侯傑

2023年02月15日 15:23  點擊:[]

 

侯傑,男,19889月生,河南駐馬店人,博士,2003网站太阳集团青年優秀人才特聘教授,博士生導師,曾入選深圳市海外高層次人才孔雀計劃”C類人才及深圳市南山區領航人才。

2012年本科畢業海南大學材料科學與工程專業,2017年博士畢業于中國科學技術大學材料學專業。20169-20179月于英國聖安德魯斯大學化學院John Irvine教授課題組聯合培養。20181-202011月在深圳大學駱靜利(加拿大工程院院士)團隊擔任副研究員。

   

一、聯系方式

通訊地址:湖南省衡陽市2003网站太阳集团環境與安全工程學院

郵編:421001

E-mailjiehou@usc.edu.cn, 418011021@qq.com

 

二、研究方向:固體氧化物燃料電池/電解池功能型膜反應器件環境及能源工程

 

三、主持和參加的主要項目:

1. 2003网站太阳集团高層次人才引進資助項目,300萬,項目編号:201RGC018,主持,在研

2. 國家自然科學基金青年基金項目Bi2O3基低溫固體氧化物電解電池結構構築與研究,編号518022002019.01-2021.1226萬元,主持,已結題

3. 國家自然科學基金面上項目Bi基低溫固體氧化物燃料電池低成本制備與研究編号216762612017.01-2020.1264萬元,參與已結題

4. 國家自然科學基金聯合基金項目,鈣钛礦及相關結構中氧空位或間隙氧與其組态對材料電化學性能的影響U16321312017.01-2019.1264萬元,參與已結題

5. 中央高校基本科研業務費,Bi基低溫固體氧化物電池低成本制備技術,編号WK60300000162016.03-2017.0310萬元,主持,已結題

 

四、發表論文:

1. Junyi Gong, Jie Hou*, Restoring La1.2Sr0.8Ni0.5Mn0.5O4+δ electrocatalysis for proton-conducting solid oxide fuel cells with the elimination of bi-shell surface, Applied Surface Science, 2023, 158385, doi.org/10.1016/j.apsusc.2023.158385.SCI收錄,JCR1區,IF=6.7

2. Chujia Jin, Lei Ma, Junyi Gong, Wei Liu, Jie Hou*, Altering B-site surroundings with low-valence Cu to regulate La1.2Sr0.8NiO4+δ electrocatalysis for protonic ceramic fuel cells, Ceramics International, 2023, doi.org/10.1016/j.ceramint.2023.08.263.SCI收錄,JCR1區,IF=5.2

3. Dandan Yang, Junyi Gong, Jie Hou*, Low-valence Cu+-tailoring La0.5Sr1.5MnO4 as a novel single-phase cathode for proton-conducting solid oxide fuel cells, Electrochimica Acta, 461, 2023, 142668. (SCI收錄,JCR2區,IF=6.6

4. Lei Ma, Junyi Gong, Chujia Jin, Dandan Yang, Jie Hou*, Modifying Mn-based R-P phase cathode properties for proton-conducting solid oxide fuel cells, Journal of Alloys and Compounds, 945, 2023, 169359.SCI收錄,JCR1區,IF=6.2

5. Jie Hou*, Junyi Gong, Jing-Li Luo*, Constructing highly active surface-nanostructured core/bi-shell La1.2Sr0.8Ni0.5Mn0.5O4+δ cathode for protonic ceramic fuel cells, Chemical Engineering Journal, 2023, 459, 141459.SCI收錄,JCR1區,IF=15.1

6. Jie Hou*, Junyi Gong, Lei Bi*, Advancing cathodic electrocatalysis via an in situ generated dense active interlayer based on CuO5 pyramid-structured Sm2Ba1.33Ce0.67Cu3O9, Journal of Materials Chemistry A, 2022, 10, 15949-15959.(封面論文,SCI收錄,JCR1區,IF=11.9

7. Jie Hou*, Guanghui Yang, Wei Liu*, The principles for rationally designing H-SOFC anode active layer, Materials Research Bulletin, 150, 2022, 111769. SCI收錄,JCR2區,IF=5.4

8. Kuan Dong, Lina Miao, Jie Hou*, Wei Liu*, A novel inhibiting water adsorption strategy to enhance the cathode electrocatalytic ability, Journal of Alloys and Compounds, 2021, 876, 160205. SCI收錄,JCR1區,IF=6.2

9. Jie Hou, Qi Wang, Jun Li, Ying Lu, Lijuan Wang, Xian-Zhu Fu, Jing-Li Luo*, Rational design of an in-situ co-assembly nanocomposite cathode La0.5Sr1.5MnO4+δ-La0.5Sr0.5MnO3-δ for lower-temperature proton-conducting solid oxide fuel cells, Journal of Power Sources, 2020, 466, 228240.SCI收錄,JCR1區,IF=9.2

10. Jie Hou*, Kuan Dong, Lina Miao, Wei Liu*, Rationally structuring proton-conducting solid oxide fuel cell anode with Ni metal catalyst and porous skeleton, Ceramics International, 2020, 46(15), 24038-24044SCI收錄,JCR1區,IF=5.2

11. Chun-Ye Gu, Xiu-Sheng Wu*, Ju-FangCao, Jie Hou*, Li-Na Miao, Yun-Peng Xia, Chao Fu, Wei Liu, High performance Ca-containing La2-xCaxNiO4+δ (0≤x≤0.75) cathode for proton-conducting solid oxide fuel cells, International Journal of Hydrogen Energy, 2020, 43, 23422-23432.SCI收錄,JCR1區,IF=7.2

12. Lina Miao, Jie Hou*, Kuan Dong, Wei Liu*, A strategy for improving the sinterability and electrochemical properties of ceria-based LT-SOFCs using bismuth oxide additive, International Journal of Hydrogen Energy, 44, 2019, 5447-5453.SCI收錄,JCR1區,IF=7.2

13. Lina Miao, Jie Hou*, Zheng Gong, Zongzi Jin, Wei Liu*, A high-performance cobalt-free Ruddlesden-Popper phase cathode La1.2Sr0.8Ni0.6Fe0.4O4+δ for low temperature proton-conducting solid oxide fuel cells, International Journal of Hydrogen Energy, 44, 2019, 7531-7537.SCI收錄,JCR1區,IF=7.2

14. Yusen Wu, Jie Hou*, Zheng Gong Lina Miao, Haidi Tang, Wei Liu*, High performance BaCe0.5Fe0.5-xBixO3-δ as cobalt-free cathode for proton-conducting solid oxide fuel cells, Journal of Alloys and Compounds, 790, 2019, 551-557.SCI收錄,JCR1區,IF=6.2

15. Jie Hou, Lina Miao, Jianing Hui, Lei Bi, Wei Liu* and John T. S. Irvine*, A novel in situ diffusion strategy to fabricate high performance cathodes for low temperature proton-conducting solid oxide fuel cells, Journal of Materials Chemistry A, 2018, 6(22), 10411-20. (SCI收錄,JCR1區,IF=11.9)

16. Jie Hou, Lei Bi*, Jing Qian, Zheng Gong, Zhiwen Zhu, Wei Liu*, A novel composite cathode Er0.4Bi1.6O3-Pr0.5Ba0.5MnO3-δ for ceria-bismuth bilayer electrolyte high performance low temperature solid oxide fuel cells, Journal of Power Sources, 301, 2016, 306-311.SCI收錄,JCR1區,IF=9.2

17. Jie Hou, Lei Bi*, Jing Qian, Zhiwen Zhu, Junyu Zhang, Wei Liu*, High performance ceria-bismuth bilayer electrolyte low temperature solid oxide fuel cells (LT-SOFCs) fabricated by combining co-pressing with drop-coating, Journal of Materials Chemistry A, 3(19), 2015, 10219-24.SCI收錄,JCR1區,IF=11.9

18. Jie Hou, Jing Qian, Lei Bi*, Zheng Gong, Ranran Peng, Wei Liu*, The effect of oxygen transfer mechanism on the cathode performance based on proton-conducting solid oxide fuel cells, Journal of Materials Chemistry A, 3(5), 2015, 2207-15.SCI收錄,JCR1區,IF=11.9

19. Jie Hou, Fengguang Liu, Zheng Gong, Yusen Wu, Wei Liu*, Different ceria-based materials Gd0.1Ce0.9O2-δ and Sm0.075Nd0.075Ce0.85O2-δ for ceria-bismuth bilayer electrolyte high performance low temperature solid oxide fuel cells, Journal of Power Sources, 299, 2015, 32-39.SCI收錄,JCR1區,IF=9.2

20. Jie Hou, Zhiwen Zhu, Jing Qian,Wei Liu*, A new cobalt-free proton-blocking composite cathode La2NiO4+δ-LaNi0.6Fe0.4O3-δ for BaZr0.1Ce0.7Y0.2O3-δ-based solid oxide fuel cells, Journal of Power Sources, 264, 2014, 67-75.SCI收錄,JCR1區,IF=9.2

 

五、專利:

1. 侯傑,苗利娜,曹菊芳,蔺傑,劉衛,一種低溫固體氧化物燃料電池及其制備方法,中國專利,公開号:CN107017423A,專利号: ZL201710232995.8

 

 

六、出版專著、教材

 

七、指導學生獲獎:

第十五屆“挑戰杯”學術作品競賽湖南省二等獎

第十六屆節能減排社會實踐與科技競賽二等獎

大學生創新創業訓練項目省級立項

2003网站太阳集团第七屆“互聯網+”大學生創新創業大賽二等獎

2003网站太阳集团創青春三等獎

2003网站太阳集团第八屆“互聯網+”大學生創新創業大賽二等獎

2003网站太阳集团第九屆“互聯網+”大學生創新創業大賽二等獎

八、獲得獎勵與稱号:

 

 

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