
01课题组负责人简介
管大秦,2026年9月全职加入苏州大学能源学院,担任教授、博士生导师、课题组负责人(PI)。入选2025年国家海外高层次青年人才项目(海外优青),获评澳大利亚研究理事会优秀青年学者(ARC DECRA Fellowship 2025)。2016年和2021年分别获南京工业大学化工学院学士和博士学位,师从邵宗平教授、周嵬教授;随后赴香港理工大学从事博士后研究,合作导师为倪萌教授;后任澳大利亚科廷大学研究员、博士生导师,合作导师为邵宗平教授。
主要从事氧化物材料在绿色制氢与能源转化器件中的应用研究,具有近10年的材料结构解析及原位/非原位软、硬X射线同步辐射研究经验,并具有3年的电化学器件制备工艺开发与优化经验。
以第一作者(非共一)身份在Nature Communications(2)、Advanced Materials(4)、Energy & Environmental Science(1)等国际期刊发表论文12篇,以共同通讯作者身份发表论文8篇,累计发表SCI论文93篇,其中高被引论文15篇,总引用9430余次,H指数51。先后作为项目负责人主持基金项目4项。
曾获2022年江苏省优秀博士学位论文、2021年化学化工与材料京博优秀博士论文奖,并入选2024年及2025年全球前2%顶尖科学家榜单。长期担任 60余种国际期刊独立审稿人,累计完成同行评审500余次;担任Advanced Powder Materials和Carbon Energy期刊青年编委。
02 主要研究方向
①电化学器件制备工艺开发与反应机制研究;
②新型氧化物材料的理性设计、开发与应用;
③AI驱动的电化学器件优化与催化材料设计。
03第一/通讯作者代表性论文
1.Guan, D.(独立一作), Ryu, G., Hu, Z., Zhou, J., Dong, C.-L., Huang, Y.-C., Zhang, K., Zhong, Y., Komarek, A. C., Zhu, M., Wu, X., Pao, C.-W., Chang, C.-K., Lin, H.-J., Chen, C.-T., Zhou, W.* & Shao, Z.* Utilizing ion leaching effects for achieving high oxygen-evolving performance on hybrid nanocomposite with self-optimized behaviors. Nat. Commun. 11, 3376 (2020).
2.Guan, D.(独立一作), Zhou, J., Huang, Y. C., Dong, C. L., Wang, J. Q., Zhou, W.* & Shao, Z.* Screening highly active perovskites for hydrogen-evolving reaction via unifying ionic electronegativity descriptor. Nat. Commun. 10, 3755 (2019).
3.Guan, D.*#(共同一作第一兼共同通讯作者), Xu, H.#, Sun, X., Zhao, L., Peng, C. K., Jing, C., Huang, Y. C., Tang, J., Shi, N., Lin, Z., Xu, X., Hu, Z., & Shao, Z.* Efficient hydroxyl diffusion triggers surface hydronium enrichment and bulk proton participation to boost alkaline hydrogen‐evolving reaction. Adv. Mater. e74662 (2026).
4.Guan, D.#(共同一作第一), Xu, H.#, Huang, Y. C.#, Jing, C.#, Tsujimoto, Y., Xu, X., Lin, Z., Tang, J., Wang, Z., Sun, X., Zhao, L., Liu, H., Liu, S., Chen, C. T., Pao, C. W., Ni, M., Hu, Z.* & Shao, Z.* Operando studies redirect spatiotemporal restructuration of model coordinated oxides in electrochemical oxidation. Adv. Mater.37, 2413073 (2025).
5.Guan, D.*#(共同一作第一兼共同通讯作者), Xu, H.#, Zhang, Q.#, Huang, Y. C.#, Shi, C., Chang, Y. C., Xu, X., Tang, J., Gu, Y., Pao, C. W., Haw, S. C., Chen, J. M., Hu, Z.*, Ni, M.* & Shao, Z.* Identifying a universal activity descriptor and a unifying mechanism concept on perovskite oxides for green hydrogen production. Adv. Mater. 35, 2305074 (2023). ESI高倍引论文
6.Guan, D.#(共同一作第一), Zhang, K.#, Hu, Z., Wu, X., Chen, J. L., Pao, C. W., Guo, Y., Zhou, W.* & Shao, Z.* Exceptionally robust face-sharing motifs enable efficient and durable water oxidation. Adv. Mater.33, 2103392 (2021).
7.Guan, D.#(共同一作第一), Wang, B.#, Zhang, J.#, Shi, R., Jiao, K.*, Li, L., Wang, Y., Xie, B., Zhang, Q., Yu, J., Zhu, Y., Shao, Z.* & Ni, M.* Hydrogen society: from present to future. Energy Environ. Sci.16, 4926-4943 (2023). ESI热点论文兼高倍引论文
8.Guan, D.(独立一作), Zhou, J., Hu, Z.*, Zhou, W.*, Xu, X., Zhong, Y., Liu, B., Chen, Y., Xu, M., Lin, H. J., Chen, C. T., Wang, J. & Shao, Z.* Searching general sufficient-and-necessary conditions for ultrafast hydrogen-evolving electrocatalysis. Adv. Funct. Mater. 29, 1900704 (2019).
9.Zhang, H., Gao, Y., Xu, H., Guan, D.* (共同通讯作者), Hu, Z., Jing, C., Sha, Y., Gu, Y., Huang, Y. C., Chang, Y. C., Pao, C. W., Xu, X., Lee, J. F., Chin, Y. Y., Lin, H. J., Chen, C. T., Chen, Y., Guo, Y., Ni, M., Zhou, W.* & Shao, Z.* Combined corner-sharing and edge-sharing networks in hybrid nanocomposite with unusual lattice-oxygen activation for efficient water oxidation. Adv. Funct. Mater. 32, 2207618 (2022).
10.Zhang, H.#, Xu, H.#, Chen, J., Guan, D.* (共同通讯作者), Hu, Z., Xu, X., Lin, Z., Sun, H., Sun, X., Tang, J., Pao, C.-W., Chen, C.-T., Zhou, W., Wang, C., Guo, Y.* & Shao, Z.* Self-optimized interfacial Co–O–Ru motifs of hollow nanotube composites trigger interfacial lattice oxygen participation and diffusion. ACS Nano 19, 25917-25929 (2025).
11.Guan, D.*#(共同一作第一兼共同通讯作者), Zhong, J.#, Xu, H.#, Huang, Y.-C.#, Hu, Z., Chen, B., Zhang, Y., Ni, M., Xu, X., Zhou, W. & Shao, Z.* A universal chemical-induced tensile strain tuning strategy to boost oxygen-evolving electrocatalysis on perovskite oxides. Appl. Phys. Rev. 9, 011422 (2022). ESI高倍引论文
12.Guan, D.*#(共同一作第一兼共同通讯作者), Shi, C.#, Xu, H.#, Gu, Y.#, Zhong, J., Sha, Y., Hu, Z., Ni, M.* & Shao, Z.* Simultaneously mastering operando strain and reconstruction effects via phase-segregation strategy for enhanced oxygen-evolving electrocatalysis. J. Energy Chem. 82, 572-580 (2023). ESI高倍引论文
13.Zhang, H., Guan, D.* (共同通讯作者), Gu, Y., Xu, H., Wang, C., Shao, Z.* & Guo, Y.* Tuning synergy between nickel and iron in Ruddlesden–Popper perovskites through controllable crystal dimensionalities towards enhanced oxygen‐evolving activity and stability. Carbon Energy, e465 (2024). ESI高倍引论文
14.Zhu, M.#, Xu, H.#, Dai, J., Guan, D.* (共同通讯作者), Hu, Z., She, S., Chen, C.-T., Ran, R.*, Zhou, W. & Shao, Z.* A dynamically stable self-assembled CoFe (oxy)hydroxide-based nanocatalyst with boosted electrocatalytic performance for the oxygen-evolution reaction. J. Mater. Chem. A 12, 24308-24317 (2024).
15.Guan, D.#(共同一作第一), Zhang, K.#, Zhou, W. & Shao, Z.* Utilizing the charge-transfer model to design promising electrocatalysts. Curr. Opin. Electrochem.30, 100805 (2021).
16.Guan, D.(独立一作), Zhou, W. & Shao, Z.* Rational design of superior electrocatalysts for water oxidation: crystalline or amorphous structure? Small Sci. 1, 2100030 (2021).
17.Zhang, H., Zhu, W.*, Yang, Z., Luo, X.*, Huang, L. & Guan, D.* (末尾通讯作者). Highly conductive, mechanically robust and multi-purpose carbon aerogel composites derived from waste bread enable high-performance symmetric supercapacitors. J. Power Sources615, 235067 (2024).
18.Xu, H., Zhang, F., Fang, L., Xu, Y., Yu, Z. W.*, Ma, L.*, Guan, D* (共同通讯作者) & Shao, Z.* Deciphering the nitrogen activation mechanisms on group VIII single atoms at MoS2. Inorg. Chem. 63, 19570-19581 (2024).
19.Xu, H.* & Guan, D* (末尾通讯作者). Exceptional anisotropic noncovalent interactions in ultrathin nanorods: the terminal σ-hole. ACS Appl. Mater. Interfaces14, 51190-51199 (2022).
20.Xu, H., Zhu, J. Z., Zou, C., Zhang, F., Ming, D., Guan, D.*(共同通讯作者) & Ma, L.* Theoretical design of core-shell 3d-metal nanoclusters for efficient hydrogen-evolving reaction. Energy Fuels 37, 16781-16789 (2023).
04 招生招聘
本课题组长期招收博士后、博士研究生和硕士研究生,欢迎能源材料、电化学及相关交叉研究方向的优秀青年学者和学生加入。有意者请将个人简历及相关材料发送至:daqinguan1994@163.com

