近五年主要论著
1.Decai Yang, Chao Qu*, Fanwei Meng, Lanyang Wang, Yongqi Li,Qing Ye*, Synergistic enhancement of photocatalytic hydrogen evolution by ultrathin oxygen-doped graphitic carbon nitride nanosheets loaded amorphous mesoporous nickel hydroxide,Separation and Purification Technology,2023, In Press
2.Xinpeng Wang, Chao Qu*, Wenyi Liu, Fanwei Meng, Fan Yang, Xin Zhang,Qing Ye*, Enhanced low-temperature NH3-SCR performance by g-C3N4modified Ce-OMS-2 catalyst,Microporous and Mesoporous Materials, 2023,361
3.Ning Dong, Mengyue Chen,Qing Ye*, Dan Zhang, Hongxing Dai*. Promotional effect of cobalt doping on catalytic performance of cryptomelane-type manganese oxide in toluene oxidation,Journal of Environmental Sciences, 2023, 126: 263-274.
4.Xinpeng Wang,Qing Ye*, Wenyi Liu, Fanwei Meng, Fan Yang, Xin Zhang, Hongxing Dai, Improved sulfur dioxide resistance of the Mn/Fe-pillared interlayered clay by the doping of ceria in the selective catalytic reduction of NO with NH3, Reaction Kinetics Mechanisms and Catalysis,2023,136:1263-1281
5.Xinpeng Wang,Qing Ye*, Wenyi Liu, Fanwei Meng, Fan Yang, Xin Zhang, Hongxing Dai*, Enhanced Resistance to Pb Poisoning of the Co-modified Mn/Fe-pillared Clay Catalysts for NH3-SCR at Low Temperatures,Chemistry Select, 2023, 8(10)
6.Ning Dong,Qing Ye*, Yang Xiao, Dan Zhang, Hongxing Dai*. Reduced graphene oxide as an effective promoter to the layered manganese oxide-supported Ag catalysts for the oxidation of ethyl acetate and carbon monoxide,Journal of Hazardous Materials, 2022, 431: 128518.
7.Ning Dong,Qing Ye*, Yang Xiao, Dan Zhang, Hongxing Dai*. Enhancement in catalytic performance of birnessite-type MnO2-supported Pd nanoparticles by the promotional role of reduced graphene oxide for toluene oxidation,Catalysis Science & Technology, 2022, 12(7): 2197-2209.
8.Kai Wu,Qing Ye*, Lanyang Wang, Fanwei Meng, Hongxing Dai*. Graphene oxide-doped stearate-intercalated layered double oxide nanocomposites as high-performance CO2adsorbents,Separation and Purification Technology, 2022, 288: 120686
9.Kai Wu,Qing Ye*, Lanyang Wang, Fanwei Meng, Hongxing Dai*. Polyethylenei mine-modified layered double hydroxide/SBA-15 composites: A novel kind of highly efficient CO2 adsorbents,Applied Clay Science, 2022, 229: 106660
10.Kai Wu, Qing Ye*, Lanyang Wang, Fanwei Meng, Hongxing Dai*. Mesoporous alumina-supported layered double hydroxide for efficient CO2capture,Journal of CO2Utilization, 2022, 60: 101982.
11.Ning Dong, Mengyue Chen,Qing Ye*, Dan Zhang, Hongxing Dai*. An investigation on catalytic performance and reaction mechanisms of Fe/OMS-2 for the oxidation of carbon monoxide, ethyl acetate, and toluene,Journal of Environmental Sciences, 2022, 112: 258-268
12.Dan Zhang,Qing Ye*, Ning Dong, Wenjin Wang, Yang Xiao, Hongxing Dai*, Enhanced Catalytic Performance and Sulfur Dioxide Resistance of Reduced Graphene Oxide-Promoted MnO2Nanorods-Supported Pt Nanoparticles for Benzene Oxidation,Catalysts, 2022, 12(11)
13.Runping Wu,Qing Ye*, Kai Wu, Lanyang Wang, Hongxing Dai*. Highly efficient CO2 adsorption of corn kernel-derived porous carbon with abundant oxygen functional groups,Journal of CO2Utilization, 2021, 51: 101620.
14.Runping Wu,Qing Ye*, Kai Wu, Hongxing Dai, Potassium-modified ordered mesoporous carbon materials (K-CMK-3): Highly efficient adsorbents for NO adsorption at low temperatures,Journal of Solid State Chemistry, 2021, 294: 121844
15.Runping Wu,Qing Ye*, Kai Wu, Hongxing Dai*. Low-temperature (NO + O2) adsorption performance of alkaline earth metal-doped C-FDU-15,Journal of Environmental Sciences, 2021, 103: 172-184.
16.Runping Wu,Qing Ye*, Kai Wu, Hongxing Dai*. Efficient abatement of NOx emitted from automotive engines via adsorption on the Ba-CMK-3 adsorbents,Environmental Science and Pollution Research, 2021, 28(17): 21369-21380.
17.Zhidan Fu, Mengyue Chen,Qing Ye*, Ning Dong, Hongxing Dai*. Enhanced performance of the OMS-2-supported CuOx catalysts for carbon monoxide, ethyl acetate, and toluene oxidation,Catalysts, 2021, 11: 713.
18.Chenxi Li, Jin Cheng, Qing Ye*, Fanwei Meng, Xinpeng Wang, Hongxing Dai*. Poisoning effects of alkali and alkaline earth metal doping on selective catalytic reduction of NO with NH3over the Nb-Ce/Zr-PILC catalysts,Catalysts, 2021, 11: 329.
19.Ning Dong, Mengyue Chen,Qing Ye*, Dan Zhang, Hongxing Dai*. Catalytic elimination of carbon monoxide, ethyl acetate, and toluene over the Ni/OMS-2 catalysts,Catalysts, 2021, 11: 581.
20.Kai Wu,Qing Ye*, Runping Wu, Hongxing Dai. Alkali metal-promoted aluminum- pillared montmorillonites: High-performance CO2 adsorbents,Journal of Solid State Chemistry, 2020, 291:121585
21.Ning Dong,Qing Ye*, Mengyue Chen, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*. Sodium-treated sepiolite-supported transition metal (Cu, Fe, Ni, Mn or Co) catalysts for HCHO oxidation,Chinese Journal of Catalysis, 2020, 41(11): 1734- 1744.
22.Qi Gao,Qing Ye*, Shuai Han, Hongxing Dai. Calcium poisoning mechanism of Cu-SAPO-18 for selective catalytic reduction of NOx with ammonia,Chemistry Select, 2020,5(43):13477-13486
23.Runping Wu,Qing Ye*, Kai Wu, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*. Alkali-modified C-FDU-15: Highly efficient adsorbents for adsorption of NO and O2 at low temperatures,Journal of Colloid and Interface Science, 2020, 577(1): 217-232.
24.Runping Wu,Qing Ye*, Kai Wu, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*. Adsorption performance of CMK-3 and C-FDU-15 in NO removal at low temperatures,Journal of Environmental Sciences, 2020, 87: 289-298.
25.Kai Wu,Qing Ye*, Runping Wu, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*. Carbon dioxide adsorption behaviors of aluminum-pillared montmorillonite- supported alkaline earth metals,Journal of Environmental Sciences, 2020, 98: 109-117.
26.Ning Dong,Qing Ye*, Mengyue Chen, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*. Catalytic oxidation of HCHO over the sodium-treated sepiolite-supported rare earth (La, Eu, Dy, and Tm) oxide catalysts,Catalysts, 2020, 10(3): 328.
27.Jin Cheng,Qing Ye*, Chenxi Li, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*. Ceria-modified Al-Mn-pillared clay catalysts for the selective catalytic reduction of NO with NH3 at low temperatures,Asia-Pacific Journal of Chemical Engineering, 2020, doi: 10.1002/apj.2439.
28.Qi Gao, Shuai Han,Qing Ye*, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*. Effects of lanthanide doping on the catalytic activity and hydrothermal stability of Cu-SAPO-18 for the catalytic removal of NOx (NH3-SCR) from diesel engines,Catalysts, 2020, 10(3): 336.
29.Qi Gao,Qing Ye*, Shuai Han, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*. Effect of Ce doping on hydrothermal stability of Cu-SAPO-18 in the selective catalytic reduction of NO with NH3,Catalysis Surveys from Asia, 2020, 24(2): 134-142.
30.Shuai Han,Qing Ye *, Qi Gao and Hongxing Dai,*Improved SO2tolerance of Cu-SAPO-18 by Ce-doping in the selective catalytic reduction of NO with NH3,Catalysts, 2020, 10(7): 783.
31.Jin Cheng, Shuai Han,Qing Ye*, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*. Selective catalytic reduction of NO with NH3over the Cu/SAPO-34 catalysts derived from different Cu precursors,Microporous & Mesoporous Materials, 2019, 278: 423-434.
32.Shuai Han, Jin Cheng,Qing Ye*, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*. Ce doping to Cu-SAPO-18: Enhanced catalytic performance for the NH3-SCR of NO in simulated diesel exhaust,Microporous & Mesoporous Materials, 2019, 276: 133-146.
33.Jin Cheng, Shuai Han,Qing Ye*, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*. Effects of hydrothermal aging at high and low temperatures on the selective catalytic reduction of NOxwith NH3over Cu/SAPO-34,Research on Chemical Intermediates, 2019, 45:2023-2044.
34.Jin Cheng, Yong Song,Qing Ye*, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*, A mechanistic investigation on the selective catalytic reduction of NO with ammonia over the V-Ce/Ti-PILC catalysts,Molecular Catalysis, 2018, 111- 123: 445.
35.Jiaoli Fu, NingDong,Qing Ye*, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*. “Enhanced performance of the OMS-2 catalyst by Ag loading for the oxidation of benzene, toluene, and formaldehyde”,New Journal of Chemistry, 2018, 42 (22): 18117-18127.
36.Shuai Han, Jin Cheng,Qing Ye*, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*, Effect of Si/Al ratio on catalytic performance of hydrothermally aged Cu-SSZ-13 for the NH3-SCR of NO in simulated diesel exhaust,Applied Surface Science, 2017, 419: 382-392.
37.Lisha Liu, Yong Song, Zhidan Fu,Qing Ye*, Shuiyuan Cheng, Tianfang Kang, Hong xing Dai*, Effect of preparation method on the surface characteristics and activity of the Pd/OMS-2 catalysts for the oxidation of carbon monoxide, toluene, and ethyl acetate,Applied Surface Science, 2017, 396: 599-608
38.Lisha Liu, Yong Song, Zhidan Fu,Qing Ye*, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*,Enhanced catalytic performance of Cu- and/or Mn-loaded Fe-Sep catalysts for the oxidation of CO and ethyl acetate,Chinese Journal of Chemical Engineering, 2017, 25(10): 1427-1434
39.Zhidan Fu, Lisha Liu, Yong Song,Qing Ye*, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*, Catalytic oxidation of carbon monoxide, toluene, and ethyl acetate over the xPd/OMS-2 catalysts: Effect of Pd loading,Frontiers of Chemical Science & Engineering, 2017, 11(2): 185-196
40.Yong Song, Lisha Liu, Zhidan Fu,Qing Ye*, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*, Excellent performance of Cu-Mn/Ti-sepiolite catalysts for low-temperature CO oxidation,Frontiers of Environmental Science & Engineering, 2017, 11(2)5
41.Zhidan Fu, JiaXinZang,Qing Ye*, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*, Cu-Doped Octahedral Layered Birnessites Catalysts for the Catalytic Oxidation of CO and Ethyl Acetate,Acta Physico-Chimica Sinica, 2017, 33( 9): 1855-1864
42.Shuai Han,Qing Ye*, Shuiyuan Cheng, Tianfang Kang, Hongxing Dai*, Effect of hydrothermal aging temperature and Cu/Al ratio on the hydrothermal stability of the CuSSZ-13 catalysts for NH3-SCR,Catalysis Science & Technology, 2016, 10, 1-3