论文著作:
[1] Shuangqin Tian, Shujie Wang, Yi He, Bifang Zheng, Huan Xiong, Li Li,Yongtao Wang, Lihong Tang*, Mechanical synthesis of novel composite ZIF-8/BiOBr to promote interfacial charge transfer for broad application to organic pollutants: Batch experiments and theoretical calculations, Journal of Envrionmental chemical Engineering 13(2025) 116586. (IF=7.4, TOP)
[2] Shujie Wang, Shuangqin Tian, Yi He, Bifang Zheng, Huan Xiong, Li Li, Hanlin Li, Yongtao Wang, Lihong Tang*, A novel bimetallic UiO-66 loofah sponge adsorbent prepared in situ for the efffcient removal of methyl orange and Cr(VI): Batch experiments and DFT calculations, Separation and Purification Technology, 364 (2025) 132353. (IF=8.1, TOP)
[3] Wenbin Wu, Xianhong Deng, Shuangqin Tian, Shujie Wang, Yi He, Bifang Zheng, Kai Xin, Ziqin Zhou, Lihong Tang*, Whole-Waste synthesis of Kilogram-Scale Macropores adsorbent materials for Wide-Range oil and heavy metal removal, Separation and Purification Technology, 354 (2025) 128750. (IF=8.1, TOP)
[4] Zhiyuan Ning, Kai Xin, Ruoran Li, Pan Liu, Li Liu, Leicheng Wen, Lihong Tang* and Ping Ning*, Understanding the Enhanced Catalytic Desulfurization Mechanism: Gas-Phase and Surface Reactions with a CuCeOx Catalyst under Nonthermal Plasma Conditions, J. Phys. Chem. Lett. 2024, 15, 1397−1411. (IF=5.7, TOP)
[5] Shuangqin Tian, Xin Shi, Shujie Wang, Yi He, Bifang Zheng, Xianhong Deng, Ziqin Zhou, Wenbin Wu, Kai Xin, Lihong Tang*, Recyclable Fe3O4@UiO-66-PDA core–shell nanomaterials for extensive metal ion adsorption: Batch experiments and theoretical analysis, Journal of Colloid And Interface Science 665 (2024) 465–476. (IF=9.9,TOP)
[6] Xianhong Deng, Wenbin Wu, Shuangqin Tian, Yi He, Shujie Wang, Bifang Zheng, Kai Xin, Ziqin Zhou, Lihong Tang *, Composite adsorbents of aminated chitosan @ZIF-8 MOF for simultaneous efficient removal of Cu(II) and Congo Red: Batch experiments and DFT calculations, Chemical Engineering Journal 479 (2024) 147634. (IF=13.2,TOP)
[7] Xianfa Jiang, Peiyun He, Linlin Wu, Lihong Tang*, Increased oxygen vacancies and Sc doping in ZnO promote bacterial disinfection and methyl orange degradation, Applied Surface Science 638 (2023) 158026.(IF=6.7,TOP)
[8] Yue Wang, Xin Shi, Wenbin Wu, Xianhong Deng, Kai Xin, Ziqing Zhou, Lihong Tang*, and Zhiyuan Ning*, Theoretical Exploration of Peculiar Sandwich-Type Clusters Formed by the Coordination of E92– (E = Si, Ge, Sn) Zintl Clusters: Structural Properties, Active Sites, and Hydrogen Storage, Langmuir 2022, 38, 47, 14485–14496.(IF=4.33,TOP)
[9] Xin Shi, Yue Wang, Xianhong Deng, Wenbin Wu, Wenting Hua, Ziqin Zhou, Kai Xin, Lihong Tang*, Zhiyuan Ning*, Excellent capture of Pb(II) and Cu(II) by hierarchical nanoadsorbent, Fe3O4@SiO2@PAA-SO3H: A combined experimental and theoretical study, Chemosphere, (2022) 10: 136791. (IF=8.94,TOP)
[10] Xiuying Zhang1, Xin Shi1, Ming Deng, Yue Wang, Ping Ning, Lihong Tang*, Zhiyuan Ning*, Stability study of the As(V)-Fe(III) oxyhydroxide coprecipitate over a broad pH range: characteristics and mechanism, Science of the Total Environment(2022)806:150794. (IF=10.75,TOP)
[11] Zhiyuan Ning, Zhenghua Zhou, Zhenglu Yang, Xi Liu, Liping Duan, Lihong Tang*, Two configurations of a dielectric barrier discharge enhanced nanoparticle (CexTi1-x)O2 catalyst for the removal of low-concentration SO2, Separation and Purification Technology(2022)278:119501. (IF=9.14,TOP)
[12] Xianfa Jiang, Bin Zhang, Biying Liu, xiaoning Tang*, Lihong Tang**, Experimental and theoretical study of visible light driven scandium (III) doped ZnO for antibacterial activity, Ceramics International, Volume 45, Issue 16, November 2019, Pages 19948-19955. (IF=5.532,TOP)
[13] Xianfa Jiang, Xiaoning Tang*, Lihong Tang**, Bin Zhang, Huaming Mao, Synthesis and formation mechanism of amorphous silica particles via sol–gel process with tetraethylorthosilicate, Ceramics International, Volume 45, Issue 6, 15 April 2019, Pages 7673-7680. (IF=5.532,TOP)
[14] Shuangyou Bao, Kai Li, Ping Ning, Jinhui Peng, Xu Jin, Lihong Tang*, Synthesis of amino-functionalization magnetic multi-metal organic framework (Fe3O4/MIL-101(Al0.9Fe0.1)/NH2) for efficient removal of methyl orange from aqueous solution.
Journal of the Taiwan Institute of Chemical Engineers, Volume 87, June 2018, Pages 64-72. (IF=5.477, JCR一区)
[15] KaiLi, Xin Song, Tingting Zhu, Chi Wang, Xin Sun, Ping Ning*, Lihong Tang**, Mechanistic and kinetic study on the catalytic hydrolysis of COS in small clusters of sulfuric acid, Environmental Pollution, 232 (2018) 615-623.(IF=9.988, TOP)
[16] Shuangyou Bao, Kai Li, Ping Ning, Jinhui Peng, Xu Jin,Lihong Tang*,Highly effective removal of mercury and lead ions from wastewater by mercaptoamine-functionalised silica-coated magnetic nano-adsorbents: Behaviours and mechanismsApplied Surface Science, 393 (2017) 457-466. (IF=7.392,TOP)
[17] Shuangyou Bao, Lihong Tang*, Kai Li, Ping Ning, Jinhui Peng, Huibin Guo, Highly selective removal of Zn(II) ion from hot-dip galvanizing pickling waste with amino-functionalized Fe3O4@SiO2 magnetic nano-adsorbent, Journal of Colloid and Interface Science. 462 (2016) 235–242. (IF=9.965,TOP)
[18] Lihong Tang, Qiong Luo*, Qian-shu Li,Yaoming Xie, R. Bruce King, and Henry F. Schaefer III, The Quest for Metal-Metal Quadruple and Quintuple Bonds in Metal carbonyl Derivatives: Nb2(CO)9 and Nb2(CO)8, J. Chem. Theory Comput. 2012, 8, 862-874. (IF=6.578,TOP)
[19] Lihong Tang, Qiong Luo*, Qian-shu Li,Yaoming Xie, R. Bruce King, and Henry F. Schaefer III, The RemarkableNb2(CO)12 with Niobium: Decarbonylation to Nb2(CO)11 and Nb2(CO)10,J. Chem. Theory Comput. 2011, 7, 2112-2125. (IF=6.578,TOP)