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Zhou, Xiaohu.Liu, Yiqiang,Chen, Yang,Li, Xinyong,Xiao, Chunlei,Dong, Wenrui,Yang, Xueming.Kinetic Studies for the Reaction of syn-CH3CHOO with CF3CH=CH2.[J].JOURNAL OF PHYSICAL CHEMISTRY A,2020,124(30):6125-6132.
Ma, Hangfan.Li, Xinyong,Fan, Shiying,Yin, Zhifan,Gan, Guoqiang,Qin, Meichun,Wang, Penglei,Li, Yaxuan,Wang, Lianzhou.In Situ Formation of Interfacial Defects between Co-Based Spinel/Carbon Nitride Hybrids for Efficient CO2 Photoreduction.[J].ACS APPLIED ENERGY MATERIALS,2020,3(5):5083-5094.
Zeng, Libin.Li, Xinyong,Chen, Shuai,Wen, Jiali,Huang, Wei,Chen, Aicheng.Unique hollow Ni-Fe@MoS2 nanocubes with boosted electrocatalytic activity for N-2 reduction to NH3.[J].JOURNAL OF MATERIALS CHEMISTRY A,2020,8(15):7339-7349.
Zeng, Libin.Li, Xinyong,Chen, Shuai,Wen, Jiali,Rahmati, Farnood,van der Zalm, Joshua,Chen, Aicheng.Highly boosted gas diffusion for enhanced electrocatalytic reduction of N-2 to NH3 on 3D hollow Co-MoS2 nanostructures.[J].NANOSCALE,2020,12(10):6029-6036.
李新勇.曾立彬.Unique Hollow Ni–Fe@MoS2 Nanocubes with Boosted Electrocatalytic Activity for N2 Reduction to NH3.[J].Journal of Materials Chemistry A,2020,
Lian, Tingting.Huang, Chao,Liang, Feng,Li, Xinyong,Xi, Jingyu.Simultaneously Providing Iron Source toward Electro-Fenton Process and Enhancing Hydrogen Peroxide Production via a Fe3O4 Nanoparticles Embedded Graphite Felt Electrode.[J].ACS APPLIED MATERIALS & INTERFACES,2019,11(49):45692-45701.
李新勇.曾立彬.Highly Boosted Gas Diffusion for Enhanced Electrocatalytic Reduction of N2 to NH3 on 3D Hollow Co–MoS2 Nanostructures..[J].Nanoscale,2020,12(12):6029-6036.
李新勇.王朋磊.Magnetic Mesoporous Calcium Carbonate-Based Nanocomposites for the Removal of Toxic Pb(II) and Cd(II) Ions from Water.[J].ACS Appl. Nano Mater.,2020,3(2):1272-1281.
Xiong, Wei.Cheung, Altair T. F.,Zhang, Yizhen,Chen, Keda,Shi, Yong,Li, Xinyong,Leung, Michael K. H..Construction of crystalline and amorphous interface between FeS2 and polyaniline for enhanced electrocatalytic activity.[J].APPLIED SURFACE SCIENCE,2020,505
马航帆.李新勇.富含碳空位多孔碳电催化还原脱氯邻二氯乙烷性能研究.[J].大连理工大学学报,2019,59(6):567-574.
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