How can airborne transmission of COVID-19 indoors be minimised? L Morawska, JW Tang, W Bahnfleth, PM Bluyssen, A Boerstra, ... Environment international 142, 105832, 2020 | 1549 | 2020 |
Use of zero-valent iron nanoparticles in inactivating microbes M Diao, M Yao Water research 43 (20), 5243-5251, 2009 | 411 | 2009 |
A paradigm shift to combat indoor respiratory infection L Morawska, J Allen, W Bahnfleth, PM Bluyssen, A Boerstra, G Buonanno, ... Science 372 (6543), 689-691, 2021 | 329 | 2021 |
Global survey of antibiotic resistance genes in air J Li, J Cao, Y Zhu, Q Chen, F Shen, Y Wu, S Xu, H Fan, G Da, R Huang, ... Environmental science & technology 52 (19), 10975-10984, 2018 | 324 | 2018 |
Coronavirus disease 2019 patients in earlier stages exhaled millions of severe acute respiratory syndrome coronavirus 2 per hour J Ma, X Qi, H Chen, X Li, Z Zhang, H Wang, L Sun, L Zhang, J Guo, ... Clinical Infectious Diseases 72 (10), e652-e654, 2021 | 294 | 2021 |
Rapid magnetic removal of aqueous heavy metals and their relevant mechanisms using nanoscale zero valent iron (nZVI) particles P Huang, Z Ye, W Xie, Q Chen, J Li, Z Xu, M Yao Water research 47 (12), 4050-4058, 2013 | 238 | 2013 |
On airborne transmission and control of SARS-Cov-2 M Yao, L Zhang, J Ma, L Zhou Science of The Total Environment 731, 139178, 2020 | 206 | 2020 |
Bioaerosol emissions and detection of airborne antibiotic resistance genes from a wastewater treatment plant J Li, L Zhou, X Zhang, C Xu, L Dong, M Yao Atmospheric environment 124, 404-412, 2016 | 203 | 2016 |
Bioaerosol science, technology, and engineering: past, present, and future Z Xu, Y Wu, F Shen, Q Chen, M Tan, M Yao Aerosol Science and Technology 45 (11), 1337-1349, 2011 | 186 | 2011 |
Rapid inactivation of biological species in the air using atmospheric pressure nonthermal plasma Y Liang, Y Wu, K Sun, Q Chen, F Shen, J Zhang, M Yao, T Zhu, J Fang Environmental science & technology 46 (6), 3360-3368, 2012 | 167 | 2012 |
Rapid flu diagnosis using silicon nanowire sensor F Shen, J Wang, Z Xu, Y Wu, Q Chen, X Li, X Jie, L Li, M Yao, X Guo, ... Nano letters 12 (7), 3722-3730, 2012 | 161 | 2012 |
Investigation of transition metal ion doping behaviors on TiO2 nanoparticles J Chen, M Yao, X Wang Journal of Nanoparticle Research 10, 163-171, 2008 | 147 | 2008 |
Ambient bioaerosol particle dynamics observed during haze and sunny days in Beijing K Wei, Z Zou, Y Zheng, J Li, F Shen, C Wu, Y Wu, M Hu, M Yao Science of the Total Environment 550, 751-759, 2016 | 141 | 2016 |
Bioaerosol field measurements: Challenges and perspectives in outdoor studies T Šantl-Temkiv, B Sikoparija, T Maki, F Carotenuto, P Amato, M Yao, ... Aerosol Science and Technology 54 (5), 520-546, 2020 | 135 | 2020 |
Spread of airborne antibiotic resistance from animal farms to the environment: dispersal pattern and exposure risk H Bai, LY He, DL Wu, FZ Gao, M Zhang, HY Zou, MS Yao, GG Ying Environment international 158, 106927, 2022 | 131 | 2022 |
MS2 virus inactivation by atmospheric-pressure cold plasma using different gas carriers and power levels Y Wu, Y Liang, K Wei, W Li, M Yao, J Zhang, SA Grinshpun Applied and environmental microbiology 81 (3), 996-1002, 2015 | 130 | 2015 |
Breath-, air-and surface-borne SARS-CoV-2 in hospitals L Zhou, M Yao, X Zhang, B Hu, X Li, H Chen, L Zhang, Y Liu, M Du, B Sun, ... Journal of aerosol science 152, 105693, 2021 | 117 | 2021 |
What were the historical reasons for the resistance to recognizing airborne transmission during the COVID‐19 pandemic? JL Jimenez, LC Marr, K Randall, ET Ewing, Z Tufekci, T Greenhalgh, ... Indoor air 32 (8), e13070, 2022 | 106 | 2022 |
COVID-19 screening using breath-borne volatile organic compounds H Chen, X Qi, L Zhang, X Li, J Ma, C Zhang, H Feng, M Yao Journal of breath research, 2021 | 105 | 2021 |
Evaluation of a high-volume portable bioaerosol sampler in laboratory and field environments. HR An, G Mainelis, M Yao Indoor air 14 (6), 2004 | 104 | 2004 |