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Chemical Research in Toxicology|October 21, 2022
Chemoproteomic Approach for the Quantitative Identification of Arsenic-Binding ProteinsXuejiao Dong, Pengcheng Wang, Yinsheng WangAnalytical Chemistry|November 26, 2019
Chemical Proteomic Profiling of Lysophosphatidic Acid-Binding ProteinsXuejiao Dong, Linfeng Gao, Jikui Song, et al.Analytical Chemistry|June 29, 2021
Chemoproteomic Approach toward Probing the Interactomes of Perfluoroalkyl SubstancesQuanqing Zhang, Xuejiao Dong, Jiuwei Lu, et al.Journal of Hazardous Materials|April 20, 2021
Characterizing the partitioning behavior of formaldehyde, benzene and toluene on indoor fabrics: Effects of temperature and humidityXiaojun Zhou, Xuejiao Dong, Ruixue Ma, et al.International Immunology|June 7, 2019
Discs large homolog 1 regulates B-cell proliferation and antibody productionXuejiao Dong, Xinxin Li, Ce Liu, et al.Environmental Pollution (Barking, Essex : 1987)|November 6, 2024
Advancing characterization of VOC diffusion in indoor fabrics: A dual-porosity modeling approachXiaojun Zhou, Weipeng Fang, Xuejiao Dong, et al.Analytical Chemistry|September 22, 2021
Proteome-Wide Characterizations of N6-Methyl-Adenosine Triphosphate- and N6-Furfuryl-Adenosine Triphosphate-Binding Capabilities of KinasesXuejiao Dong, Jianan Sun, Weili Miao, et al.The Science of the Total Environment|December 30, 2022
A multistage fractal-like tree network model to predict VOC diffusion characteristic of indoor fabricsXiaojun Zhou, Jialu Liu, Xuejiao Dong, et al.Analytical Chemistry|May 19, 2020
Chemical Proteomic Profiling of the Interacting Proteins of Isoprenoid PyrophosphatesRong Cai, Xuejiao Dong, Kailin Yu, et al.Journal of Hazardous Materials|March 6, 2024
QSPR modeling for the prediction of partitioning of VOCs and SVOCs to indoor fabrics: Integrating environmental factorsXiaojun Zhou, Weipeng Fang, Xuejiao Dong, et al.Pageof 3