
熊春豔,博士,副教授,碩士生導師,湖北省“有關人才計劃”學子
地址:中國.湖北.武漢.東湖新技術開發區光谷一路206号,77779193永利官网
郵編:430073
Email:xcy317067886@163.com;
電話:+86-27-87194980
教育背景
2011.09-2016.09 華中科技大學博士
2014.12-2015.12 美國馬裡蘭大學帕克分校,聯合培養博士
2006.09-2010.06 77779193永利官网,學士
工作履曆
2017.01 至今 77779193永利官网,副教授
研究領域
新能源電池:固體氧化物電池、偶聯反應固體氧化物電解池;锂離子電池正極材料合成與改性。
新能源化工:納米金屬的合成與SERS應用;锂離子電池正極材料回收工藝。
學術成果
科研項目:
國家自然科學基金,青年科學基金項目,主持
湖北省教育廳人才項目,主持
模具與成型國家重點實驗室開放基金,青年項目,主持
綠色化工教育部重點實驗室創新基金,主持
校企合作項目,主持
代表性論文:
[1] Xiong C, Li W,Xiao J, Duan N, Pu J, Chi B, et al. Improved chromium-poisoning on lanthanumstrontium manganite cathode in presence of a newly developed iron-chromiumbased interconnect alloy for solid oxide fuel cells. International Journalof Hydrogen Energy. 2015;40:13957-63.
[2] Xiong C, Li W,Duan N, Pu J, Chi B, Jian L. The effect of molybdenum on chromium deposition at(La0.8Sr0.2)0.95MnO3-δ cathode ofsolid oxide fuel cells. International Journal of Hydrogen Energy.2016;41:9529-37.
[3] Xiong C, TaillonJA, Pellegrinelli C, Huang Y-L, Salamanca-Riba LG, Chi B, et al. Long-Term CrPoisoning Effect on LSCF-GDC Composite Cathodes Sintered at DifferentTemperatures. Journal of The Electrochemical Society. 2016;163:F1091-F9.
[4] Xiong C, Li W,Ding D, et al. Chromium poisoning effect on strontium-doped samarium manganitefor solid oxide fuel cell. International Journal of Hydrogen Energy,2016, 41(45): 20660-20669. [5] Li W, Xiong C, Zhang Q, Jia L, Chi B, PuJ, et al. Composition optimization of samarium strontium manganite-yttriastabilized zirconia cathode for high performance intermediate temperature solidoxide fuel cells. Electrochimica Acta. 2016;190:531-7.
[6] Li W, Xiong CY,Jia LC, Pu J, Chi B, Chen X, et al. Strontium-doped samarium manganite ascathode materials for oxygen reduction reaction in solid oxide fuel cells. Journalof Power Sources. 2015;284:272-8
[7] Cao Y, Xiong C,Jian L, Vøllestad E, Evans A, Haugsrud R. Enhancement of the ElectronConductivity of La27(W0.85Nb0.15)5O55.5−δby Mo Doping for Hydrogen Permeation. Journal of The Electrochemical Society.2016;163:F1151-F6.
[8] Xiao J, Zhang W, XiongC, Chi B, Pu J, Jian L. Oxidation of MnCu0.5 Co1.5O4spinel coated SUS430 alloy interconnect in anode and cathode atmospheres forintermediate temperature solid oxide fuel cell. International Journal ofHydrogen Energy. 2015; 40:1868-76.
[9] Xiao J, Zhang W, XiongC, Chi B, Pu J, Jian L. Oxidation behavior of Cu-doped MnCo2O4spinel coating on ferritic stainless steels for solid oxide fuel cellinterconnects. International Journal of Hydrogen Energy. 2016; 41:9611-8.
[10] Huang, Y. L., Hussain,A. M., Pellegrinelli, C., Xiong, C., & Wachsman, E. D. (2017).Chromium Poisoning Effects on Surface Exchange Kinetics of La0.6Sr0.4Co0.2Fe0.8O3-δ.Applied materials&interface. 2017;19
[11] X. Liang, C. Chang, W.Guo, X. Jiang, C. Xiong, X. Pu, Red Phosphorus/Onion-like MesoporousCarbon Composite as High-Performance Anode for Sodium-Ion Battery,ChemElectroChem 2019, 6,5721.
[12] Qiu, P., Sun, S., Yang,X., Chen, F., Xiong, C., Jia, L., & Li, J. A review on anode on-cellcatalyst reforming layer for direct methane solid oxide fuel cells. InternationalJournal of Hydrogen Energy. 2019
[13] Xiong C, Liu F, Gao J,Jiang X. One-Spot Facile Synthesis of Single-Crystal LiNi0.5Co0.2Mn0.3O2 CathodeMaterials for Li-ion Batteries. ACS Omega. 2020 Nov19;5(47):30356-30362.
[14] Tan, Y., Gao, S., Xiong,C., & Chi, B.. Nano-structured LSM-YSZ refined with PdO/ZrO2oxygen electrode for intermediate temperature reversible solid oxidecells. International Journal of Hydrogen Energy, 2020,45(38),19823-19830.
[15] Xiong, C., Liu, F.,Gao, J., & Jiang, X.. A N-doped porous carbon derived from deep eutecticsolvent for adsorption of organic contaminants from aqueous or oilsolution. RSC Advances, 2020, 10(57), 34953-34958.
[16] Cao, Y., Wang, C.,Wang, X., Zhang, H., Jiang, X., Xiong, C., & Liang, F. Two-dimensionalmesoporous B, N co-doped carbon nanosheets decorated with TiN nanostructuresfor enhanced performance lithium–sulfur batteries. Applied Physics2021
[17] Li J, Wang X, Huang L,Xiong, C., et al. Ultrathin mesoporous graphitic carbon nitridenanosheets with functional cyano group decoration and nitrogen-vacancy defectsfor an efficient selective CO2 photoreduction. Nanoscale,2021, 13(29): 12634-12641.
專利:
[1] 一種制備薄壁管狀陶瓷胚體的方法發明專利CN 104589488 B 2016.10.05
[2] 一種制備管狀陶瓷胚體的方法發明專利CN 104493968 B 2016.07.27
[3] 氧化钆摻雜氧化铈納米符合材料的制備方法和應用ZL 2020 10165516.7