox flow batteries[J]. Nature communications, 2019, 10(1): 3367.
[3] Cao, Hongliang, Xuefeng Qian*et al. "High symmetric 18-facet polyhedron nanocrystals of Cu7S4 with a hollow nanocage." Journal of the American Chemical Society 127.46 (2005): 16024.
[4] Li Xiaomin, Zai Jiantao*, Xiang Shijie, Liu Yuanyuan, He Xiaobo, Xu Zheying, Wang Kaixue, Ma Zifeng, Qian Xuefeng*. Regeneration of Metal Sulfides in the Delithiation Process: The Key to Cyclic Stability. Advanced Energy Materials, 2016, 201601056
[5] Li Xiaomin, Qian Tianyue, Zai Jiantao*, He Kai, Feng Zhenxing, and Qian Xuefeng*, Co stabilized metallic 1Td MoS2 monolayers: Bottom-up synthesis and enhanced capacitance with ultra-long cycling stability. Materials Today Energy, 2018. 7: 10-17.
[6] Li Xiaomin, Feng Zhenxing, Zai Jiantao*, Ma Zi-Feng, and Qian Xuefeng*, Incorporation of Co into MoS2/graphene nanocomposites: One effective way to enhance the cycling stability of Li/Na storage. Journal of Power Sources, 2018. 373: 103-109.
[7] Li Bo, Xiao Zhujun, Chen Ming, Huang Ziyue, Tie Xiaoyong, Zai Jiantao, and Qian Xuefeng, Rice husk-derived hybrid lithium-ion capacitors with ultra-high energy. Journal of Materials Chemistry A, 2017. 5(46): 24502-24507.
[8] Li Bo, Qi Rongrong*, Zai Jiantao*, Du Feihu, Xue Chi, Jin Ying, Jin Chengyou, Ma Zifeng, Qian Xuefeng*. Silica Wastes to High-Performance Lithium Storage Materials: A Rational Designed Al2O3 Coating Assisted Magnesiothermic Process. Small, 2016, 12(38):5281
[9] Liu Xuejiao, Zai Jiantao*, Li Bo, Zou Jian, Ma Zifeng, Qian Xuefeng. Na2Ge4O9 nanoparticles encapsulated in 3D carbon networks with long-term stability and superior rate capability in lithium ion batteries. Journal of Materials Chemistry A, 2016, 4 (27): 10552.
[10] Adhikari, N., A. Dubey, E. A. Gaml, B. Vaagensmith, K. M. Reza, S. A. A. Mabrouk, S. P. Gu, Jiantao Zai*, X. F. Qian*, and Q. Q. Qiao*. Crystallization of a perovskite film for higher performance solar cells by controlling water concentration in methyl ammonium iodide precursor solution. Nanoscale. 2016. 8(5): p. 2693-2703.
[11] Shoushuang Huang, Qingquan He, Wenlong Chen, Jiantao Zai*, Qiquan Qiao*, and Xuefeng Qian*. 3D hierarchical FeSe2 microspheres: Controlled synthesis and applications in dye-sensitized solar cells. Nano Energy. 2015. 15(0): p. 205-215.
[12] Aboagye, Alex, Hytham Elbohy, Ajit Kelkar, Qiquan Qiao, Jiantao Zai*, Xuefeng Qian*, and Lifeng Zhang*. Electrospun carbon nanofibers with surface-attached platinum nanoparticles as cost-effective and efficient counter electrode for dye-sensitized solar cells. Nano Energy. 2015. 11(0): p. 550-556.