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质子交换膜燃料电池团队——左自成

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姓名:左自成

职称:教授、博导

院系:能源电力创新研究院

研究方向:

1. 氢能用新型离子交换膜材料开发

2. 二维石墨炔膜材料

3. 高性能锂电池/钠电池关键材料开发

热烈欢迎有志为绿色能源发展做贡献的学生咨询并报考研究生!

联系方式:

邮箱:zuozic@ncepu.edu.cn

地址:华北电力大学科研楼K418


个人简介

左自成,男,教授,博士生导师,国家级青年人才。2006年本科毕业于四川大学;2011年博士毕业于中国科学院化学研究所,师从李玉良院士;2011年-2013年,美国德州大学奥斯汀分校博士后,合作导师:Prof. Arumugam Manthiram2013年,北大先行科技产业有限公司;2016年-2024年,中国科学院化学研究所助理研究员、副研究员;2024年8月至今,华北电力大学教授。2019年入选中国科学院青年创新促进会;2021年获得中国科学院杰出科技成就奖;2022年获得国家级青年人才。主持中组部人才项目1项,主持国家自然科学面上项目、青年基金、中国科学院人才项目各1项,作为骨干参与多项国家重点研发计划和国家自然科学基金重点项目。Joule, Angew. Chem. Int. Ed., Adv. Mater., Nat. Commun., J. Am. Chem. Soc., Chem. Rev., Acc. Chem. Res., Nano Energy, Energy Stor. Mater., Nano Today, 期刊发表论文90余篇,申请中国专利7引用7000余次参与英文著作2部。Adv. Mater., Nat. Commun., J. Am. Chem. Soc., 等期刊审稿人。

代表成果:

1. Zuo Z.*; Cheng S.; Zhang S.; Zhang Y.; Visualizing and Understanding the Reaction-Coupled Ion Grotthuss Transport in Single-Crystal Organic Battery. Angew. Chem. Int. Ed. 2026, doi.org/10.1002/anie.202519541.

2. Zuo Z.*; Gao X.; Zhang S.; Chen Z.; Zhang Y.; sp-Carbon-Mediated 2D/Quasi-2D Interfacial Hybridization for Stable Sodium-Ion Storage, Carbon 2026, 248, 121208

3. Feng Y.;  Qian L.; Feng K.*; Xu B.;  Xu J.; Lu C.;  Zhang W.;  Feng X.; Zuo Z.*; Zhong J.*; Electronic Backflow Through Oxygen Bridge in RuOxGraphdiyne for Stable Acidic Water Oxidation Small 2026, 22, e10570

4. Jiang Z.; Zhang S.; Xu J.; Liu Y.; Zhang Y.; Liu J.; Zuo Z. Two-dimensional materials for selective ion transport membrane: Synthesis and application advances Colloids and Interfaces 2025, 9, 63

5. Cheng, S. J.; Zuo, Z. *; Li, Y. * Self-Adaptive Graphdiyne/Sn Interface for High-Performance Sodium Storage. Adv. Sci. 2024, 11, 202401240.

6. Gao, X.; Tian, J.; Cheng, S.; Zuo, Z. *; Wen, R. *; He, F.; Li, Y. *, A Low-Strain Cathode by sp-Carbon Induced Conversion in Multi-Level Structure of Graphdiyne. Angew. Chem. Int. Ed 2023, 62, 202304491.

7. Pan, H.; Zuo, Z. *; He, F.; Li, Y., In-situ Induced Self-solidification and Activation of Ultra-high Energy Density Organic Cathode. Energy Stor. Mater. 2022, 52, 465.

8. Chang, Q.; Zuo, Z. *; Pan, H.; Li, L.; Li, Y. * sp-Carbon-Enabled Interface for High-Performance Graphite Anode. Nano Today 2022, 44, 101478.

9. Gao, X.; Zuo, Z. *; Wang, F.; Chang, Q.; Pan, H.; Li L.; He, F.; Li, Y. * Controlling Precise Voids in the Ion-Selective Carbon Shell for Zero-Strain Electrode. Energy Stor. Mater. 2022, 45, 110

10. Pan H.; Jiang Z.; Zuo Z. *; He F.; Wang F.; Li Y. *; Chang Q.; Guan B.; Li Y., Proton selective anode nanochannel for efficient methanol utilization. Nano Today 2021, 39, 101213.

11. Zuo Z. *; He F.; Wang F.; Li L.; Li Y*, Spontaneously Splitting Copper Nanowires into Quantum Dots on Graphdiyne for Suppressing Lithium Dendrites. Adv. Mater. 2020, 32, 2004379.

12. Li L.; Zuo Z. *; Wang F.; Gao J.; Cao A.; He F.; Li Y* In Situ Coating Graphdiyne for High-Energy-Density and Stable Organic Cathodes. Adv. Mater. 2020, 32, 2000140.

13. Wang F.; Zuo Z. *; Li L.; He F.; Li Y. * Graphdiyne Nanostructure for High-Performance Lithium-Sulfur Batteries, Nano Energy 2020, 68, 104307.

14. Wang F.; Zuo Z. *; Li L.; Li K.; He F.; Jiang Z.*; Li Y*. Large-Area Aminated-Graphdiyne Thin Films for Direct Methanol Fuel Cells. Angew. Chem. Int. Ed. 2019, 58, 15010. 

15. Wang F.; Zuo Z. *; Li L.; He F.; Lu F.; Li Y.* A Universal Strategy for Constructing Seamless Graphdiyne on Metal Oxides to Stabilize the Electrochemical Structure and Interface. Adv. Mater. 2019, 31, 1806272.

16. Zuo Z.; Li Y. * Emerging Electrochemical Energy Applications of Graphdiyne. Joule 2019, 3, 899-903.

17. Zuo Z.; Wang D.; Zhang J.; Lu F.; Li Y.* Synthesis and Applications of Graphdiyne-Based Metal-Free Catalysts. Adv. Mater. 2019, 31, 1803762.

18. Shang H.; Zuo Z. *; Li L.; Wang F.; Liu H.; Li Y.; Li Y.* Ultrathin Graphdiyne Nanosheets Grown In Situ on Copper Nanowires and Their Performance as Lithium-Ion Battery Anodes. Angew. Chem. Int. Ed. 2018, 57, 774.

19. Shang H.; Zuo Z. *; Yu L.; Wang F.; He F.; Li Y. * Low-Temperature Growth of All-Carbon Graphdiyne on a Silicon Anode for High-Performance Lithium-Ion Batteries. Adv. Mater. 2018, 30, 1801459.

其他文章请参考Web of Science或Google Scholar.



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