序号 | 文章 |
1 | Muyi He, You Jiang, Xiaofeng Wang, Yue Zhao, Sijian Ye, Jiabi Ma, Xiang Fang, Wei Xu. Rapid Characterization of Structure-Dependency Gas-phase Ion/Ion Reaction via Accumulative Tandem MS. Talanta, 2019, 195, 17-22. |
2 | Xiaoyun Gong, Chang Li, Rui Zhai, Jie Xie, You Jiang, Xiang Fang. Supercharging of Proteins by Salts during Polarity Reversed Nano-Electrospray Ionization. Analytical Chemistry, 2019, 91 (3), 1826−1837. |
3 | Hou Z, Xiong X, Fang X, Huang G. Enhanced Desorption Electrospray Ionization Mass Spectrometry via Synchronizing Ion Generation and Ion Injection. J Am Soc Mass Spectrom, 2019, 30(2):368-375. |
4 | Ye S, Li M, Jiang Y, Gong X, Xiong X, Liu D, Zhao B, Fang X. Ion Manipulation and Enrichment Mass Spectrometer for Cleavage of Disulfide Bond via Ion/Ion Reaction. J Mass Spectrom, 2019, 54(4):311-315. |
5 | Zhai R, Gong X, Xie J, Jiang Y, Huang Z, Dai X, Zhang Y, Qian X, Fang X. Ultrasensitive analysis of heat shock protein 90α with antibodies orderly arrayed on a novel type of immunoprobe based on magnetic COFs. Talanta, 2019, 191, 553−560. |
6 | Xie J, Fang X, Dai X, Shao B, Li J, Jiang Y, Yao K, Wang S, Xia X, Jiang H. Antibody-functionalized reduced graphene oxide films for highly selective capture and purification of aflatoxins. Microchimica Acta, 2019, 186: 193–200. |
7 | Wang X, Zheng Y, Shi J, Gong X, Ji Y, Han W, Jiang Y, Austin DE, Fang X, Zhang Z. Elucidating the Reaction Mechanisms between Triazine and Hydrogen Sulfide with pH Variation Using Mass Spectrometry. Analytical Chemistry, 2018, 90(18): 11138-11145. |
8 | Yin Xinchi, Jiang You, Chu Shiying, Weng Guofeng, Fang Xiang, Pan Yuanjiang. Copper-Catalyzed Decarboxylative Iodination Reaction in the Gas Phase. Acta Chimica Sinica, 2018, 76 (6), 436−439. |
9 | Gong X, Xiong X, Qi L, Fang X. Investigating the Structural Transitions of Proteins during Dissolution by Mass Spectrometry. Talanta, 2017, 164, 418−426. |
10 | He M, Jiang Y, Guo D, Xiong X, Fang X, Xu W. Dual-Polarity Ion Trap Mass Spectrometry: Dynamic Monitoring and Controlling Gas-phase Ion-Ion Reactions. J Am Soc Mass Spectrom, 2017, 28(7):1262-1270. |
11 | Xingyu Si, Xingchuang Xiong, Sichun Zhang, Xiang Fang, Xinrong Zhang. Detecting Low-Abundance Molecules at Single-Cell Level by Repeated Ion Accumulation in Ion Trap Mass Spectrometer. Analytical Chemistry, 2017, 89(4): 2275-2281. |
12 | Gong X, Xiong X, Zhao Y, Ye S, Fang X..Boosting the Signal Intensity of Nanoelectrospray Ionization by Using a Polarity-Reversing High-Voltage Strategy. Analytical Chemistry, 2017, 2017, 89 (13), 7009−7016. |
13 | Zhai R, Yuan Y, Jiao F, Hao F, Fang X, Zhang Y, Qian X. Facile synthesis of magnetic metal organic framework for highly efficient proteolytic digestion used in mass spectrometry-based proteomics. Anal Chim Acta, 2017, 994:19-28. |
14 | Chai Y, Xiong X, Yue L, Jiang Y, Pan Y, Fang X. Intramolecular Halogen Transfer via Halonium Ion Intermediates in the Gas Phase. J Am Soc Mass Spectrom. 2016, 27(1):161-7. |
15 | Dang Q, Xu F, Xie X, Xu C, Dai X, Fang X, Ding L, Ding CF..Enhancement of Ion Activation and Collision-Induced Dissociation by Simultaneous Dipolar Excitation of Ions in x-and y-Directions in a Linear Ion Trap. Analytical Chemistry, 2015, 87(11): 5561-5567. |
16 | Gong X, Xiong X, Wang S, Li Y, Zhang S, Fang X, Zhang X. Desalting by Crystallization: Detection of Attomole Biomolecules in Picoliter Buffers by Mass Spectrometry. Analytical Chemistry, 2015, 87 (19), 9745-9751. |
17 | Xiao Y, Ding Z, Xu C, Dai X, Fang X, Ding CF. Novel linear ion trap mass analyzer built with triangular electrodes. Analytical Chemistry, 2014, 86(12): 5733-5739. |
18 | Xiong X, Xu W, Fang X, Deng Y, Ouyang Z. Accelerated Simulation Study of Space Charge Effects in Quadrupole Ion Traps Using GPUTechniques. J Am Soc Mass Spectrom. 2012, 23(10):1799-807. |
19 | 徐福兴,丁力, 戴新华,方向,丁传凡 。数字离子阱质谱仪低质量截止值的改进方法。分析化学, 2014, 6, 918-923。 |
20 | Huang Z, Bai G, JiangY, Zhang X, Xiong X, Fang X. Design and Performance of Gas Chromatograph-Rectlinear Ion Trap Mass Spectrometer. Chinese Journal of Analytical Chemistry, 2008, 36(3), 413-418. |