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1. Chen, J., Lee, W.-C., Itoh, M., and Kuwata, M.: A Significant Portion of Water-Soluble Organic Matter in Fresh Biomass Burning Particles Does Not Contribute to Hygroscopic Growth: An Application of Polarity Segregation by 1-Octanol–Water Partitioning Method. Environ. Sci. Technol., 53, 10034-10042, 2019.
2. Chen, J., Budisulistiorini, S. H., Miyakawa, T., Komazaki, Y., and Kuwata, M.: Secondary aerosol formation promotes water uptake by organic-rich wildfire haze particles in Equatorial Asia. Atmos. Chem. Phys., 18, 7781-7798, 2018.
3. Chen, J., Budisulistiorini, S. H., Itoh, M., Lee, W.-C., Miyakawa, T., Komazaki, Y., Yang, L., Kuwata, M.: Water uptake by fresh Indonesian peat burning particles is limited by water-soluble organic matter. Atmos. Chem. Phys., 17, 11591-11604, 2017.
4. Chen, J., Zhao, C. S., Ma, N., and P. Yan.: Aerosol hygroscopicity parameter derived from the light scattering enhancement factor measurements in the North China Plain. Atmos. Chem. Phys., 14, 8105-8118, 2014.
5. Chen, J., Zhao, C. S., Ma, N., Liu, P. F., Göbel, T., Hallbauer, E., Deng, Z. Z., Ran, L., Xu, W. Y., Liang, Z., Liu, H. J., Yan, P., Zhou, X. J., and Wiedensohler, A.: A parameterization of low visibilities for hazy days in the North China Plain, Atmos. Chem. Phys., 12, 4935-4950, 2012.
6. Lee, W. C., Chen, J., Budisulistiorini, S. H., Itoh, M., Shiodera, S., and Kuwata, M.: Polarity Dependent Chemical Characteristics of Water-Soluble Organic Matter from Laboratory-Generated Biomass Burning Revealed by the 1-Octanol-Water Partitioning. Environ. Sci. Technol., 53, 8047-8056, 2019.
7. Budisulistiorini, S. H., Riva, M., Williams, M., Miyakawa, T., Chen, J., Itoh, M., Surratt, J. D., Kuwata, M.: Dominant contribution of oxygenated organic aerosol to haze particles from real-time observation in Singapore during an Indonesian wildfire event in 2015. Atmos. Chem. Phys., 18, 16481-16498, 2018.
8. Budisulistiorini, S. H., Riva, M., Williams, M., Chen, J., Itoh, M., Surratt, J. D., Kuwata, M.: Light-absorbing brown carbon aerosol constituents from combustion of Indonesian peat and biomass. Environ. Sci. Technol., 51: 4415-4423, 2017.
9. Bian, Y. X., Zhao, C. S., Ma, N., Chen, J., and Xu, W. Y.: A study of aerosol liquid water content based on hygroscopicity measurements at high relative humidity in the North China Plain. Atmos. Chem. Phys., 14, 6417-6426, 2014.
10. Ran, L., C. S. Zhao, W. Y. Xu, M. Han, X. Q. Lu, S. Q. Han, W. L. Lin, X. B. Xu, W. Gao, Q. Yu, F. H. Geng, N. Ma, Z. Z. Deng, and J. Chen.: Ozone production in summer in the megacities of Tianjin and Shanghai, China: a comparative study, Atmos. Chem. Phys., 12, 7531-7542, 2012.
11. Deng, Z. Z., C. S. Zhao, N. Ma, P. F. Liu, L. Ran, W. Y. Xu, J. Chen, Z. Liang, S. Liang, M. Y. Huang, X. C. Ma, Q. Zhang, J. N. Quan, P. Yan, S. Henning, K. Mildenberger, E. Sommerhage, M. Schäfer, F. Stratmann, and A. Wiedensohler. Size-resolved and bulk activation properties of aerosols in the North China Plain. Atmos. Chem. Phys., 11, 3835-3846, 2011.