副教授

廖灿

日期:2026-03-04 发布人: 浏览量:




职称:副教授

邮箱:Liaocan@fzu.edu.cn

办公室:安全工程综合实验基地A103(三区风雨操场旁)

所在系:安全科学与工程系


个人简介:


廖灿,副教授,硕士生导师,福建省教育科研类引进生,福建省高层次人才。主要研究方向为高性能安全锂电池隔膜、电解液、固态电解质的设计及其相关性能的研究,聚焦于对锂枝晶的控制和阻燃性能的研究。目前合计发表SCI论文50余篇,以第一作者或通讯作者身份在Angewandte Chemie International EditionAdvanced Functional MaterialsEnergy Storage MaterialsNano EnergyChemical Engineering JournalJournal of Energy ChemistrySmall等国际知名期刊上发表学术论文10篇,申请发明专利2项。截止目前,发表论文总被引用超2000余次,H-index: 34担任Materials TodayJournal of Energy ChemistryChinese Chemical LettersApplied Energy国际著名期刊的独立审稿人,担任CrystalsBatteries期刊客座编辑,担任《中国塑料》、《Safety Science and Technology》、《Carbon Neutralization》等期刊青年编委。

个人学术主页:

Google scholarhttps://scholar.google.com.hk/citations?user=rXcdqekAAAAJ&hl=zh-CN&oi=ao

Reasearchgate: https://www.researchgate.net/profile/Can-Liao?ev=hdr_xprf

欢迎具有安全、材料、化学等相关学习背景的同学报考!

学习经历:


    2017.09-2023.06 中国科学技术大学 安全科学与工程 工学博士 (导师:宋磊教授 胡源研究员)

    2013.09-2017.06 四川大学 高分子材料与工程 工学学士

工作经历:


    2025.11‒至今 福州大学 环境与安全工程学院 副教授

    2023.08-2025.10 福州大学 材料科学与工程学院 副教授

研究方向:

1、
高性能聚合物固态电解质的开发

2、 复合多功能电池隔板的制备

      3、功能化锂电隔膜的设计

      4、阻燃电解液的溶剂化调控

科研项目:

1、
福州大学引进生科研启动基金,2024-2026  主持

2、 福州大学贵重仪器设备开放测试基金, 2025-2026  主持

3、 中国科学技术大学火灾安全全国重点实验室开放课题,2025-2026  主持

4、 安徽中烟工业有限责任公司烟草化学安徽省重点实验室开放课题,2026-2027  主持

科研成果:

1.
Liao, C., Zheng, T., Zhu, J., Lin, X., Duan, S., Xiao, J., Wang W., Zheng Y.*, Yan W.*, Zhang, J.* Engineering durable nitrate-enriched solvation sheaths in carbonate electrolytes through functional separator design for high-voltage lithium metal batteries[J]. Nano Energy, 2025, 142: 111283. SCI, Q1/二区top

2. Duan, S., Zhang, L., Zheng, Y*., Li, Z., Liu, Z., Liao, C*., Zhang, J*. “Rigid Exterior, Soft Interior” Design Enables High-Voltage Polyether Electrolytes for Quasi-Solid-State Batteries[J]. Angewandte Chemie International Edition, 2025, 64(32): e202502728. SCI, Q1/一区top

3. Liao, C.*, Zhu, J., Lin, X., Zheng, T., Duan, S., Xiao, J., Wang J., Zuo Y., Zheng Y.*, Wang W., Yan W., Shi Y*, Zhang, J.* Anion-coupling coordination to optimize both lithium-metal anode interfacial stability and ionic conductivity of phosphate-based electrolytes for lithium metal batteries[J]. Chemical Engineering Journal, 2025: 171076. SCI, Q1/一区top

4. Qiu S., Hu S., Liao C*., Zhang L. Design of Hindered Amine-Based Gel Electrolytes through Molecular Grafting Engineering for High-Voltage and Fire-Resistant Lithium Batteries[J]. Energy Material Advances, 2025, 6: 0425. SCI, Q1/一区top

5. Liao, C., Li, W., Han, L., Chu, F., Zou, B., Qiu, S., Kan Y.*, Song L.*, Yan W., He X., Hu Y.*, Zhang, J. Microcapsule modification strategy empowering separator multifunctionality to enhance safety of lithium‐metal batteries[J]. Small, 2024, 20(43): 2404470. SCI, Q1/二区top

6. Liao, C., Han, L., Wang, W., Li, W., Mu, X., Kan, Y.*, Zhu J., Gui Z., He X., Song L.*, Hu, Y.* Non-flammable electrolyte with lithium nitrate as the only lithium salt for boosting ultra-stable cycling and fire-safety lithium metal batteries[J]. Advanced Functional Materials, 2023, 33(17): 2212605. SCI, Q1/一区top

7. Liao, C., Mu, X., Han, L., Li, Z., Zhu, Y., Lu, J., Wang H., Song L., Kan Y.*, Hu, Y.* A flame-retardant, high ionic-conductivity and eco-friendly separator prepared by papermaking method for high-performance and superior safety lithium-ion batteries[J]. Energy Storage Materials, 2022, 48: 123-132. SCI, Q1/一区top

8. Liao, C.#, Hou, Y.#, Han, L., Zhu, Y., Wang, H., Wu, N., Hu Y., Kan Y.,* Song, L.* Expandable nitrogen-doped carbon-based anodes fabricated from self-sacrificial metal-organic frameworks for ultralong-life lithium storage[J]. Carbon, 2022, 186: 46-54. SCI, Q1/二区top

9. Hou, Y.#, Liao, C.#, Qiu, S., Xu, Z., Mu, X., Gui, Z., Song L., Hu Y.*, Hu, W.* Preparation of soybean root-like CNTs/bimetallic oxides hybrid to enhance fire safety and mechanical performance of thermoplastic polyurethane[J]. Chemical Engineering Journal, 2022, 428: 132338. SCI, Q1/一区top

10. Liao, C., Han, L., Mu, X., Zhu, Y., Wu, N., Lu, J., Zhao Y., Li X., Hu Y., Kan Y.*, Song, L.* Multifunctional high-efficiency additive with synergistic anion and cation coordination for high-performance LiNi0. 8Co0. 1Mn0. 1O2 lithium metal batteries[J]. ACS Applied Materials & Interfaces, 2021, 13(39): 46783-46793. SCI, Q1/二区top

11. Liao C., Wang, W., Wang, J., Han, L., Qiu, S., Song, L., Gui Z., Kan Y.*, Hu, Y.* Magnetron sputtering deposition of silicon nitride on polyimide separator for high-temperature lithium-ion batteries[J]. Journal of Energy Chemistry, 2021, 56: 1-10. SCI, Q1/一区top

12. Liao C., Han, L., Wu, N., Mu, X., Hu, Y.*, Kan, Y.*, Song, L. Fabrication of a necklace-like fiber separator by the electrospinning technique for high electrochemical performance and safe lithium metal batteries[J]. Materials Chemistry Frontiers, 2021, 5(13): 5033-5043. SCI, Q1/二区)

13. Liao C, Wang, W., Han, L., Mu, X., Wu, N., Wang, J., Gui Z., Hu Y., Kan Y.*, Song, L.* A flame retardant sandwiched separator coated with ammonium polyphosphate wrapped by SiO2 on commercial polyolefin for high performance safety lithium metal batteries[J]. Applied Materials Today, 2020, 21: 100793. SCI, Q1/二区)


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