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
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.
|
|