郭威 副教授 博士 陕西省 研究领域: 储能 研究方向: (1)电化学储能技术(水系电池、超级电容器、微型与可穿戴储能器件等) (2)高强韧与可修复型仿生高分子复合材料的设计开发 (3)电化学催化技术(水裂解等)及其反应机理 所在单位: 西北工业大学

基本信息

所在单位:
西北工业大学
机构细分:
化学与化工学院
单位类型:
高等院校
职务:
副教授
职称:
副教授
最高学历:
博士
教育经历:
2019.11-2020.11  劳伦斯伯克利国家实验室,联合培养  合作导师:郭晶华 资深研究员
2015.09-2021.03  大连理工大学, 博士               导师:邱介山教授、于畅教授
2011.09-2015.06  中国矿业大学,学士               班主任:曹景沛教授
工作经历:
2025.03-至今 西北工业大学 化学与化工学院 长聘副教授
2024.07-至今 西北工业大学 化学与化工学院 博士生导师
2021.04-2025.02 西北工业大学 化学与化工学院 准聘副教授
专家介绍:
郭威,西北工业大学长聘副教授,博士生导师,师从邱介山教授和于畅教授,曾于美国劳伦斯伯克利国家实验室郭晶华研究员课题组访学,随后进入西北工业大学从事教学科研工作。近年来从事电化学储能与催化、高强韧仿生高分子等研究,共发表SCI论文40余篇,以第一/通讯作者在Nat. Commun.、Adv. Mater.、Energy Environ. Sci.、Angew. Chem. Int. Ed.、Matter等发表论文20余篇,现主持国家自然科学基金2项、陕西省自然科学基金和中国博士后科学基金特别资助等9项,入选陕西省“三秦英才特支计划”QB、中国科协青年人才托举工程、陕西省科协青年人才托举计划和西北工业大学“翱翔新星”人才计划,获辽宁省优秀博士论文、京博优秀博士论文奖提名奖、辽宁省优秀毕业生、NRE Young Star Researcher Award 2023 (Gold Award)、西北工业大学青年科学奖等荣誉共计10余项,担任《材料科学与工艺》(CSCD核心)、Carbon Energy(IF: 20.5)、Carbon Neutrality等多个中英文期刊的青年编委。
专家荣誉:
8.陕西省“三秦英才特支计划”QB,2025.02
7.中国科协青年人才托举工程,2025.01
6.陕西省科协青年人才托举计划,2023.05
5.西北工业大学“翱翔新星”人才计划,2023.12
4.西北工业大学青年科学奖,2023.12
3.纳米能源研究学术新星(金奖),NRE Young Star Researcher Award 2023 (Gold Award),2023.12
2. 2022年度辽宁省优秀博士论文,2023.03
1. 2021年度“京博优秀博士论文奖”提名奖(化学化工与材料) 2021.10

科研能力

研究领域:
储能
研究方向:
(1)电化学储能技术(水系电池、超级电容器、微型与可穿戴储能器件等)
(2)高强韧与可修复型仿生高分子复合材料的设计开发
(3)电化学催化技术(水裂解等)及其反应机理
中文标签:
建筑工程项目;质量控制体系;质量控制
论文著作:
16. Chenxi Li#, Wei Guo#*, Jinxin Wang, Wanbin Dang, Qiuyu Zhang*. Conformal reconstruction and dual-vacancy engineering breaks kinetics limitations for energetic aqueous dual-cation storage.
Angewante Chemie International Edition, 2025, DOI: 10.1002/202422403.
15. Jinxin Wang#, Wei Guo#*, Mingming Sun, Geng Zhang, Yang Meng, Qiuyu Zhang*. Deciphering the dynamic solid-liquid interphase for energetic high-mass-loading energy storage.
Energy & Environmental Science, 2025, 18, 960-971.
14. Geng Zhang, Wei Guo*, Hong Zheng, Xiang Li , Jinxin Wang, Qiuyu Zhang*. Identifying and tuning coordinated water molecules for efficient electrocatalytic water oxidation.
Nature Communications, 2024, 15, 10845.
13. Mingming Sun, Wei Guo*, Jinxin Wang, Qiuyu Zhang*. Microenvironment reconstitution-induced collaborative oxyanions-vacancies engineering for enhanced high-mass-loading energy storage.
Advanced Functional Materials, 2024, 34, 2405116.
12. Wanbin Dang, Wei Guo*, Wenting Chen, Jinxin Wang, Qiuyu Zhang*. Extreme environment-adaptable and ultralong-life energy storage enabled by synergistic manipulation of interfacial environment and hydrogen bonding.Energy Storage Materials, 2025, 74, 103915.
11. Jinxin Wang#, Wei Guo#*, Zongxu Liu, Qiuyu Zhang*.  Engineering of self-aggregation-resistant MnO2 heterostructure with a built-in field for enhanced high-mass-loading energy storage.
Advanced Energy Materials, 2023, 13, 2300224.
10. Wei Guo*, Chaochao Dun, Feipeng Yang, Cheng Zhan*, Jeffrey J. Urban, Jinghua Guo, Qiuyu Zhang*. Robust interfacial effect in multi-interface environment through hybrid reconstruction chemistry for enhanced energy storage.
ACS Nano, 2023, 17, 25357–25367.
9. Wei Guo#, Chaochao Dun#, Matthew A. Marcus#, Victor Venturi, Zack Gainsforth, Feipeng Yang, Xuefei Feng, Venkatasubramanian Viswanathan, Jeffrey J. Urban, Chang Yu,* Qiuyu Zhang,* Jinghua Guo* and Jieshan Qiu*. The emerging layered hydroxide plates with record thickness for enhanced high-mass-loading energy storage.
Advanced Materials, 2023, 35, 2211603. (Highlighted by SciTechDaily titled "Increasing the Energy Density of Hybrid Supercapacitor Electrodes")
8. Wei Guo#, Chaochao Dun#, Chang Yu*, Xuedan Song, Feipeng Yang, Wenzheng Kuang, Yuanyang Xie, Shaofeng Li, Zhao Wang, Jinhe Yu, Guosheng Fu, Jinghua Guo, Matthew A. Marcus, Jeffrey J. Urban, Qiuyu Zhang*, Jieshan Qiu* Mismatching integration-enabled strains and defects engineering in LDH microstructure for high-rate and long-life charge storage,
Nature Communications, 2022, 13, 1409. (100+ citations)
7. Wei Guo, Feipeng Yang, Chang Yu,* Yuanyang Xie, Jiuke Chen, Yisheng Liu, Yang Zhao, Juan Yang, Xuefei Feng, Shaofeng Li, Zhao Wang, Jinhe Yu, Kunlun Liu, Kun Qian, Mesfin Tsige, Qiuyu Zhang,* Jinghua Guo,* and Jieshan Qiu* Operando leaching of pre-incorporated Al and mechanism in transition metal hybrids on carbon substrates for enhanced charge storage,
Matter, 2021, 4, 2902-2918. (Cell姊妹刊)
6. Wei Guo, Chang Yu*, Shaofeng Li, Xuedan Song, Huawei Huang, Xiaotong Han, Zhao Wang, Zhibin Liu, Jinhe Yu, Xinyi Tan, Jieshan Qiu*.  A Universal Converse Voltage Process for Triggering Transition Metal Hybrids In Situ Phase Restruction toward Ultrahigh-Rate Supercapacitors.
Advanced Materials, 2019, 31, 1901241.(100+ citations, Highlighted by 蔻享学术 in the form of video)
5. Wei Guo, Chang Yu*, Shaofeng Li, Jieshan Qiu*. Toward commercial-level mass-loading electrodes for supercapacitors: opportunities, challenges and perspectives.
Energy & Environmental Science, 2021, 14, 576-601. (230+ citations, 持续ESI高被引)
4. Wei Guo, Chang Yu*, Shaofeng Li, Xuedan Song, Ying Yang, Bo Qiu, Changtai Zhao, Huawei Huang, Juan Yang, Xiaotong Han, Dan Li, Jieshan Qiu*. A Phase Transformation-Resistant Electrode Enabled by a MnO2-Confined Effect for Enhanced Energy Storage.
Advanced Functional Materials, 2019, 29, 1901342.
3. Wei Guo, Chang Yu*, Shaofeng Li, Zhao Wang, Jinhe Yu, Huawei Huang, Jieshan Qiu*.  Strategies and Insights towards the Intrinsic Capacitive Performance of MnO2: Challenges and Perspectives.
Nano Energy, 2019, 57, 459-472. (300+ citations, 持续ESI高被引)
2. Wei Guo, Chang Yu*, Shaofeng Li, Juan Yang, Zhibin Liu, Changtai Zhao, Huawei Huang, Mengdi Zhang, Xiaotong Han, Yingying Niu, Jieshan Qiu*. High-Stacking-Density, Superior-Roughness LDH Bridged with Vertically Aligned Graphene for High-Performance Asymmetric Supercapacitors.
Small, 2017, 13, 1701288. (100+ citations, inside front cover)
1. Wei Guo, Chang Yu*, Changtai Zhao, Zhao Wang, Shaofeng Li, Jinhe Yu, Xinyi Tan, Yuanyang Xie, Le Yang, Hongling Huang, Rong Fu, Jieshan Qiu*. Boosting Charge Storage in 1D Manganese Oxide-carbon Composite by Phosphorus-assisted Structural Modification for Supercapacitor Applications.
Energy Storage Materials, 2020, 31, 172-180.
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