Boosting toluene combustion by engineering Co–O strength in cobalt oxide catalysts Y Shen, J Deng, S Impeng, S Li, T Yan, J Zhang, L Shi, D Zhang Environmental Science & Technology 54 (16), 10342-10350, 2020 | 240 | 2020 |
Unraveling the effects of the coordination number of Mn over α-MnO2 catalysts for toluene oxidation F Wang, J Deng, S Impeng, Y Shen, T Yan, G Chen, L Shi, D Zhang Chemical Engineering Journal 396, 125192, 2020 | 139 | 2020 |
Unraveling the Unexpected Offset Effects of Cd and SO2 Deactivation over CeO2-WO3/TiO2 Catalysts for NOx Reduction L Yan, F Wang, P Wang, S Impeng, X Liu, L Han, T Yan, D Zhang Environmental Science & Technology 54 (12), 7697-7705, 2020 | 109 | 2020 |
Self-Protected CeO2–SnO2@SO42–/TiO2 Catalysts with Extraordinary Resistance to Alkali and Heavy Metals for NOx Reduction S Cai, T Xu, P Wang, L Han, S Impeng, Y Li, T Yan, G Chen, L Shi, ... Environmental Science & Technology 54 (19), 12752-12760, 2020 | 107 | 2020 |
Covalent organic framework-based ultrathin crystalline porous film: manipulating uniformity of fluoride distribution for stabilizing lithium metal anode Z Zhao, W Chen, S Impeng, M Li, R Wang, Y Liu, L Zhang, L Dong, ... Journal of Materials Chemistry A 8 (6), 3459-3467, 2020 | 97 | 2020 |
High-performance binary Mo–Ni catalysts for efficient carbon removal during carbon dioxide reforming of methane X Zhang, J Deng, M Pupucevski, S Impeng, B Yang, G Chen, S Kuboon, ... ACS Catalysis 11 (19), 12087-12095, 2021 | 86 | 2021 |
A MnN4 moiety embedded graphene as a magnetic gas sensor for CO detection: A first principle study S Impeng, A Junkaew, P Maitarad, N Kungwan, D Zhang, L Shi, ... Applied Surface Science 473, 820-827, 2019 | 82 | 2019 |
Direct oxidation of methane to methanol on Fe–O modified graphene S Impeng, P Khongpracha, C Warakulwit, B Jansang, J Sirijaraensre, ... Rsc Advances 4 (24), 12572-12578, 2014 | 64 | 2014 |
Alkali and Heavy Metal Copoisoning Resistant Catalytic Reduction of NOx via Liberating Lewis Acid Sites Z Shen, X Liu, S Impeng, C Zhang, T Yan, P Wang, D Zhang Environmental Science & Technology 56 (8), 5141-5149, 2022 | 44 | 2022 |
Methane activation on Fe-and FeO-embedded graphene and boron nitride sheet: role of atomic defects in catalytic activities S Impeng, P Khongpracha, J Sirijaraensre, B Jansang, M Ehara, ... RSC advances 5 (119), 97918-97927, 2015 | 44 | 2015 |
Compensation or Aggravation: Pb and SO2 Copoisoning Effects over Ceria-Based Catalysts for NOx Reduction J Zou, S Impeng, F Wang, T Lan, L Wang, P Wang, D Zhang Environmental Science & Technology 56 (18), 13368-13378, 2022 | 39 | 2022 |
Bandgap modulation in Zr-based metal–organic frameworks by mixed-linker approach RM Cedeno, R Cedeno, MA Gapol, T Lerdwiriyanupap, S Impeng, ... Inorganic Chemistry 60 (12), 8908-8916, 2021 | 33 | 2021 |
Unveiling the CO oxidation mechanism over a molecularly defined copper single‐atom catalyst supported on a metal–organic framework AM Abdel‐Mageed, B Rungtaweevoranit, S Impeng, J Bansmann, ... Angewandte Chemie International Edition 62 (30), e202301920, 2023 | 32 | 2023 |
Defect engineering in MIL-125-(Ti)-NH 2 for enhanced photocatalytic H 2 generation L Pukdeejorhor, S Wannapaiboon, J Berger, K Rodewald, ... Journal of Materials Chemistry A 11 (16), 9143-9151, 2023 | 32 | 2023 |
SO2-tolerant NOx reduction over SO42--coordinated Cu-SAPO-34 catalysts via protecting the reduction and re-oxidation of Cu sites J He, S Impeng, J Zhang, J Zhang, P Wang, D Zhang Chemical Engineering Journal 448, 137720, 2022 | 31 | 2022 |
Unique Compensation Effects of Heavy Metals and Phosphorus Copoisoning over NOx Reduction Catalysts P Zhang, P Wang, S Impeng, T Lan, X Liu, D Zhang Environmental Science & Technology 56 (17), 12553-12562, 2022 | 30 | 2022 |
Intrinsic property and catalytic performance of single and double metal atoms incorporated g-C3N4 for O2 activation: A DFT insight T Roongcharoen, S Impeng, C Chitpakdee, T Rungrotmongkol, ... Applied Surface Science 541, 148671, 2021 | 30 | 2021 |
Revealing the effect of N-content in Fe doped graphene on its catalytic performance for direct oxidation of methane to methanol T Roongcharoen, S Impeng, N Kungwan, S Namuangruk Applied Surface Science 527, 146833, 2020 | 24 | 2020 |
Mo promoting Ni-based catalysts confined by halloysite nanotubes for dry reforming of methane: Insight of coking and H2S poisoning resistance J Zheng, S Impeng, J Liu, J Deng, D Zhang Applied Catalysis B: Environmental 342, 123369, 2024 | 23 | 2024 |
Computational structure prediction of (4, 4)-connected copper paddle-wheel-based MOFs: influence of ligand functionalization on the topological preference S Impeng, R Cedeno, JP Dürholt, R Schmid, S Bureekaew Crystal Growth & Design 18 (5), 2699-2706, 2018 | 23 | 2018 |