论文著作:
[1]Kehan Wang, Ruimin Yu, Lei Wang, Shuxia Guan, andLei Ji*, 3D Burr-like Pt nanoparticles as co-catalyst decorated on TiO2 nanotubes: an effective hydrogen production photoanode with enhanced photoelectrochemical Performance, J Mater Sci: Mater Electron, 2021, 32, 11737–11750. SCI
[2]Shuxia Guan, Ruimin Yu, Fanzuo Guo, Yongkui Fang,Lei Ji*, Facile synthesis of ultra-fine nanoporous Pt co-catalyst decorated on P25 and its highly efficient photocatalytic activity, Ionics, 2021, 27, 1633–1643.SCI
[3]Lei Ji,Davide Spanu,Nikita Denisov,Sandro Recchia,Patrik Schmuki*,Marco Altomare*, A dewetted-dealloyed nanoporous Pt co-catalyst formed on TiO2 nanotube arrays leads to strongly enhanced photocatalytic H2 production, Chemistry-An Asian Journal, 2020, 15, 301-309.SCI (二区)
[4] Lei Ji, Xuemei Zhou, and Patrik Schmuki*,Sulfur and Ti3+ co-Doping of TiO2 Nanotubes Enhance Photocatalytic H2 Evolution Without the Use of Any co-catalyst, Chemistry-An Asian Journal, 2019. 14 (15), 2724-2730.SCI (二区)
[5] Lei Ji, Xuemei Zhou, and Patrik Schmuki*, Electrochemically Faceted Bamboo-type TiO2 Nanotubes Provide Enhanced Open-Circuit Hydrogen Evolution, ChemElectroChem,2019, 6, 114-120.SCI (二区)
[6]姬磊*,郭翻坐等,表面活性剂对多孔颗粒Pt/P25光催化性能的影响,高等学校化学学报, 2019. 40, 1501-1507.SCI
[7]姬磊*,郭翻坐等,表面活性剂对Co3O4改性TiO2纳米管形貌及光催化性嫩的影响。化工科技,2019,27(3),56-60。EI收录
[8] Lei Ji*, Zhen Jiang, and Liduo Chen,The preparation and photocatalytic performance of Bi2Fe4O9/NiFe2O4 composite photocatalyst, Chemical Papers, 2018, 72, 3195-3202.SCI
[9]姜震,陈立铎,姬磊*,磁性NiFe2O4的制备与光催化性能及反应机理的研究,化学工程师,2017,1,82-86.
[10] Lei Ji*, Haoren Wang, Heterogeneous photocatalysts BiOX/NaBiO3 (X=Cl, Br,I):Photo-generated charge carriers transfer property and enhanced photocatalytic activity, Chemical Physics, 2016, 478, 14-22.SCI
[11] 姜震,陈立铎,姬磊*,电沉积制备Cu2O薄膜及其在光催化中的应用进展,化学工程师,2016,1,50-54.
[12]姜震,陈立铎,姬磊*,磁性催化剂的研究进展,化学工程师,2016,2,52-55.
[13]姬磊,陈立铎,姜震,Bi2Fe4O9的制备与光催化性能分析,东北石油大学学报,2016,3,97-103.核心收录
[14]Lei Ji, Ruimin Yu, Hydrothermal Synthesis of Copper Hydroxyphophate Hierarchical Superstructures and Its Photocatalysis Activity in UV Light, Energy Equipment Engineering Research, 2015, 09, 224-228.ISTP收录
[15]姬磊,王浩人,BiOCl/ NaBiO3 复合材料的原位合成及光催化性能,高等学校化学学报,2015,31(3),521-528。SCI
[16]姬磊,王浩人,异质型BiOI/NaBiO3 光催化剂的合成及其光催化性能,无机化学学报,2015,31,521-528。SCI
[17]姬磊,于瑞敏,陈丽铎,姜震,复合光催化剂Cu2(OH)PO4/Ni(OH)2的制备及其光催化性能,东北石油大学学报,2015,39(4),95-102。核心收录
[18]于瑞敏,王浩人,姬磊*,水热法制备磷酸镍及其光催化性能评价,化学研究与应用,2015,8,1104-1111。核心收录
[19]姬磊,王浩人,p-n异质结型光催化剂BiOBr/NaBiO3的制备与可见光催化活性,高等学校化学学报,2014,35(10),2170-2176。SCI
[20]曾庆红,姬磊*,锂离子电池正极材料Li3V2(PO4)3/C的制备及电化学性能研究,电源技术,2012,36(12),1790-1792。核心收录
[21] Lei Ji, Ying Tang, Photodissociation dynamics of CH2Br2 at 234 and 267 nm, Spectrochimica Acta Part A, 2007, 67, 273–280 .SCI (二区)
[22]姬磊,唐颖,离子速度成像方法研究二溴甲烷在234和267 nm处的光解动力学,化学学报,2007,65(6), 501-508。SCI
[23] Lei Ji, Ying Tang, Photodissociation dynamics of allyl bromide at 234, 265 and 267 nm, Journal of Chemical Physics, 2006, 125, 164307.SCI
[24] Lei Ji, Ying Tang, Rongshu Zhu, Bifeng Tang, Studies on photodissociation of dibromoalkane in UV region, Chemical Physics, 2005, 314, 173.SCI
[25] 姬磊,唐颖,朱荣淑等,二溴代烷烃的紫外光解动力学研究,化学学报, 2004,62(13),1211-1216.SCI
[26]姬磊,戴朝政,对电色谱塔板高度的考察,色谱,2003,21(2)131-134。核心收录
[27]Ying Tang,Lei Ji, Rongshu Zhu, Zhengrong Wei, and Bing Zhang, Photodissociation Study of Ethyl Bromide in the Ultraviolet Range by the Ion-Velocity Imaging Technique, ChemPhysChem, 2005, 6, 2137-2144.SCI
[28]Ying Tang,Lei Ji, Rongshu Zhu, Zhengrong Wei, and Bing Zhang,Photodissociation Study of 1,3-Dibromopropane at 234 nm via an Ion Velocity Imaging Technique, J. Phys. Chem. A, 2005, 109, 11123-11126.SCI
[29] 唐颖,姬磊,唐碧峰,朱荣淑,张嵩,张冰,溴代烷烃在紫外波段的光解离过程,物理化学学报,2004,20 (04): 344-349。SCI
[30] Ying Tang,Lei Ji, Bifeng Tang, Rongshu Zhu, Song Zhang, Bing Zhang, Studies on photodissociation of alkyl bromides at 234 and 267 nm, Chemical Physics Letters, 2004, 392, 493–497.SCI
[31]杨春,姬磊,张维冰,张玉奎,毛细管等电聚焦电泳技术进展,色谱,2003,2,28-32。核心收录