一、基本信息
向兴德,男,湖南人,副教授,硕士研究生导师,讲授《物理化学》、《现代化学电源》等课程,主要从事化学电源及电极材料的设计制备与性能研究,在Advanced Materials、Chemical Communications、Chemistry-A European Journal等期刊发表SCI论文30多篇,担任Journal of Materials Chemistry A、Journal of Power Sources、Electrochimica Acta等期刊审稿人,获Outstanding Reviewer for Journal of Materials Chemistry A (2020)。
联系邮箱:xiangxingde@nefu.edu.cn
二、学习经历
2004年9月至2008年6月 长沙理工大学 学士学位
2008年9月至2011年6月 华南师范大学 硕士学位
2011年9月至2014年6月 华南理工大学 博士学位
2012年9月至2014年1月 University of Texas at Austin CSC联合培养
三、工作经历
2014年7月至2016年6月 南开大学化学学院 博士后/助理研究员
2016年7月至今 东北林业大学 副教授
四、所在学科
化学(无机化学方向)、材料与化工(化学工程领域)
五、研究方向
(1)高能量钠离子电池的构建及其电极材料的合成与性能调控
(2)新型水系可充电池的设计及其关键材料的制备与反应机制
六、科研项目与学术成果
1. Lin Cong, Guorong Tian, Dongxue Luo, Xuefei Ren, Xingde Xiang*. Hydrothermally assisted transformation of corn stalk wastes into high-performance hard carbon anode for sodium-ion batteries. Journal of Electroanalytical Chemistry (2020) 871: 114249.
2. Dongxue Luo, Ping Lei, Guorong Tian, Yunxuan Huang, Xuefei Ren, Xingde Xiang*. Insight into electrochemical properties and reaction mechanism of a cobalt-rich Prussian blue analogue cathode in a NaSO3CF3 electrolyte for aqueous sodium-ion batteries. Journal of Physical Chemistry C (2020) 124: 5958−5965
3. Wenting Zheng, Ping Lei, Dongxue Luo, Yunxuan Huang, Guorong Tian, Xingde Xiang*. Understanding the effect of structural compositions on electrochemical properties of titanium-based polyanionic compounds for superior sodium storage. Solid State Ionics (2020) 345: 115194.
4. Ping Lei, Shujin Li, Dongxue Luo, Yunxuan Huang, Guorong Tian, Xingde Xiang*. Fabricating a carbon-encapsulated NaTi2(PO4)3 framework as a robust anode material for aqueous sodium-ion batteries. Journal of Electroanalytical Chemistry (2019) 847: 113180
5. Dongxue Luo, Ping Lei, Yunxuan Huang, Guorong Tian, Xingde Xiang*. Improved electrochemical performance of graphene-integrated NaTi2(PO4)3/C anode in high-concentration electrolyte for aqueous sodium-ion batteries. Journal of Electroanalytical Chemistry (2019) 838: 66–72.
6. Xin Wan, Dongxue Luo, Ping Lei, Yunxuan Huang, Xingde Xiang*, Molong Sun. Porous NaV3(PO4)3/C nanocomposite anode with superior Na-storage performance for sodium-ion batteries. Inorganic Chemistry Frontiers (2019) 6: 598–603.
7. Ping Lei, Kelu Liu, Xin Wan, Dongxue Luo, Xingde Xiang*. Ultrafast Na intercalation chemistry of Na2Ti3/2Mn1/2(PO4)3 nanodots planted in carbon matrix as a low cost anode for aqueous sodium-ion batteries. Chemical Communications (2019) 55: 509–512.
8. Kelu Liu, Ping Lei, Xin Wan, Wenting Zheng, Xingde Xiang*. Cost-effective synthesis and superior electrochemical performance of sodium vanadium fluorophosphate nanoparticles encapsulated in conductive graphene network as high-voltage cathode for sodium-ion batteries. Journal of Colloid and Interface Science (2018) 532: 426-432.
9. Xin Wan, Kelu Liu, Ping Lei, Wenting Zheng, Xingde Xiang*, Molong Sun*. Carbon nanolayer-coated Na3V2(PO4)3 nanocrystals embedded in conductive carbon matrix as high performance cathode for sodium-ion batteries. ChemElectroChem (2018) 5: 2630-2635.
10. Ping Lei, Yao Wang, Fang Zhang, Xin Wan, Xingde Xiang*. Carbon-coated Na2.2V1.2Ti0.8(PO4)3 cathode with excellent cycling performance for aqueous sodium-ion batteries. ChemElectroChem (2018) 5: 2482-2487.
11. Wanfeng Li, Fang Zhang, Xingde Xiang*, Xiucheng Zhang. Nickel-substituted copper hexacyanoferrate as a superior cathode for aqueous sodium-ion batteries. ChemElectroChem (2018) 5: 350-354.
12. Fang Zhang, Wanfeng Li, Xingde Xiang*, Molong Sun. Nanocrystal-assembled porous Na3MgTi(PO4)3 aggregates as highly stable anode for aqueous sodium-ion batteries. Chemistry-A European Journal (2017) 32: 12944-12948.
13. Wanfeng Li, Fang Zhang, Xingde Xiang*, Xiucheng Zhang. Electrochemical properties and redox mechanism of Na2Ni0.4Co0.6[Fe(CN)6] nanocrystallites as high-capacity cathode for aqueous sodium-ion batteries. Journal of Physical Chemistry C (2017) 121: 27805-27812.
14. Fang Zhang, Wanfeng Li, Xingde Xiang*, Molong Sun. Highly stable Na-storage performance of Na0.5Mn0.5Ti0.5O2 microrods as cathode for aqueous sodium-ion batteries. Journal of Electroanalytical Chemistry (2017) 802: 22-26.
15. Wanfeng Li, Fang Zhang, Xingde Xiang*, Xiucheng Zhang. High-efficiency Na-storage performance of a nickel-based ferricyanide cathode in high-concentration electrolytes for aqueous sodium-ion batteries. ChemElectroChem (2017) 4: 2870–2876.
16. Xingde Xiang, Yanying Lu, Jun Chen*, Advance and Prospect of Functional Materials for Sodium Ion Batteries. Acta Chimica Sinica (2017) 75: 154–162.
17. Xingde Xiang, Qiongqiong Lu, Mo Han, Jun Chen*. Superior high-rate capability of Na3(VO0.5)2(PO4)2F2 nanoparticles embedded in porous graphene through the pseudocapacitive effect. Chemical Communications (2016) 52: 3653–3656.
18. Xingde Xiang, Kai Zhang, Jun Chen*. Recent advances and prospects of cathode materials for sodium-ion batteries. Advanced Materials (2015) 27: 5343–5364.