Paper Publications
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[1] 杨兆敏. Nitrogen-Containing Compounds Enhance Light Absorption of Aromatic-Derived Brown Carbon. Environmental Science & Technology, 56, 4005-4016, 2022.
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[2] Tsona Tchinda Narcisse. Atmospheric fate of organosulfates through gas-phase and aqueous-phase reactions with hydroxyl radicals: implications for inorganic sulfate formation. Atmospheric Chemistry and Physics, 25, 8575-8590, 2025.
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[3] 宋爱静. Marine Volatile Organic Compounds Promote the Chloride Depletion in Sea Salt Aerosols. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 130, 2025.
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[4] 汪金燕. Marine Biogenic Volatile Organic Compounds: Production, Emission, Atmospheric Transformation, and Climate Effects. CURRENT POLLUTION REPORTS, 11, 2025.
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[5] 杨兆敏. Highly Oxidized Molecules Make a Significant Contribution to Enhanced Aromatic-Derived Secondary Organic Aerosol under a Humid Environment. ADVANCES IN ATMOSPHERIC SCIENCES, 2025.
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[6] 张姗. Molecular composition of secondary brown carbon from styrene at low-to-high oxidation degrees. Environmental Pollution, 368, 2025.
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[7] Jie Hu. Underestimated role of sea surface temperature in sea spray aerosol formation and climate effects. NPJ CLIMATE AND ATMOSPHERIC SCIENCE, 7, 2024.
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[8] 宋亚茹. Role of sea spray aerosol at the air-sea interface in transporting aromatic acids to the atmosphere. Atmospheric Chemistry and Physics, 24, 5847-5862, 2024.
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[9] pH regulates the formation of organosulfates and inorganic sulfate from organic peroxide reaction with dissolved SO2 in aquatic media. Atmospheric Chemistry and Physics, 24, 1841-1853, 2024.
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[10] Lin Du*, Li Xu*, Kun Li, Christian George, Maofa Ge. NH3 Weakens the Enhancing Effect of SO2 on Biogenic Secondary Organic Aerosol Formation. Environ. Sci. Technol. Lett., 2023, 10, 145−151. (cover article).
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[11] Zhaomin Yang, Kun Li, Narcisse T. Tsona, Xin Luo, and Lin Du*.SO2 enhances aerosol formation from anthropogenic volatile organic compound ozonolysis by producing sulfur-containing compounds. Atmos. Chem. Phys., 2023, 23, 417–430..
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[12] Shan Zhang, Lin Du*, Zhaomin Yang, Narcisse Tsona Tchinda, Jianlong Li, and Kun Li*. Contrasting impacts of humidity on the ozonolysis of monoterpenes: insights into the multi-generation chemical mechanism. Atmos. Chem. Phys., 2023, 23, 10809–10822..
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[13] Minglan Xu, Narcisse Tsona Tchinda, Jianlong Li, and Lin Du*. Insoluble lipid film mediates transfer of soluble saccharides from the seato the atmosphere: the role of hydrogen bonding.Atmos. Chem. Phys., 2023, 23, 2235–2249..
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[14] Jianlong Li, Xing Zhai*, Lin Du*. Effect of Nitrate on the Photochemical Production of Carbonyl Sulfide From Surface Seawater. Geophys. Res. Lett., 2022, 49, e2021GL097051..
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[15] Zhaomin Yang, Lin Du*, Yongjie Li, Xinlei Ge. Nitrogen-Containing Compounds Enhance Light Absorption of Aromatic-Derived Brown Carbon. Environ. Sci. Technol., 2022, 56, 4005-4016. (cover article).
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[16] Narcisse T. Tsona, Lin Du*, Ling Liu, Xiuhui Zhang. Pyruvic Acid, an Efficient Catalyst in SO3 Hydrolysis and Effective Clustering Agent in Sulfuric-Acid-Based New Particle Formation. Atmos. Chem. Phys., 2022, 22, 1951-1963..
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[17] Li Xu, Narcisse T. Tsona, Lin Du*. Relative Humidity Changes the Role of SO2 in Biogenic Secondary Organic Aerosol Formation. J. Phys. Chem. Lett. 2021, 7365-7372.(Supplementary Cover).
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[18] Li Xu, Zhaomin Yang, Narcisse T. Tsona, Xinke Wang, Christian George, Lin Du*. Anthropogenic-biogenic interactions at night: enhanced formation of secondary aerosols, particulate nitrogen- and sulfur-containing organics from β-pinene oxidation. Environ. Sci. Technol., 2021, 55, 7794-7807. (Front cover).
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[19] Zhaomin Yang, Li Xu, Narcisse T. Tsona, Jianlong Li, Xin Luo, Lin Du*. SO2 and NH3 emissions enhance organosulfur compounds and fine particle formation from the photooxidation of a typical aromatic hydrocarbon. Atmos. Chem. Phys., 2021, 21, 7963-7981..
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[20] Li Xu, Lin Du*, Narcisse T. Tsona, Maofa Ge. Anthropogenic Effects on Biogenic Secondary Organic Aerosol Formation. Adv. Atmos. Sci., 2021, 38, 1053-1084..
