Rapid growth of new atmospheric particles by nitric acid and ammonia condensation M Wang, W Kong, R Marten, XC He, D Chen, J Pfeifer, A Heitto, ... Nature 581 (7807), 184-189, 2020 | 246 | 2020 |
Performances of toluene removal by activated carbon derived from durian shell YJ Tham, PA Latif, AM Abdullah, A Shamala-Devi, YH Taufiq-Yap Bioresource technology 102 (2), 724-728, 2011 | 198 | 2011 |
Significant concentrations of nitryl chloride sustained in the morning: investigations of the causes and impacts on ozone production in a polluted region of northern China YJ Tham, Z Wang, Q Li, H Yun, W Wang, X Wang, L Xue, K Lu, N Ma, ... Atmospheric chemistry and physics 16 (23), 14959-14977, 2016 | 157 | 2016 |
Role of iodine oxoacids in atmospheric aerosol nucleation XC He, YJ Tham, L Dada, M Wang, H Finkenzeller, D Stolzenburg, S Iyer, ... Science 371 (6529), 589-595, 2021 | 155 | 2021 |
Observations of nitryl chloride and modeling its source and effect on ozone in the planetary boundary layer of southern China T Wang, YJ Tham, L Xue, Q Li, Q Zha, Z Wang, SCN Poon, WP Dubé, ... Journal of Geophysical Research: Atmospheres 121 (5), 2476-2489, 2016 | 139 | 2016 |
Differing mechanisms of new particle formation at two Arctic sites LJ Beck, N Sarnela, H Junninen, CJM Hoppe, O Garmash, F Bianchi, ... Geophysical Research Letters 48 (4), e2020GL091334, 2021 | 128 | 2021 |
Molecular understanding of new-particle formation from α-pinene between −50 and +25 °C M Simon, L Dada, M Heinritzi, W Scholz, D Stolzenburg, L Fischer, ... Atmospheric Chemistry and Physics 20 (15), 9183-9207, 2020 | 114 | 2020 |
Effect of activation temperature and heating duration on physical characteristics of activated carbon prepared from agriculture waste TY Jun, SD Arumugam, NHA Latip, AM Abdullah, PA Latif Environ. Asia 3, 143-148, 2010 | 108 | 2010 |
Fast heterogeneous N2O5 uptake and ClNO2 production in power plant and industrial plumes observed in the nocturnal residual layer over the North China Plain Z Wang, W Wang, YJ Tham, Q Li, H Wang, L Wen, X Wang, T Wang Atmospheric chemistry and physics 17 (20), 12361-12378, 2017 | 102 | 2017 |
Observations of N2O5 and ClNO2 at a polluted urban surface site in North China: High N2O5 uptake coefficients and low ClNO2 product yields X Wang, H Wang, L Xue, T Wang, L Wang, R Gu, W Wang, YJ Tham, ... Atmospheric environment 156, 125-134, 2017 | 97 | 2017 |
Nighttime chemistry at a high altitude site above Hong Kong SS Brown, WP Dubé, YJ Tham, Q Zha, L Xue, S Poon, Z Wang, DR Blake, ... Journal of Geophysical Research: Atmospheres 121 (5), 2457-2475, 2016 | 94 | 2016 |
An overview of the air pollution trend in Klang Valley, Malaysia A Makmom Abdullah, M Armi Abu Samah, T Yee Jun Open Environmental Sciences 6 (1), 2012 | 86 | 2012 |
Enhanced growth rate of atmospheric particles from sulfuric acid D Stolzenburg, M Simon, A Ranjithkumar, A Kürten, K Lehtipalo, ... Atmospheric Chemistry and Physics 20 (12), 7359-7372, 2020 | 84 | 2020 |
Heterogeneous N2O5 uptake coefficient and production yield of ClNO2 in polluted northern China: roles of aerosol water content and chemical composition YJ Tham, Z Wang, Q Li, W Wang, X Wang, K Lu, N Ma, C Yan, S Kecorius, ... Atmospheric Chemistry and Physics 18 (17), 13155-13171, 2018 | 84 | 2018 |
Molecular understanding of the suppression of new-particle formation by isoprene M Heinritzi, L Dada, M Simon, D Stolzenburg, AC Wagner, L Fischer, ... Atmospheric Chemistry and Physics 20 (20), 11809-11821, 2020 | 80 | 2020 |
Oxidizing capacity of the rural atmosphere in Hong Kong, Southern China Z Li, L Xue, X Yang, Q Zha, YJ Tham, C Yan, PKK Louie, CWY Luk, ... Science of the total environment 612, 1114-1122, 2018 | 78 | 2018 |
Presence of high nitryl chloride in Asian coastal environment and its impact on atmospheric photochemistry YJ Tham, C Yan, L Xue, Q Zha, X Wang, T Wang Chinese science bulletin 59, 356-359, 2014 | 72 | 2014 |
Impacts of heterogeneous uptake of dinitrogen pentoxide and chlorine activation on ozone and reactive nitrogen partitioning: improvement and application of the WRF-Chem model … Q Li, L Zhang, T Wang, YJ Tham, R Ahmadov, L Xue, Q Zhang, J Zheng Atmospheric Chemistry and Physics 16 (23), 14875-14890, 2016 | 69 | 2016 |
The driving factors of new particle formation and growth in the polluted boundary layer M Xiao, CR Hoyle, L Dada, D Stolzenburg, A Kürten, M Wang, ... Atmospheric Chemistry and Physics Discussions 2021, 1-28, 2021 | 59 | 2021 |
Increased night-time oxidation over China despite widespread decrease across the globe H Wang, H Wang, X Lu, K Lu, L Zhang, YJ Tham, Z Shi, K Aikin, S Fan, ... Nature Geoscience 16 (3), 217-223, 2023 | 55 | 2023 |