论文著作:
[1] ZongBao Yu, Zhuozhuo Song, Peng Zheng, Jie Sun, Zhanxu Yang*. The role of SO42-in manipulating partial charge distribution to boost alkaline water oxidation in Co9S8/C-Ni(OH)2, Journal of Physics and Chemistry of Solids[J]. 2024, 187, 111862.
[2] Juan Du, Qiao Han, Cheng Liu, Hongda Wu, Lufan Yang, Zhanxu Yang*. In-situ transformation into MoP/MoS2 heterogeneous structure with rich S-vacancy enhanced hydrogen evolution reaction[J]. Applied Surface Science, 2024, 649:159098.
[3] Cheng Liu, Jiaming Zou, Jinzhou Yang, Tieqiang Ren, Hongda Wu, Zhanxu Yang*. Boosting sodium-ion storage performance by tailoring intragranular porous WS2/C nanocomposites anode[J]. Applied Surface Science, 2023, 616: 156532.
[4] Shuo Liu, Baoshan Zhang, Yu Cao, Huili Wang, Yiming Zhang, Shaojie Zhang, Yanting Li, Haochen Gong, Shizhen Liu, Zhanxu Yang*, and Jie Sun*. Understanding the Effect of Nickel Doping in Cobalt Spinel Oxides on Regulating Spin State to Promote the Performance of the Oxygen Reduction Reaction and Zinc-Air Batteries[J]. ACS Energy Letters, 2023, 8: 159-168.
[5] Ziwei Fu, Zhengdong Shen, Qinzhen Fan, Shaoxian Hao, Ying Wang, Xinquan Liu, Xiaoxue Tong, Xianming Kong*, Zhanxu Yang*. Preparation of multi-functional magnetic-plasmonic nanocomposite for adsorption and detection of thiram using SERS[J]. Journal of Hazardous Materials, 2020, 392: 122356-122364.
[6] Jinzhou Yang, ZongBao Yu*, Wei Sun, Yue Li, Hongda Wu, Zhongxing Geng, Zhanxu Yang*. Efficient electrocatalytic performance of WP nanorods propagated on WS2/C for hydrogen evolution reduction[J]. ChemElectroChem, 2020, 7(14): 3082-3088.
[7] Cheng Liu, Huili Wang, Shiyu Zhang, Muyao Han, Yu Cao, Shuo Liu, Zhanxu Yang*, Aibing Chen*, Jie Sun*. K2Ti6O13/carbon core-shell nanorods as superior anode material for high-rate potassium ion batteries[J]. Nanoscale, 2020, 12(21): 11427-11434.
[8] Jiaming Zou, Cheng Liu , Zhanxu Yang*, Chengyuan Qi, Xiaorong Wang*, Qingdong Qiao, Xian Wu, Tieqiang Ren. Multi-layer-cake WS2/C nanocomposite as a high-performance anode material for lithium-ion batteries: "regular" and "alternate"[J]. ChemElectroChem, 2017, 4(6): 1503-1508.
[9] Jie Zhang, Zhanxu Yang*, Jiyicheng Qiu, Hyun-Wook Lee*. Design and synthesis of nitrogen and sulfur co-doped porous carbon via two-dimensional interlayer confinement for a high-performance anode material for lithium-ion batteries[J]. Journal of Materials Chemistry A, 2016, 4(16): 5802-5809.
[10] Jiyicheng Qiu, Zhanxu Yang*, Qiang Li, Yue Li, Xian Wu, Chengyuan Qi, Qingdong Qiao. Formation of N-doped molybdenum carbide confined in hierarchical and hollow carbon nitride microspheres with enhanced sodium storage properties[J]. Journal of Materials Chemistry A, 2016, 4(34): 13296-13306.
发明专利:
[1] 中国专利, 杨占旭, 韩乔, 王阳, 肖伟, 武宏大, 陈常东. 盐湖卤水提取锂的方法, 授权, 2023.10.20, ZL202210793176.1
[2] 中国专利, 杨占旭, 刘成, 邹家明. 一种千层岩结构二硫化钨/碳纳米复合材料及其制备方法与应用, 授权, 2019.07.19, ZL201610860725.7
[3] 中国专利, 杨占旭, 杜金龙. 一种层状结构二硫化钼/碳复合材料及其制备方法与应用, 授权, 2019.08.30,ZL201610860013.5
[4] 中国专利,杨占旭, 王崇泽, 谭文, 崔博洋. 在限域空间构筑氮化碳基超薄纳米片复合材料的制备方法, 授权, 2019.05.21, ZL201910178756.8
[5] 中国专利, 杨占旭, 邱继一承. 一种钼氧化物/氮掺杂碳复合电极材料及其制备方法, 授权, 2015.3.30, ZL201510142401.5