2021年
发布日期:2022-09-28 23:05

1. Lu, Jiahui, et al. Construction of Cu-Ce interface for boosting toluene oxidation: Study of Cu-Ce interaction and intermediates identified by in situ DRIFTS. Chinese Chemical Letters 32.11 (2021): 3435-3439.

2. Chen, Dongdong, et al. Unravelling phosphorus-induced deactivation of Pd-SSZ-13 for passive NO x adsorption and CO oxidation. ACS Catalysis 11.22 (2021): 13891-13901.

3. Fan, Jie, et al. Modulate the metal support interactions to optimize the surface-interface features of Pt/CeO2 catalysts for enhancing the toluene oxidation. Journal of Hazardous Materials 424 (2022): 127505.

4. Zhao, S., et al. A hydrothermally stable single-atom catalyst of Pt supported on high-entropy oxide/Al2O3: structural optimization and enhanced catalytic activity. ACS Appl Mater Interfaces [Internet]. 2021; 13 (41): 48764–73.

5. Zeng, Chun-Ling, et al. Coating-derived VOCs Emission Characteristics and Environmental Impacts from the Furniture Industry in Guangdong Province. Huan **g ke Xue= Huan**g Kexue 42.10 (2021): 4641-4649.

6. Guo, Anqi, et al. Inhibition effect of phosphorus poisoning on the dynamics and redox of Cu active sites in a Cu-SSZ-13 NH3-SCR catalyst for NO x reduction. Environmental Science & Technology 55.18 (2021): 12619-12629.

7. Wang, Jialing, et al. Enhanced performance of low Pt loading amount on Pt-CeO2 catalysts prepared by adsorption method for catalytic ozonation of toluene. Applied Catalysis A: General 625 (2021): 118342.

8. Wang, **aohong, et al. Key factors and primary modification methods of activated carbon and their application in adsorption of carbon-based gases: A review. Chemosphere 287 (2022): 131995.

9. Zhao, Shuaiqi, et al. Unveiling the water-resistant mechanism of Cu (I)-O-Co interfaces for catalytic oxidation. Chemical Engineering Journal 429 (2022): 132219.

10. Ye, Changchun, et al. Activating metal oxides nanocatalysts for electrocatalytic water oxidation by quenching-induced near-surface metal atom functionality. Journal of the American Chemical Society 143.35 (2021): 14169-14177.

11. Xu, Ziyang, et al. Pt/MnOx for toluene mineralization via ozonation catalysis at low temperature: SMSI optimization of surface oxygen species. Chemosphere 286 (2022): 131754.

12. Zeng, Yikui, et al. Synergistic effect of tunable oxygen-vacancy defects and graphene on accelerating the photothermal degradation of methanol over Co3O4/rGO nanocomposites. Chemical Engineering Journal 425 (2021): 131658.

13. Chen, Longwen, et al. Insight into the improvement effect of nitrogen dopant in Ag/Co3O4 nanocubes for soot oxidation: experimental and theoretical studies. Journal of Hazardous Materials 420 (2021): 126604.

14. Chen, Ziyang, et al. Reciprocal regulation between support defects and strong metal-support interactions for highly efficient reverse water gas shift reaction over Pt/TiO2 nanosheets catalysts. Applied Catalysis B: Environmental 298 (2021): 120507.

15. Ji, **ang, et al. Sustainable direct H2O2 synthesis over Pd catalyst supported on mesoporous carbon: The effect of surface nitrogen functionality. Catalysis Today 376 (2021): 1-8.

16. Mo, Shengpeng, et al. Immobilizing ultrafine bimetallic PtAg alloy onto uniform MnO2 microsphere as a highly active catalyst for CO oxidation. Chinese Chemical Letters 32.6 (2021): 2057-2060.

17. Ke, Yunting, et al. Volatile organic compounds concentration profiles and control strategy in container manufacturing industry: Case studies in China. Journal of Environmental Sciences 104 (2021): 296-306.

18. Zhao, Shuaiqi, et al. Engineering Co3+-rich crystal planes on Co3O4 hexagonal nanosheets for CO and hydrocarbons oxidation with enhanced catalytic activity and water resistance. Chemical Engineering Journal 420 (2021): 130448.

19. Yan, Dengfeng, et al. In-situ atmosphere thermal pyrolysis of spindle-like Ce (OH) CO3 to fabricate Pt/CeO2 catalysts: Enhancing Pt–O–Ce bond intensity and boosting toluene degradation. Chemosphere 279 (2021): 130658.

20. Chen, Longwen, et al. Chemisorbed superoxide species enhanced the high catalytic performance of Ag/Co3O4 nanocubes for soot oxidation. ACS Applied Materials & Interfaces 13.18 (2021): 21436-21449.

21. Song, Linghe, et al. In-Situ characterizations to investigate the nature of Co3+ coordination environment to activate surface adsorbed oxygen for methane oxidation. Applied Surface Science 556 (2021): 149713.

22. Li, Jianhan, et al. ZSM-5-supported V-Cu bimetallic oxide catalyst for remarkable catalytic oxidation of toluene in coal-fired flue gas. Chemical Engineering Journal 419 (2021): 129675.

23. Sun, Yuhang, et al. Investigation into the roles of different oxygen species in toluene oxidation over manganese-supported platinum catalysts. Molecular Catalysis 507 (2021): 111569.

24. **ong, Juxia, et al. Pd-Promoted Co2NiO4 with lattice CoONi and interfacial PdO activation for highly efficient methane oxidation. Applied Catalysis B: Environmental 292 (2021): 120201.

25. Wang, **yang, et al. Highly efficient adsorptive removal of toluene using silicon-modified activated carbon with improved fire resistance. Journal of Hazardous Materials 415 (2021): 125753.

26. Mo, Shengpeng, et al. Unraveling the decisive role of surface CeO2 nanoparticles in the Pt-CeO2/MnO2 hetero-catalysts for boosting toluene oxidation: Synergistic effect of surface decorated and intrinsic O-vacancies. Chemical Engineering Journal 418 (2021): 129399.

27. Liu, Peng, et al. Insight into the effect of manganese substitution on mesoporous hollow spinel cobalt oxides for catalytic oxidation of toluene. Journal of colloid and interface science 594 (2021): 713-726.

28. Wu, Peng, et al. Recent progress of thermocatalytic and photo/thermocatalytic oxidation for VOCs purification over manganese-based oxide catalysts. Environmental Science & Technology 55.8 (2021): 4268-4286.

29. Zhong, ****, et al. Controllable transformation from 1D Co-MOF-74 to 3D CoCO 3 and Co 3 O 4 with ligand recovery and tunable morphologies: the assembly process and boosting VOC degradation. Journal of Materials Chemistry A 9.11 (2021): 6890-6897.

30. Liu, Peng, et al. Effects of Zr substitution on soot combustion over cubic fluorite-structured nanoceria: Soot-ceria contact and interfacial oxygen evolution. Journal of Environmental Sciences 101 (2021): 293-303.

31. **ong, Juxia, et al. The effect of existence states of PdOx supported by Co3O4 nanoplatelets on catalytic oxidation of methane. Applied Surface Science 539 (2021): 148211.

32. Su, Ming, et al. Boosting the electrochemical performance of hematite nanorods via quenching-induced metal single atom functionalization. Journal of Materials Chemistry A 9.6 (2021): 3492-3499.

33. Wang, **aohong, et al. Preparation of porous carbon based on partially degraded raw biomass by Trichoderma viride to optimize its toluene adsorption performance. Environmental Science and Pollution Research (2021): 1-10.

34. Wu, Kang, et al. Nonthermal plasma catalysis for toluene decomposition over BaTiO3-based catalysts by Ce do** at A-sites: The role of surface-reactive oxygen species. Journal of Hazardous Materials 405 (2021): 124156.

35. Cheng, Hairong, et al. Micro-mesoporous carbon fabricated by Phanerochaete chrysosporium pretreatment coupling with chemical activation: Promoting effect and toluene adsorption performance. Journal of Environmental Chemical Engineering 9.2 (2021): 105054.

36. Lei, H., et al. Recent Understanding of Low-Temperature Copper Dynamics in Cu-Chabazite NH3-SCR Catalysts. Catalysts 2021, 11, 52. 2021,

      37.Zhang, Mingyuan, et al. Enhancement of catalytic toluene combustion over Pt–Co3O4 catalyst through in-situ metal-organic template conversion. Chemosphere 262 (2021): 127738.