Guoqiang Xiang - Publications

Affiliations: 
School of Chemistry and Environment Henan University of Technology 

20 high-probability publications. We are testing a new system for linking publications to authors. You can help! If you notice any inaccuracies, please sign in and mark papers as correct or incorrect matches. If you identify any major omissions or other inaccuracies in the publication list, please let us know.

Year Citation  Score
2020 Ning K, Xiang G, Wang C, Huang F, Liu J, Zhang L, Yan M, Hu B, Lei W. 'Turn-on' fluorescence sensing of hydrogen peroxide in marine food samples using a carbon dots-MnO probe. Luminescence : the Journal of Biological and Chemical Luminescence. PMID 32160380 DOI: 10.1002/Bio.3799  0.304
2019 Zhao W, Zuo H, Guo Y, Liu K, Wang S, He L, Jiang X, Xiang G, Zhang S. Porous covalent triazine-terphenyl polymer as hydrophilic-lipophilic balanced sorbent for solid phase extraction of tetracyclines in animal derived foods. Talanta. 201: 426-432. PMID 31122445 DOI: 10.1016/J.Talanta.2019.04.010  0.401
2018 Xiang G, Wang Y, Zhang H, Fan H, Fan L, He L, Jiang X, Zhao W. Carbon dots based dual-emission silica nanoparticles as ratiometric fluorescent probe for nitrite determination in food samples. Food Chemistry. 260: 13-18. PMID 29699653 DOI: 10.1016/J.Foodchem.2018.03.150  0.361
2018 Xiang G, Ren Y, Zhang H, Fan H, Jiang X, He L, Zhao W. Carbon dots based dual-emission silica nanoparticles as ratiometric fluorescent probe for chromium speciation analysis in water samples Canadian Journal of Chemistry. 96: 72-77. DOI: 10.1139/Cjc-2017-0472  0.361
2018 Xiang G, Fan H, Zhang H, He L, Jiang X, Zhao W. Carbon dot doped silica nanoparticles as fluorescent probe for determination of bromate in drinking water samples Canadian Journal of Chemistry. 96: 24-29. DOI: 10.1139/Cjc-2017-0239  0.371
2018 Zhao W, Liu L, Jia Y, Yuan H, Pan L, He L, Xiang G, Jiang X, Zhang S. Investigation of the retention characteristics of a 26-membered aromatic-aliphatic azamacrocycle bonded silica gel stationary phase for high performance liquid chromatography New Journal of Chemistry. 42: 1682-1689. DOI: 10.1039/C7Nj03648E  0.314
2017 He L, Cui W, Wang Y, Zhao W, Xiang G, Jiang X, Mao P, He J, Zhang S. Polymeric ionic liquid based on magnetic materials fabricated through layer-by-layer assembly as adsorbents for extraction of pesticides. Journal of Chromatography. A. PMID 28965990 DOI: 10.1016/J.Chroma.2017.09.047  0.37
2017 Zhao W, Jiang X, Ni S, Guo Y, He L, Xiang G, Zhang S. Layer-by-layer self-assembly of polyelectrolyte multilayers on silica spheres as reversed-phase/hydrophilic interaction mixed-mode stationary phases for high performance liquid chromatography. Journal of Chromatography. A. PMID 28410801 DOI: 10.1016/J.Chroma.2017.03.083  0.314
2017 Xiang GQ, Ren Y, Xia Y, Mao W, Fan C, Guo SY, Wang PP, Yang DH, He L, Jiang X. Carbon-dot-based dual-emission silica nanoparticles as a ratiometric fluorescent probe for Bisphenol A. Spectrochimica Acta. Part a, Molecular and Biomolecular Spectroscopy. 177: 153-157. PMID 28153813 DOI: 10.1016/J.Saa.2017.01.049  0.341
2016 Jiang Q, Liu Q, Chen Q, Zhao W, Xiang G, He L, Jiang X, Zhang S. Dicationic polymeric ionic-liquid-based magnetic material as an adsorbent for the magnetic solid-phase extraction of organophosphate pesticides and polycyclic aromatic hydrocarbons. Journal of Separation Science. PMID 27357486 DOI: 10.1002/Jssc.201600267  0.416
2014 Li L, Scheckel KG, Zheng L, Liu G, Xing W, Xiang G. Immobilization of lead in soil influenced by soluble phosphate and calcium: lead speciation evidence. Journal of Environmental Quality. 43: 468-74. PMID 25602648 DOI: 10.2134/Jeq2013.07.0272  0.424
2014 Zheng X, He L, Duan Y, Jiang X, Xiang G, Zhao W, Zhang S. Poly(ionic liquid) immobilized magnetic nanoparticles as new adsorbent for extraction and enrichment of organophosphorus pesticides from tea drinks. Journal of Chromatography. A. 1358: 39-45. PMID 25022482 DOI: 10.1016/J.Chroma.2014.06.078  0.412
2014 Liu L, He L, Jiang X, Zhao W, Xiang G, Anderson JL. Macrocyclic polyamine-functionalized silica as a solid-phase extraction material coupled with ionic liquid dispersive liquid-liquid extraction for the enrichment of polycyclic aromatic hydrocarbons. Journal of Separation Science. 37: 1004-11. PMID 24497490 DOI: 10.1002/Jssc.201301062  0.402
2013 Li L, Xing W, Scheckel KG, Xiang G, Ji H, Li H. Lead retention in a calcareous soil influenced by calcium and phosphate amendments. Journal of Hazardous Materials. 262: 250-5. PMID 24036148 DOI: 10.1016/J.Jhazmat.2013.08.058  0.417
2013 XIANG G, LI L, JIANG X, HE L, FAN L. POLYELECTROLYTE MODIFIED SILICA GEL MICRO-COLUMN SOLID PHASE EXTRACTION FOR THE DETERMINATION OF SILVER IN ENVIRONMENTAL WATER SAMPLES BY FLAME ATOMIC ABSORPTION SPECTROMETRY Journal of the Chilean Chemical Society. 58: 2182-2185. DOI: 10.4067/S0717-97072013000400060  0.413
2013 Xiang G, Li L, Jiang X, He L, Fan L. Thiol-Modified Magnetic Silica Sorbent for the Determination of Trace Mercury in Environmental Water Samples Coupled with Cold Vapor Atomic Absorption Spectrometry Analytical Letters. 46: 706-716. DOI: 10.1080/00032719.2012.726679  0.418
2012 Xiang G, Wen S, Wu X, Jiang X, He L, Liu Y. Selective cloud point extraction for the determination of cadmium in food samples by flame atomic absorption spectrometry. Food Chemistry. 132: 532-6. PMID 26434327 DOI: 10.1016/J.Foodchem.2011.10.053  0.381
2010 Xiang G, Zhang Y, Jiang X, He L, Fan L, Zhao W. Determination of trace copper in food samples by flame atomic absorption spectrometry after solid phase extraction on modified soybean hull. Journal of Hazardous Materials. 179: 521-5. PMID 20353882 DOI: 10.1016/J.Jhazmat.2010.03.034  0.376
2010 Jiang X, Wen S, Xiang G. Cloud point extraction combined with electrothermal atomic absorption spectrometry for the speciation of antimony(III) and antimony(V) in food packaging materials Journal of Hazardous Materials. 175: 146-150. PMID 19853991 DOI: 10.1016/J.Jhazmat.2009.09.141  0.372
2009 Xiang G, Huang Y, Luo Y. Solid phase extraction of trace cadmium and lead in food samples using modified peanut shell prior to determination by flame atomic absorption spectrometry Microchimica Acta. 165: 237-242. DOI: 10.1007/s00604-008-0126-y  0.304
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