[1] Xin Wang*, Murat Cirit, John S. Wishnok, Linda G. Griffith, and Steven R. Tannenbaum*; Analysis of an Integrated Human Multi-organ Microphysiological System for Combined Tolcapone Metabolism and Brain Metabolomics; Analytical Chemistry, 2019, 91, 8667-8675.
[2] Xin Wang*, Carlos T. Garcia, Guanyu Gong, John S. Wishnok, and Steven R. Tannenbaum*; Automated Online Solid Phase Derivatization for Sensitive Quantification of Endogenous S-Nitrosoglutathione and Rapid Capture of Other Low-Molecular-Mass S-Nitrosothiols; Analytical Chemistry, 2018, 90, 1967-1975.
[3] Xin Wang, Xianjiang Li, Ze Li, Yiding Zhang, Yu Bai and Huwei Liu*; Online coupling of in-tube solid phase microextraction with direct analysis in real time mass spectrometry for rapid determination of triazine herbicides by using polymer monolith incorporated with single-wall carbon nanotubes; Analytical Chemistry, 2014, 86, 4739-4747. (Highly cited paper, cited by: 180 google scholar)
[4] Xin Wang, Xianjiang Li, Yu Bai and Huwei Liu*; Just dip it: Online coupling of “Dip-it” polymer monolith microextraction with plasma assisted laser desorption ionization mass spectrometry; Chemical Communications, 2015, 51, 4615-4618.
[5] Xin Wang, Qiao Ma, Min Li, Cuilan Chang, Yu Bai and Huwei Liu*; Automated and sensitive analysis of 28-epihomobrassinolide in Arabidopsis thaliana by on-line polymer monolith microextraction coupled to liquid chromatography-mass spectrometry; Journal of Chromatography A, 2013,1317, 121-128.
[6] Xin Wang, Alexandros Lamprou, Frantisek Svec,* and Huwei Liu*; Polymer-based Monolithic Column with Incorporated Chiral Metal-Organic Framework for Enantioseparation of Methyl Phenyl Sulfoxide Using Nano-Liquid Chromatography; Journal of Separation Science, 2016, 39, 4544-4548.
[7] Cuilan Chang, Xin Wang, Yu Bai, Huwei Liu*; Applications of nanomaterials in enantioseparation and related techniques; Trends in Analytical Chemistry, 2012, 39, 195-206.
[8] Feifeng Huo, Xin Wang, Yehua Han, Yu Bai, Wei Zhang, Hancheng Yuan, Huwei Liu*; A new derivatization approach for the rapid and sensitive analysis of brassinosteroids by using ultra high performance liquid chromatography-electrospray ionization triple quadrupole mass spectrometry; Talanta, 2012, 99, 420-425.
[9] Xianjiang Li, Xin Wang, Wen Ma, Wanpeng Ai, Li Ding and Huwei Liu*; Fast analysis of glycosides based on HKUST-1-coated monolith solid-phase microextraction and direct analysis in real-time mass spectrometry; Journal of Separation Science, 2017, 40, 1589-1596.
[10] Qiongwei Yu, Xin Wang, Qiao Ma, Bifeng Yuan, Haibo He and Yuqi Feng*; Automated analysis of non-steroidal anti-inflammatory drugs in human plasma and water samples by in-tube solid-phase microextraction coupled to liquid chromatography-mass spectrometry based on a poly(4-vinylpyridine-co-ethylene dimethacrylate) monolith; Analytical Methods, 2011, 4, 1538-1545.
[11] Xianjiang Li, Xin Wang, Linnan Li, Yu Bai and Huwei Liu*; Direct Analysis in Real Time Mass Spectrometry: a Powerful Tool for Fast Analysis; Mass Spectrometry Letters, 2015, 6, 1-6.
[12] Xianjiang Li, Ze Li, Xin Wang, Honggang Nie, Yiding Zhang, Yu Bai and Huwei Liu*; Monolith dip-it: a bifunctional device for improving the sensitivity of direct analysis in real time mass spectrometry; Analyst, 2016, 141, 4947-4952.
[13] Xianjiang Li, Cuilan Chang, Xin Wang, Yu Bai and Huwei Liu*; Application of homochiral metal-organic frameworks in enantioselective adsorption and chromatography separation; Electrophoresis, 2014, 35, 2733-2743.
[14] Xianjiang Li, Jiawei Xing, Cuilan Chang, Xin Wang, Yu Bai, Xiuping Yan and Huwei Liu*; Solid-phase extraction with the metal–organic framework MIL-101(Cr) combined with direct analysis in real time mass spectrometry for the fast analysis of triazine herbicides; Journal of Separation Science, 2014, 37, 1489-1495.
[15] Cuilan Chang, Xiaoyue Qi, Jiangwei Zhang, Yaming Qiu, Xianjiang Li, Xin Wang, Yu Bai, Jun-Liang Sun and Huwei Liu*; Facile synthesis of magnetic homochiral metal-organic frameworks for “enantioselective fishing”; Chemical Communications, 2015, 51, 3566-3569.
[16] Haitham Amal, Boaz Barak, Vadiraja Bhat, Guanyu Gong, Brian A. Joughin, Xin Wang, John S. Wishnok, Guoping Feng, Steven R. Tannenbaum*; Shank3 mutation in a mouse model of autism leads to changes in the S-nitroso-proteome and affects key proteins involved in vesicle release and synaptic function; Molecular Psychiatry, 2018, 1, 1-14. (Nature series)
[17] Haitham Amal*, Guanyu Gong, Hongmei Yang, Brian A. Joughin, Xin Wang, Charles G. Knutson, Maryam Kartawy, Igor Khaliulin, John S. Wishnok, Steven R. Tannenbaum*; Low doses of arsenic in a mouse model of human exposure and in neuronal culture lead to S-Nitrosylation of synaptic proteins and apoptosis via nitric oxide; International Journal of Molecular Sciences, 2020, 21, 3948-3967.