代表性文章及专利
1.Chenghao Bi, Jingcong Hu, Zhiwei Yao, Yue Lu*, David Binks, Manling Sui, Jianjun Tian*. Self-Assembled Perovskite Nanowire Clusters for High Luminance Red Light-Emitting Diodes.Adv. Funct. Mater. 30, 2005990 (2020). (IF: 16.836)
2.Lu, Y,Sui M.L.*et al. In CH3NH3PbI3Perovskite Film, the Surface Termination Layer Dominates the Moisture Degradation Pathway.Chemistry a European Journal, 2021, 27(11): 3729-3736. (IF: 4.857)
3.7. Xin Huang, Jingcong Hu, Chenghao Bi, Jifeng Yuan, Yue Lu*, Manling Sui, Jianjun Tian*. B-site doping of CsPbI3quantum dot to stabilize the cubic structure for high-efficiency solar cells.Chemical Engineering Journal. doi: 10.1016/j.cej.2020.127822 (2020). (IF: 10.652)
4.Lu Y,Sui M.L.*et al. Self-hydrogenated shell promoting photocatalytic H2evolution on anatase TiO2.Nat. Commun,2018, 9: 2752.(IF=12.353)
5.Fan K*, Lu Y*, et al. Direct Observation of Structural Evolution of Metal Chalcogenide in Electrocatalytic Water Oxidation.ACS nano.2018, 12:12369-12379.
6.Lu Y,Sui M. L.*et al. Modifying Surface Chemistry of Metal Oxides for Boosting Dissolution Kinetics in Water by Liquid Cell Electron Microscopy.ACS nano,2017, 11(8): 8018-8025.(IF=13.942)。
7.Lu Y,Sui M. L.*et al.Oxidative Corrosion Mechanism for Ag@C Coaxial Nanocables in Radiolytic Water. J. Phys. Chem. C, 2016, 120 (47), 27033–27039.(IF=4.536)。
8.Lu Y,Sui M. L.*et al. Extracting nano-gold from HAuCl4solution manipulated with electrons. Phys. Chem. Chem. Phys., 2016, 18, 30079.(IF=4.123)。
9.Lu Y,et al. Elucidating dz2orbital selective catalytic activity in brownmillerite Ca2Mn2O5. AIP Advances, 2016, 6, 095210.(IF=1.653)。
10.Wang D, Wang X, Lu Y (共一),et al. Atom-scale dispersed palladium in a conductive Pd0.1TaS2lattice with a unique electronic structure for efficient hydrogen evolution. J. Mater. Chem. A, 2017, 5(43): 22618-22624.(IF=9.931)。
11.Zhu C, Niu X, Fu Y, Li N, Hu C, Chen Y, He X, Na G, Liu P, Zai H, Ge Y. Lu Y. Chen Q. Strain engineering in perovskite solar cells and its impacts on carrier dynamics. Nature communications. 2019, 10(1): 815.(IF=12.353)
12.Deng T, Lu Y,et al. Inverted Design for High-Performance Supercapacitor Via Co(OH)2-Derived Highly Oriented MOF Electrodes. Advanced Energy Materials. 2017. DOI: 10.1002/aenm.201702294. (IF=21.875)
13.Li, W., Guo, X., Lu, Y., Wang, L., Fan, A., Sui, M., & Yu, H. Amorphous nanosized silicon with hierarchically porous structure for high-performance lithium ion batteries. Energy Storage Materials, 2017, 7: 203-208.
14.Dong W, et al. A Robust and Conductive Black Tin Oxide Nanostructure Makes Efficient Lithium‐Ion Batteries Possible. Advanced Materials, 2017. DOI: 10.1002/adma.201700136. (IF=21.950)
15.Zhang Z, Sui M. L.*et al. Nanoscale Engineering in VO2Nanowires via Direct Electron Writing Process. Nano letters, 2017, 17(2): 851-855. (IF=12.080)
16.隋曼龄,卢岳,陈福荣。湿环境下电子束直接纳米刻蚀或印刷的方法。ZL201410251013.6。(国内专利,授权)。
17.Manling Sui, Yue Lu, Fu-Rong Chen. Direct nanolithography or printing method for electron beams in wet environment. US 10,031,421 B2. (美国专利,授权)