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悉尼科技大学汪国秀教授研究中心招收电池类博士后/博士生

悉尼科技大学汪国秀教授研究中心招收电池类博士后/博士生 科学材料站
2023-12-07
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课 题 组 招 聘

招收方向:锂离子电池,固态电池和锌离子电池方向

招收要求:

博士后:初始提供1年合同,可延至3年,税前澳元90,000-110,000+17%退休金。

  • 取得化学(电化学)、材料科学与工程或相关领域博士学位;

  • 有无机和有机材料合成与表征的经验;

  • 对电化学能量存储和转换特别是可充电电池有较深的理解;

  • 熟练操作SEM、XRD、Raman、TEM、GC和FTIR等仪器;

  • 有电池设计、组装以及测试经验;

  • 良好的解决问题的能力;

  • 优秀的英语口语以及写作能力;

  • 有较强的论文发表背景 (5-8 篇SCI 论文)

  • 有能力申请有竞争力的学者和研究项目,鼓励申请澳洲和悉尼科技大学相应人才计划。

博士生:澳元$32,500免税每年。申请者需

  • 雅思 总分6.5 写作6分以上。
  • 撰写并发表过第一作者SCI论文
  • 性格开朗、思维敏捷、具有一定的创新能力
  • 奖学金有3种方式:  (1)科研经费出奖学金, 现有4个空缺(2)协助申请国家CSC奖学金(3)协助申请UTS奖学金

有意者请联系:Yueping.Yao@uts.edu.au;我们会尽快联系满足要求的候选者。


悉尼科技大学位于悉尼市中心,QS世界排名90。汪国秀教授是悉尼科技大学杰出教授,清洁能源中心主任,全球高被引科学家(化学、材料)。汪教授2023代表性论文如下:

  1. Yuefeng Meng, Dong Zhou, Ruliang Liu, Yao Tian, Yifu Gao, Yao Wang, Bing Sun, Feiyu Kang, Michel Armand, Baohua Li, Guoxiu Wang*, Doron Aurbach, “Designing Phosphazene-Derivative Electrolyte Matrices to enable High–Voltage Lithium Metal Batteries for Extreme Working Conditions”, Nature Energy, 2023, 8, 1023-1033. IF=56.7

  2. Xu Yang, Bao Zhang, Yao Tian, Yao Wang, Zhiqiang Fu, Dong Zhou, Hao Liu, Feiyu Kang, Baohua Li, Chunsheng Wang, Guoxiu Wang*, “Electrolyte design principles for developing quasi-solid-state rechargeable halide-ion batteries”, Nature Communications, 2023, 14, 925. IF= 16.6

  3. Yuhan Xie, Xin Chen, Kaian Sun, Jinqiang Zhang, Wei-Hong Lai, Hao Liu, Guoxiu Wang*, “Direct Oxygen-Oxygen Cleavage through Optimizing Interatomic Distances in Dual Single-atom Electrocatalysts for Efficient Oxygen Reduction Reaction”, Angewandte Chemie International Edition, 2023, 62, e202301833. IF= 16.6

  4. Amey Nimkar, Gil Bergman, Elad Ballas, Nophar Tubul, Noam Levi, Fyodor Malchik, Idan Kukurayeve, Munseok S Chae, Daniel Sharon, Mikhael Levi, Netanel Shpigel, Guoxiu Wang*, Doron Aurbach, “Polyimide Compounds for Post-Lithium Energy Storage Applications”, Angewandte Chemie International Edition, 2023, 62, e202306904. IF= 16.6

  5. Yufei Zhao, Ziyan Shen, Juanjuan Huo, Xianjun Cao, Pengfei Ou, Junpeng Qu, Xinming Nie, Jinqiang Zhang, Minghong Wu, Guoxiu Wang*, Hao Liu, “Epoxy-rich Fe Single Atom Sites Boost Oxygen Reduction Electrocatalysis”, Angewandte Chemie International Edition, 2023, 62, e202308349. IF= 16.6

  6. Javad Safaei, Yifu Gao, Mostafa Hosseinpour, Xiuyun Zhang, Yi Sun, Xiao Tang, Zhijia Zhang, Shijian Wang, Xin Guo, Yao Wang, Zhen Chen, Dong Zhou, Feiyu Kang, Lei Jiang, Guoxiu Wang*, “Vacancy engineering for high-efficiency nanofluidic osmotic energy generation”, Journal of American Chemical Society, 2023, 145, 2669–2678. IF= 15.0

  7. Hao Tian, Ailing Song, Peng Zhang, Kaian Sun, Jingjing Wang, Bing Sun, Qiaohui Fan, Guangjie Shao, Chen Chen, Hao Liu, Yadong Li, Guoxiu Wang*, “High Durability of Fe–N–C Single-Atom Catalysts with Carbon Vacancies toward the Oxygen Reduction Reaction in Alkaline Media”, Advanced Materials, 2023, 35, 2210714. IF= 29.4

  8. Xia Hu, Jiahao Yu, Yao Wang, Weiqian Guo, Xiang Zhang, Michel Armand, Feiyu Kang, Guoxiu Wang*, Dong Zhou, Baohua Li, “A Lithium Intrusion–Blocking Interfacial Shield for Wide–Pressure–Range Solid–State Lithium Metal Batteries”, Advanced Materials, 2023, 35, 2308275. IF= 29.4

  9. Jing Xu, Haolin Li, Yang Jin, Dong Zhou, Bing Sun, Michel Armand, Guoxiu Wang*, “Comprehensive Understanding the Roles of Electrical Mechanisms in Aqueous Zinc-ion Batteries: from Electrostatic Interactions to Electric Fields and Potentials”, Advanced Materials (in press) accepted on 13 Nov. 2023. IF= 29.4

  10. Guoxiu Wang*, “Graphene nanoripples enable unexpected catalytic reactivity”, Proceedings of the National Academy of Sciences of the United States of America (PNAS), 2023, 120, e2303353120. IF=11.1

  11. Xuan Li, Yaxin Wang, Junxiong Wu, Lijuan Tong, Shuling Wang, Xiaoyan Li, Chuanping Li, Manxi Wang, Manxian Li, Weiwei Fan, Xiaochuan Chen, Qinghua Chen, Guoxiu Wang* and Yuming Chen, “Engineering Contact Curved Interface with High-Electronic-State Active Sites for High-Performance Potassium-ion Batteries”, Proceedings of the National Academy of Sciences (PNAS), 2023 (in press) accepted on 8 Nov. 2023. IF=11.1

  12. Yufei Zhao, Jinqiang Zhang, Xin Guo, Xianjun Cao, Shijian Wang, Hao Liu, Guoxiu Wang*, “Engineering strategies and active site identification of MXene-based catalysts for electrochemical conversion reactions”, Chemical Society Reviews, 2023, 52, 3215-3264. IF= 46.2

  13. Zefu Huang, Pauline Jaumaux, Bing Sun, Xin Guo, Dong Zhou, Devaraj Shanmukaraj, Michel Armand, Teofilo Rojo, Guoxiu Wang*, “High-Energy Room-Temperature Sodium–Sulfur and Sodium–Selenium Batteries for Sustainable Energy Storage”, Electrochemical Energy Reviews, 2023, 6, 21. IF= 31.3

  14. Jian Yang, Xin Guo, Hong Gao, Tianyi Wang, Zhigang Liu, Qing Yang, Hang Yao, Jiaobao Li, Chengyin Wang, Guoxiu Wang*, “A High‐Performance Alloy‐Based Anode Enabled by Surface and Interface Engineering for Wide-temperature Sodium‐Ion Batteries”, Advanced Energy Materials, 2023, 13, 2300351. IF= 27.8

  15. Zhipeng Ma, Ailing Song, Zhan Liu, Yaqian Guo, Xin Yang, Qing Li, Yuqian Fan, Lei Dai, Hao Tian, Xiujuan Qin, Hao Liu, Guangjie Shao and Guoxiu Wang*, “Nanoconfined expansion behavior of hollow MnS@Carbon anode with extended lithiation cyclic stability”, Advanced Functional Materials, 2023, 33, 2301112. IF= 19

  16. Jing Xu, Yashuang Qiu, Jianhao Yang, Haolin Li, Pingan Han, Yang Jin, Xiaoli Zhang, Hao Liu, Bing Sun, Guoxiu Wang*, “Review of Separator Modification Strategies: Targeting Undesired Anion Transport in Room Temperature Sodium–Sulfur/Selenium/Iodine Batteries”, Advanced Functional Materials, 2023, 33, 2306206. IF= 19

  17. Jun Chen, Guilai Zhang, Jun Xiao, Jiayi Li, Yang Xiao, Dingyi Zhang, Hong Gao, Xin Guo, Guoxiu Wang*, Hao Liu, “A Stress Self-Adaptive Bimetallic Stellar Nanosphere for High-Energy Sodium-Ion Batteries”, Advanced Functional Materials, 2023, 33, 2307959. IF= 19

  18. Zhe Bai, Zhenhua Wang, Ruilong Li, Zeyu Wu, Pingli Feng, Lina Zhao, Tan Wang, Wenshuo Hou, Yu Bai, Guoxiu Wang*, and Kening Sun, “Engineering Triple-Phase Interfaces Enabled by Layered Double Perovskite Oxide for Boosting Polysulfide Redox Conversion”, Nano Letters, 2023, 23, 4908–4915. IF= 10.8


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