Issue Date | Title | Author(s) | Source | scopus | WOS | Fulltext/Archive link |
2006 | Au-Ag alloy nanoparticle as catalyst for CO oxidation: Effect of Si/Al ratio of mesoporous support | Wang, A.; Hsieh, Y.-P.; Chen, Y.-F.; Mou, C.-Y.; CHUNG-YUAN MOU | Journal of Catalysis | 134 | 124 | |
2008 | Au-Cu Alloy nanoparticles confined in SBA-15 as a highly efficient catalyst for CO oxidation | Liu, X.; Wang, A.; Wang, X.; Mou, C.-Y.; Zhang, T.; CHUNG-YUAN MOU | Chemical Communications | 294 | 298 | |
2011 | Au-Cu alloy nanoparticles supported on silica gel as catalyst for CO oxidation: Effects of Au/Cu ratios | Liu, X.; Wang, A.; Zhang, T.; Su, D.-S.; Mou, C.-Y.; CHUNG-YUAN MOU | Catalysis Today | 117 | 116 | |
2013 | Catalysis by gold: New insights into the support effect | Liu, X.Y.; Wang, A.; Zhang, T.; Mou, C.-Y.; CHUNG-YUAN MOU | Nano Today | 202 | 188 | |
2009 | CO oxidation catalyzed by Au-Ag bimetallic nanoparticles supported in mesoporous silica | Yen, C.-W.; Lin, M.-L.; Wang, A.; Chen, S.-A.; Chen, J.-M.; Mou, C.-Y.; CHUNG-YUAN MOU | Journal of Physical Chemistry C | 158 | 153 | |
2006 | CO oxidation catalyzed by gold nanoparticles confined in mesoporous aluminosilicate Al-SBA-15: Pretreatment methods | Chiang, C.-W.; Wang, A.; Mou, C.-Y.; CHUNG-YUAN MOU | Catalysis Today | 68 | 64 | |
2020 | Corrigendum to “Coupled carbon, sulfur and nitrogen cycles of mixotrophic growth of Pseudomonas sp. C27 under denitrifying sulfide removal conditions” [Bioresour. Technol. 171 (2014) 120–126] (Bioresource Technology (2014) 171 (120–126), (S0960852414011420), (10.1016/j.biortech.2014.08.035)) | Guo, H.; Chen, C.; Lee, D.-J.; Wang, A.; Gao, D.; Ren, N.; DUU-JONG LEE | Bioresource Technology | 0 | 0 | |
2021 | Corrigendum to “High-rate denitrifying sulfide removal process in expanded granular sludge bed reactor” [Bioresour. Technol. 100 (2009) 2316–2319] (Bioresource Technology (2009) 100(7) (2316–2319), (S0960852408008791), (10.1016/j.biortech.2008.10.023)) | Chen, C.; Wang, A.; Ren, N.; Lee, D.-J.; Lai, J.-Y.; DUU-JONG LEE | Bioresource Technology | 0 | 0 | |
2020 | Corrigendum to “Integrated simultaneous desulfurization and denitrification (ISDD) process at various COD/sulfate ratios” [Bioresour. Technol. 155 (2014) 161–169] (Bioresource Technology (2014) 155 (161–169), (S096085241301907X), (10.1016/j.biortech.2013.12.067)) | Chen, C.; Liu, L.; Lee, D.-J.; Guo, W.; Wang, A.; Xu, X.; Zhou, X.; Wu, D.; Ren, N.; DUU-JONG LEE | Bioresource Technology | 0 | 0 | |
2014 | Effect of temperature switchover on the degradation of antibiotic chloramphenicol by biocathode bioelectrochemical system | Kong, D.; Liang, B.; Lee, D.-J.; Wang, A.; Ren, N.; DUU-JONG LEE | Journal of Environmental Sciences (China) | 37 | 33 | |
2014 | Efficient and durable Au alloyed Pd single-atom catalyst for the Ullmann reaction of aryl chlorides in water | Zhang, L.; Wang, A.; Miller, J.T.; Liu, X.; Yang, X.; Wang, W.; Li, L.; Huang, Y.; Mou, C.-Y.; Zhang, T.; CHUNG-YUAN MOU | ACS Catalysis | 203 | 195 | |
2010 | Enrichment strategy to select functional consortium from mixed cultures: Consortium from rumen liquor for simultaneous cellulose degradation and hydrogen production | Wang, A.; Gao, L.; Ren, N.; Xu, J.; Liu, C.; Lee, D.-J.; DUU-JONG LEE | International Journal of Hydrogen Energy | 31 | 28 | |
2015 | Influence of COD/sulfate ratios on the integrated reactor system for simultaneous removal of carbon, sulfur and nitrogen | Yuan, Y.; Chen, C.; Zhao, Y.; Wang, A.; Sun, D.; Huang, C.; Liang, B.; Tan, W.; Xu, X.; Zhou, X.; Lee, D.-J.; Ren, N.; DUU-JONG LEE | Water Science and Technology | 8 | 7 | |
2007 | Numerical comparison study of cloud microphysical parameterization schemes for a moderate snowfall event in North China | Lin, W.S.; Sui, C.-H.; Bueh, C.; Wang, A.; Fan, S.; Wu, C.; Fong, S.; Li, J.; Meng, J.; CHUNG-HSIUNG SUI | Meteorology and Atmospheric Physics | 4 | 3 | |
2011 | Occurrence of power overshoot for two-chambered MFC at nearly steady-state operation | Liu, L.; Lee, C.-Y.; Ho, K.-C.; Nien, P.-C.; Su, A.; Wang, A.; Ren, N.; KUO-CHUAN HO ; DUU-JONG LEE ; Lee D.-J. | International Journal of Hydrogen Energy | 18 | 19 | |
2011 | Power overshoot in two-chambered microbial fuel cell (MFC) | Nien, P.-C.; Lee, C.-Y.; Ho, K.-C.; Adav, S.S.; Liu, L.; Wang, A.; Ren, N.; KUO-CHUAN HO ; Lee D.-J. | Bioresource Technology | 67 | 65 | |
2014 | Promotional effect of Pd single atoms on Au nanoparticles supported on silica for the selective hydrogenation of acetylene in excess ethylene | Pei, G.X.; Liu, X.Y.; Wang, A.; Li, L.; Huang, Y.; Zhang, T.; Lee, J.W.; Jang, B.W.L.; Mou, C.-Y.; CHUNG-YUAN MOU | New Journal of Chemistry | 133 | 131 | |
2017 | Prospects of spintronics based on 2D materials | Feng, Y.P.; Shen, L.; Yang, M.; Wang, A.; Zeng, M.; Wu, Q.; Chintalapati, S.; Chang, C.-R.; CHING-RAY CHANG | Wiley Interdisciplinary Reviews: Computational Molecular Science | 139 | 136 | |
2015 | Screen of bioflocculant-product strains on synchronous metabolism pentose and hexose | Wang, L.; Su, X.; Liu, L.; Ma, F.; Wang, A.; Lee, D.; Ren, N.; DUU-JONG LEE | Harbin Gongye Daxue Xuebao/Journal of Harbin Institute of Technology | 0 | 0 | |
2014 | Structural and catalytic properties of supported Ni-Ir alloy catalysts for H2 generation via hydrous hydrazine decomposition | He, L.; Huang, Y.; Liu, X.Y.; Li, L.; Wang, A.; Wang, X.; Mou, C.-Y.; Zhang, T.; CHUNG-YUAN MOU | Applied Catalysis B: Environmental | 104 | 102 | |