人才队伍
正高级科研人员

罗丹

罗丹 研究员

学历:博士研究生

学科:物理化学I

电话:无

邮箱:luodan@dicp.ac.cn

地址:大连市中山路457号

邮编:116023


简历介绍
    罗丹,博士毕业于滑铁卢大学,现为中国科学院大连化学物理研究所研究员,博士生导师,入选大连化物所“张大煜青年学者”。围绕锂金属电池、固态电池、锂硫电池等存在的关键科学问题与干法电极制备、电化学互联表征等关键技术问题开展研究工作。从电极结构设计、电化学反应机理等方面入手,解决锂金属电池中正负极反应动力学迟缓、界面稳定性差、厚电极制备难等问题。通过对正极活性位点结构设计及反应动力学调控、锂负极界面SEI功能化设计及锂沉积行为调控和固态电解质离子传输通道限域结构构筑等实现快速高效的电化学反应。借助干法电极技术制备电极及电解质,提升电池能量密度及循环寿命。目前已发表SCI论文1   5   0余篇,其中以第一/通讯作者在Nature Communications, Angewandte Chemie International Edition, Advanced Materials, Chemical Society Reviews等高水平期刊上发表论文50余篇,被引8500余次,H因子54  
代表论著
1. D. Luo et al., Constructing multifunctional solid electrolyte interface via in-situ polymerization for dendrite-free and low N/P ratio lithium metal batteries, Nat. Commun, 12 (2021) 186.  

2. D. Luo et al., Design of quasi-MOF nanospheres as a dynamic electrocatalyst toward accelerated sulfur reduction reaction for high-performance lithium-sulfur batteries, Adv. Mater., 34 (2021) 2105541.

3. X. Wang, D. Luo*, Z. Chen* et al., Accelerated multi-step sulfur redox reactions in lithium-sulfur batteries enabled by dual defects in metal-organic framework-based catalysts, Angew. Chem. Int. Ed. Engl., 62 (2023) e202306901.

4. D. Luo et al., Porous organic polymers for Li-chemistry-based batteries: functionalities and characterization studies, Chem. Soc. Rev., 51 (2022) 2917-2938.

5. Q. Ma, D. Luo*, X. Wang*, Z. Chen* et al., Regulation of outer solvation shell toward superior low-temperature aqueous zinc-ion batteries, Adv. Mater, 34 (2022) e2207344.

6. D. Luo et al., Synergistic engineering of defects and architecture in binary metal chalcogenide toward fast and reliable lithium-sulfur batteries, Adv. Energy Mater., 9 (2019) 1900228.

7. D. Luo et al., Integrating nanoreactor with O-Nb-C heterointerface design and defects engineering toward high-efficiency and longevous sodium ion battery, Adv. Energy Mater., 12 (2022) 2103716.

8. D. Luo et al., Electrolyte design for lithium metal anode-based batteries toward extreme temperature application, Adv. Sci., 8 (2021) e2101051.

9. Y. Nie, D. Luo*, X. Wang*, Z. Chen* et al., Tailoring vertically aligned inorganic-polymer nanocomposites with abundant lewis acid sites for ultra-stable solid-state lithium metal batteries, Adv. Energy Mater., 13 (2023) 2204218.

10.D. Luo et al., Revealing the rapid electrocatalytic behavior of ultrafine amorphous defective Nb2O5-x nanocluster toward superior Li-S performance, ACS Nano, 14 (2020) 4849-4860.