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凌苇

时间:2024/09/05 17:20:37  来源:   作者:   点击:



姓名:凌苇                           性别:男


出生年月:1993. 03                    籍贯:湖南省衡阳县

民族:汉                             政治面貌:中共党员

职称:校聘教授(青年英才B类)       学历:博士研究生

学位:工学博士                       毕业学校:哈尔滨工业大学

邮箱:wling@hunau.edu.cn             

个人简介:

凌苇,男,中共党员,硕士生导师,校聘教授。近年来,在Angew. Chem. Int. Ed., Adv. Mater. Energy Environ. Sci., Adv. Energy Mater.,Adv. Funct. Mater., ACS Nano等期刊发表高水平论文40余篇,其中以第一作者或通讯作者发表SCI论文20余篇(影响因子10以上的中科院一区论文10篇);申请和授权专利6项,专利成果转让3项(转让金额30万);参与和主持国家级(国自科青年和面上基金)、省部级(省自科青年项目和杰出青年基金)、市厅级和其他校企合作课题共计7项;担任Energy Materials期刊青年编委(IF=11.8)。2023年8月以高层次人才引进方式进入湖南农业大学化学与材料科学学院工作,2024年6月认定为神农学者青年英才(B类),校聘教授。

学习经历:

2019.09-2023.06:哈尔滨工业大学,材料科学与工程专业,博士

2016.09-2019.06:湖南农业大学, 应用化学,硕士

2012.09-2016.06:湖南农业大学,材料化学,本科

工作经历:

2023.08-至今:湖南农业大学化学与材料科学学院,专任教师

研究方向:

(1)           聚焦“双碳”目标,大力推进新型储能电池技术的开发与应用,主要包括固态金属二次电池、多功能锌基电池和液流电池等;

(2)           开展农业环境污染治理与修复,推进材料化学与农学领域的交叉研究,紧紧围绕生物基能源和农田重金属污染修复等功能材料制备与应用融合创新。

主讲课程:

1、   材料化学专业本科:《材料结构与性能》

2、   公共课本科:《无机及分析化学》,《基础化学实验课》

3、   研究生课程:《现代分析测试技术》

代表性论文(第一作者和通讯作者):

2024

1. Wei Ling#, Chenxi Nie#, Xiongwei Wu, Xian-Xiang Zeng, Funian Mo, Qiang Ma, Zhouguang Lu, Guangfu Luo*, Yan Huang*. Ion Sieve Interface Assisted Zinc Anode with High Zinc Utilization and Ultralong Cycle Life for 61 Wh/kg Mild Aqueous Pouch Battery. ACS Nano 2024, 18 (6), 5003-5016. (中科院一区,IF=15.8)

2. Li Zhou, Weibin Zhou, Hongrui Wang, Qi Deng, Xingtong Ai, Xian-Xiang Zeng, Xiongwei Wu*, Congshan Zhou*, Wei Ling*. In-situ constructed interface buffer layer enabled highly reversible Zn Deposition/Stripping for long-lifespan aqueous zinc metal anodes. Chem. Eng. J. 2024, 492, 152324. (中科院一区, IF=13.1)

3. Xiaoyi Huangyang#, Hongrui Wang#, Weibin Zhou, Qi Deng, Zhuo Liu, Xian-Xiang Zeng*, Xiongwei Wu*, Wei Ling*. In Situ Growth of Amorphous MnO2 on Graphite Felt via Mild Etching Engineering as a Powerful Catalyst for Advanced Vanadium Redox Flow Batteries. ACS Appl. Mater. Interfaces, 2024, 16, 32189-32197. (中科院二区, IF=9.5)

4. Xuewen Wu, Jingjing Liao*, Haikun Zhou, Xingrong Yin, Saixiang Wu, Xiongwei Wu*, Zhiyong Xie*, Wei Ling*. Revealing the Effects of Impurities among Phosphoric Acid Electrolytes for the Stability of All-Vanadium Redox Flow Batteries. ACS Appl. Energy Mater. 2024, 7 (6), 2255-2263. (中科院三区, IF=5.4)

5. Xuewen Wu, Jingjing Liao*, Xingrong Yin, Jun Liu, Saixiang Wu, Xiongwei Wu*, Zhiyong Xie*,Wei Ling*. Effect of phosphoric acid additive on the electrolyte of all-vanadium flow batteries. Chem. Commun. 2024, 60 (21), 2906-2909. (中科院二区,IF=4.3)

6. Hongyi Liu, Junping Hu, Xianxiang Zeng, Xiaoyi Huangyang, Qixin Yang, Xiongwei Wu*, Feng Zhang*, Wei Ling*. Influence of Ni impurity ions in electrolyte on the performance of vanadium redox flow battery. J. Mater. Sci.-Mater. Electron. 2024, 35 (16), 1075. (中科院四区,IF=2.8)

Before 2024

7. Wei Ling, Na Fu, Junpei Yue, Xian‐Xiang Zeng, Qiang Ma, Qi Deng, Yao Xiao, Li‐Jun Wan, Yu‐Guo Guo, Xiong‐Wei Wu*. A Flexible Solid Electrolyte with Multilayer Structure for Sodium Metal Batteries. Adv. Energy Mater. 2020, 10 (9), 1903966. (中科院一区,IF=29.3)

8. Wei Ling#, Qixin Yang#, Funian Mo, Hao Lei, Jiaqi Wang, Yan Jiao, Yejun Qiu*, Tang Chen*, Yan Huang*. An ultrahigh rate dendrite-free Zn metal deposition/striping enabled by silver nanowire aerogel with optimal atomic affinity with Zn. Energy Storage Mater. 2022, 51, 453-464. (中科院一区,IF=20.4)

9. Wei Ling, Hua Wang, Zhe Chen, Zhenyuan Ji, Jiaqi Wang, Jun Wei, Yan Huang*. Intrinsic Structure Modification of Electrode Materials for Aqueous Metal‐Ion and Metal‐Air Batteries. Adv. Funct. Mater. 2021, 31 (5), 2006855. (中科院一区,IF=19.9)

10. Wei Ling, Funian Mo, Jiaqi Wang, Qingjiang Liu, Yao Liu, Qixin Yang, Yejun Qiu, Yan Huang*. Self-healable hydrogel electrolyte for dendrite-free and self-healable zinc-based aqueous batteries. Mater. Today Phys. 2021, 20, 100458. (中科院一区,IF=11.0)

11. Wei Ling#, Qi Deng#, Qiang Ma, Hong‐Rui Wang, Chun‐Jiao Zhou, Jian‐Kai Xu, Ya‐Xia Yin, Xiong‐Wei Wu*, Xian‐Xiang Zeng*, Yu‐Guo Guo*. Hierarchical carbon micro/nanonetwork with superior electrocatalysis for high‐rate and endurable vanadium redox flow batteries. Adv. Sci. 2018, 5 (12), 1801281. (中科院一区,IF=15.8)

12. Wei Ling, Zhi-An Wang, Qiang Ma, Qi Deng, Jian-Feng Tang, Lei Deng, Liang-Hong Zhu, Xiong-Wei Wu*, Jun-Pei Yue*, Yu-Guo Guo*. Phosphorus and oxygen co-doped composite electrode with hierarchical electronic and ionic mixed conducting networks for vanadium redox flow batteries. Chem. Commun. 2019, 55 (77), 11515-11518. (中科院一区,IF=6.1)

13. Wei Ling, Xiongwei Wu*, Funian Mo*. 3D Carbon Nanonetwork Coated Composite Electrode with Multi-Heteroatom Doping for High-Rate Vanadium Redox Flow Batteries. Polymers 2022, 14 (23), 5269. (中科院二区,IF=5.0)

14. Wei Ling, Panpan Wang, Zhe Chen, Hua Wang, Jiaqi Wang, Zhenyuan Ji, Jinbo Fei, Zhiyuan Ma, Ning He, Yan Huang*. Nanostructure Design Strategies for Aqueous Zinc-Ion Batteries. ChemElectroChem 2020, 7 (14), 2957-2978. (中科院二区,IF=4.1)

15. Qixin Yang#, Wei Ling#, Yongkang Xu, Huanhui Chen, Hui Guo, Liubiao Zhong*, Yejun Qiu*. Large-scale production of high-quality elastic structural color films based on hydrogen bond and colloidal charge co-driven silica microsphere self-assembly. Chem. Eng. J. 2023, 455, 140591. (中科院一区,IF=15.1)

16. Yao Liu#, Shuailong Guo#, Wei Ling#, Mangwei Cui, Hao Lei, Jiaqi Wang, Wenzheng Li, Qingjiang Liu, Lukuan Cheng, Yan Huang*. In-situ oriented oxygen-defect-rich Mn N O via nitridation and electrochemical oxidation based on industrial-scale Mn2O3 to achieve high-performance aqueous zinc ion battery. J. Energy Chem. 2023, 76, 11-18. (中科院一区,IF=13.1)

17. Ning He#, Wei Ling#, Xixi Ji, Chengrong Yu, Shang Liu, Bao Qin, Xuan Zhang, Yexin Zhou, Funian Mo, Hao Lei, Lin Zeng, Meng Lin, Zheng Zhong, Jie Yu, Yan Huang. Automatic Snorkeling Electronic Equipment Enabled by Self‐Breathing Flexible Aqueous Aluminum‐Air Battery. Adv. Mater. Technol. 2022, 8 (2), 2201092. (中科院二区,IF=8.8)

18. Peng Huang#, Wei Ling#, Hang Sheng, Yan Zhou, Xiaopeng Wu, Xian-Xiang Zeng*, Xiongwei Wu*, Yu-Guo Guo*. Heteroatom-doped electrodes for all-vanadium redox flow batteries with ultralong lifespan. J. Mater. Chem. A 2018, 6 (1), 41-44. (中科院一区,IF=10.7)

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