刘静静,女,汉族,博士,中共党员。2023年6月毕业于湖南大学,获得理学博士学位,同年入职新利luck在线·(中国)有限公司官网材料科学与工程学院。主要从事单原子催化剂、低维纳米催化剂、碳气凝胶催化剂的设计与构筑,并应用于燃料电池、金属-空气电池以及电化学合成过氧化氢等能源与催化领域。近年来在Nat. Commun., Adv. Mater., Appl. Catal. B Environ.等国际权威期刊上发表高水平SCI论文19余篇,部分成果被国内外同行在Nat. Commun., Chem. Soc. Rev.等顶级期刊引用报道。2021年被Cell Press评为年度最受欢迎中国科学家和论文的称号。多次参加国内外学术会议交流,并获得“优秀口头汇报奖”、“论文最佳人气奖”等荣誉。
主持/参与的主要科研项目:
(1) 中南大学创新创业师生共创重点项目(3万),校级,已结题,主持
(2) 中南大学研究生科研创新项目(0.95万),校级,已结题,主持
(3) 中南大学贵重仪器开放共享基金项目(0.8万),校级,已结题,主持
(4) 湖南省自然科学基金重大项目(揭榜制),省部级,在研,参与
(5) 国家自然科学基金重大研究计划-培养项目,国家级,在研,参与
近5年发表部分论文:
(1) J. Liu, Z. Wei, Z. Gong, M. Yan, Y. Hu, S. Zhao, G. Ye*, H. Fei*. Single-atom CoN4 sites with elongated bonding induced by phosphorus doping for efficient H2O2 electrosynthesis. Applied Catalysis B: Environmental, 2023, 324: 122267. (IF:24.9)
(2) J. Liu, Z. Gong, C. Allen, W. Ge*, H. Gong, J. Liao, J. Liu, K. Huang, M. Yan, R. Liu, G. He, J. Dong, G. Ye*, H. Fei*. Edge-hosted Fe-N3 sites on a multiscale porous carbon framework combining high intrinsic activity with efficient mass transport for oxygen reduction. Chem Catalysis, 2021, 1(6): 1291-1307. (Cell Press旗下首本聚焦催化领域专刊,首个IF:10.8)
(3) J. Liu, Z. Gong, M. Yan, G. He, H. Gong, G. Ye*, H. Fei*. Electronic structure regulation of single-atom catalysts for electrochemical oxygen reduction to H2O2. Small, 2022, 43(4): 1101-1110. (IF:15.1)
(4) J. Liu, T. He, Q. Wang, Z. Zhou, Y. Zhang, H. Wu, Q. Li, J. Zheng, Z. Sun*, Y. Lei*, J. Ma and Y. Zhang*, Confining ultrasmall bimetallic alloys in porous N–carbon for use as scalable and sustainable electrocatalysts for rechargeable Zn–air batteries. Journal of Materials Chemistry A, 2019, 7, 12451. (IF:14.5)
(5) M. Gao#, J. Liu#, G. Ye*, Z. Zhao, J. Liu, G. He, Z. Gong, K. Huang, H. Sun*, H. Fei*, Molecular iron phthalocyanine catalysts on morphology- engineered graphene towards the oxygen reduction reaction, Science China Materials, 2023, DOI: 10.1007/s40843-023-2554-x. (IF:8.1)
(6) Z. Gong, J. Liu, M. Yan, H. Gong, G. Ye*, and H. Fei*, Highly durable and efficient seawater electrolysis enabled by defective graphene-
confined nanoreactor, ACS Nano, 2023, DOI: 10.1021/acsnano.3c05749. (IF:17.1)
(7) Z. Gong, J. Liu, G. Ye*, H. Fei*. Amorphous/crystalline heterophase electrocatalysts: synthesis, applications and perspectives. Chemical communication, 2023, 59, 5661-5676. (IF:4.9)
(8) H. Gong, Z. Wei, Z. Gong, J. Liu, G. Ye*, M. Yan, J. Dong, C. Allen, J. Liu, K. Huang, R. Liu, G. He, S. Zhao*, H. Fei*. Low-coordinated Co-N-C on oxygenated graphene for efficient electrocatalytic H2O2 production. Advanced Functional Materials, 2022, 32, 210688. (IF:19.0)
(9) Z. Gong, R. Liu, H. Gong, G. Ye*, J. Liu, J. Dong, J. Liao, M. Yan, J. Liu, K. Huang, L. Xing, J. Liang, Y. He, and H. Fei*. Constructing a graphene-encapsulated amorphous/crystalline heterophase NiFe alloy by microwave thermal shock for boosting the oxygen evolution reaction. ACS Catalysis, 2021, 11, 12284-12292. (IF:12.9)
(10) M. Yan, Z. Wei, Z. Gong, B. Johannessen, G. Ye*, G. He, J. Liu, S. Zhao*, C. Cui*, H. Fei*. Sb2S3-templated synthesis of sulfur-doped Sb-NC with hierarchical architecture and high metal loading for H2O2 electrosynthesis. Nature Communications 2023,14(1):368. (IF:17.6)
(11) R. Liu, Z. Gong, J. Liu, J. Dong*, J. Liao, H. Liu, H. Huang, J. Liu, M. Yan, K. Huang, H. Gong, J. Zhu, C. Cui, G. Ye*, H. Fei*. Design of aligned porous carbon films with single-atom Co-N-C sites for high-current-density hydrogen generation Advanced Materials, 2021, 33, 2103533. (IF:32.1)
(12) Q. Wang, Q. Feng, Y. Lei*, S. Tang, L. Xu, Y. Xiong, G. Fang, Y. Wang, P. Yang, J. Liu, W. Liu and X. Xiong, Quasi-solid-state Zn-air batteries with an atomically dispersed cobalt electrocatalyst and organohydrogel electrolyte. Nature Communications, 2022, 13, 3689. (IF:17.6)
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邮箱:jjliu@csust.edu.cn
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