Fluorinated covalent-organic polymers as stationary phase for analysis of organic fluorides by open-tubular capillary electrochromatography.
暂无分享,去创建一个
Wei Zhou | Zhentao Li | Zilin Chen | Yikun Liu | Wenqi Sun
[1] H. Wingfors,et al. The potential of thermal desorption‐GC/MS‐based analytical methods for the unambiguous identification and quantification of perfluoroisobutene and carbonyl fluoride in air samples , 2022, Journal of separation science.
[2] N. Ye,et al. Fluorinated covalent organic frameworks as a stationary phase for separation of fluoroquinolones by capillary electrochromatography , 2022, Microchimica Acta.
[3] C. Hawker,et al. Biological Utility of Fluorinated Compounds: from Materials Design to Molecular Imaging, Therapeutics and Environmental Remediation. , 2021, Chemical reviews.
[4] Runhua Lu,et al. Perfluoro octanoic acid-modified magnetic hyperbranched polyamideamine as a sorbent for the extraction of fluorine-containing pesticides from water samples. , 2021, Journal of separation science.
[5] Wei Zhou,et al. In-situ growth of a spherical vinyl-functionalized covalent organic framework as stationary phase for capillary electrochromatography-mass spectrometry analysis. , 2021, Talanta.
[6] Hui-Ling Duan,et al. Preparation of fluorinated covalent organic polymers at room temperature for removal and detection of perfluorinated compounds. , 2021, Journal of hazardous materials.
[7] Jingkun Li,et al. A novel analytical strategy for the determination of perfluoroalkyl acids in various food matrices using a home-made functionalized fluorine interaction SPME in combination with LC-MS/MS. , 2021, Food chemistry.
[8] Heather D. Whitehead,et al. Fluorinated Compounds in North American Cosmetics , 2021, Environmental Science & Technology Letters.
[9] M. Valant,et al. Covalent Organic Polymers and Frameworks for Fluorescence-Based Sensors , 2021, ACS sensors.
[10] Zilin Chen,et al. Analysis of fluorinated compounds by micellar electrokinetic chromatography - mass spectrometry. , 2021, Journal of chromatography. A.
[11] Zhenkun Mao,et al. Fluoro-functionalized stationary phases for electrochromatographic separation of organic fluorides. , 2020, Journal of chromatography. A.
[12] Yaohua Hou,et al. Covalent Organic Frameworks-Based Solid-Phase Microextraction Probe for Rapid and Ultrasensitive Analysis of Trace Per- and Polyfluoroalkyl Substances Using Mass Spectrometry. , 2020, Analytical chemistry.
[13] Kaveh Jorabchi,et al. Elemental fluorine detection by dielectric barrier discharge coupled to nano-ESI mass spectrometry for non-targeted analysis of fluorinated compounds. , 2020, Analytical chemistry.
[14] Y. Shu,et al. Metabolic and Pharmaceutical Aspects of Fluorinated Compounds. , 2020, Journal of medicinal chemistry.
[15] Zhenkun Mao,et al. Ionic liquid-copolymerized monolith based porous layer open tubular column for CEC-MS analysis. , 2020, Talanta.
[16] Zian Lin,et al. In-situ synthesis of fluorinated magnetic covalent organic frameworks for fluorinated magnetic solid-phase extraction of ultratrace perfluorinated compounds from milk. , 2019, Journal of chromatography. A.
[17] J. Choi,et al. Fluorinated Covalent Organic Polymers for High Performance Sulfur Cathodes in Lithium–Sulfur Batteries , 2019, Chemistry of Materials.
[18] Zhenkun Mao,et al. Advances in capillary electro-chromatography , 2019, Journal of pharmaceutical analysis.
[19] J. Feldmann,et al. Novel non-targeted analysis of perfluorinated compounds using fluorine-specific detection regardless of their ionisability (HPLC-ICPMS/MS-ESI-MS). , 2019, Analytica chimica acta.
[20] Zhenkun Mao,et al. In-situ growth of a metal organic framework composed of zinc(II), adeninate and biphenyldicarboxylate as a stationary phase for open-tubular capillary electrochromatography , 2019, Microchimica Acta.
[21] Abhijeet K. Chaudhari,et al. Self-Assembled, Fluorine-Rich Porous Organic Polymers: A Class of Mechanically Stiff and Hydrophobic Materials. , 2018, Chemistry.
[22] E. Moyano,et al. Negative-ion atmospheric pressure ionisation of semi-volatile fluorinated compounds for ultra-high-performance liquid chromatography tandem mass spectrometry analysis , 2018, Analytical and Bioanalytical Chemistry.
[23] N. Meanwell. Fluorine and Fluorinated Motifs in the Design and Application of Bioisosteres for Drug Design. , 2018, Journal of medicinal chemistry.
[24] David M. Lunderberg,et al. Fluorinated Compounds in U.S. Fast Food Packaging. , 2017, Environmental science & technology letters.
[25] H. Zou,et al. A hybrid fluorous monolithic capillary column with integrated nanoelectrospray ionization emitter for determination of perfluoroalkyl acids by nano-liquid chromatography-nanoelectrospray ionization-mass spectrometry/mass spectrometry. , 2016, Journal of chromatography. A.
[26] Xingguo Chen,et al. Separation of small organic molecules using covalent organic frameworks-LZU1 as stationary phase by open-tubular capillary electrochromatography. , 2016, Journal of chromatography. A.
[27] Wenchuan Wang,et al. Systematic Tuning and Multifunctionalization of Covalent Organic Polymers for Enhanced Carbon Capture. , 2015, Journal of the American Chemical Society.
[28] M. D. Hill,et al. Applications of Fluorine in Medicinal Chemistry. , 2015, Journal of medicinal chemistry.
[29] Kiyoshi Yamamoto,et al. Selective separation of fluorinated compounds from complex organic mixtures by pyrolysis-comprehensive two-dimensional gas chromatography coupled to high-resolution time-of-flight mass spectrometry. , 2014, Journal of chromatography. A.
[30] D. O'Hagan,et al. Successful fluorine-containing herbicide agrochemicals , 2014 .
[31] Y. Guillaume,et al. Development and Evaluation of a New Fluorinated Double-Wall Carbon Nanotube HPLC Stationary Phase , 2014, Chromatographia.
[32] Xiu‐Ping Yan,et al. Metal-organic framework polymethyl methacrylate composites for open-tubular capillary electrochromatography. , 2013, Journal of chromatography. A.
[33] A. V. D. Van Der Zee,et al. Multidimensional separation of tryptic peptides from human serum proteins using reversed-phase, strong cation exchange, weak anion exchange, and fused-core fluorinated stationary phases. , 2013, Journal of separation science.
[34] M. Ma,et al. Preparation of a polyhedral oligomeric silsesquioxane-based perfluorinated monolithic column. , 2013, Journal of chromatography. A.
[35] N. Smith,et al. Fluorinated monolithic column for CEC. , 2011, Journal of separation science.
[36] D. Quiñonero,et al. Experimental and theoretical study of uracil derivatives: the crucial role of weak fluorine–fluorine noncovalent interactions , 2010 .
[37] M. Matyska,et al. Synthesis and evaluation of silica hydride-based fluorinated stationary phases. , 2010, Journal of separation science.
[38] M. Trojanowicz,et al. Determination of fluoride as fluorosilane derivative using reversed-phase HPLC with UV detection for determination of total organic fluorine. , 2010, Journal of separation science.
[39] R. Oleschuk,et al. Development of fluorinated, monolithic columns for improved chromatographic separations of fluorous-tagged analytes. , 2009, Journal of chromatography. A.
[40] Seth M. Cohen,et al. Self-assembly of heteroleptic [Cu(dipyrrinato)(hfacac)] complexes directed by fluorine-fluorine interactions. , 2005, Inorganic chemistry.
[41] P. Jeschke. The Unique Role of Fluorine in the Design of Active Ingredients for Modern Crop Protection , 2004, Chembiochem : a European journal of chemical biology.
[42] S. Blanksby,et al. Bond dissociation energies of organic molecules. , 2003, Accounts of chemical research.