Arsenic speciation in tree moss by mass spectrometry based hyphenated techniques.
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M. He | Bin Hu | Beibei Chen | Kai Nan | Yujie Chen
[1] X. Le,et al. Methylated Phenylarsenical Metabolites Discovered in Chicken Liver , 2017, Angewandte Chemie.
[2] Zhaojie Cui,et al. Determination of arsenic species in solid matrices utilizing supercritical fluid extraction coupled with gas chromatography after derivatization with thioglycolic acid n-butyl ester. , 2016, Journal of Separation Science.
[3] J. Feldmann,et al. Investigation of chemical modifiers for the direct determination of arsenic in fish oil using high-resolution continuum source graphite furnace atomic absorption spectrometry. , 2016, Talanta.
[4] Lee L Yu,et al. An approach for identification and determination of arsenic species in the extract of kelp , 2015, Analytical and Bioanalytical Chemistry.
[5] Michelle M. Nearing,et al. Uptake and transformation of arsenic during the vegetative life stage of terrestrial fungi. , 2015, Environmental pollution.
[6] X. Le,et al. Liquid chromatography combined with atomic and molecular mass spectrometry for speciation of arsenic in chicken liver. , 2014, Journal of chromatography. A.
[7] G. Jiang,et al. Efficient interface for online coupling of capillary electrophoresis with inductively coupled plasma-mass spectrometry and its application in simultaneous speciation analysis of arsenic and selenium. , 2014, Analytical chemistry.
[8] M. He,et al. Ionic liquid based carrier mediated hollow fiber liquid liquid liquid microextraction combined with HPLC-ICP-MS for the speciation of phenylarsenic compounds in chicken and feed samples , 2013 .
[9] C. Liers,et al. Oxidoreductases and cellulases in lichens: possible roles in lichen biology and soil organic matter turnover. , 2013, Fungal biology.
[10] D. Petreus,et al. Arsenic and antimony determination in non- and biodegradable materials by hydride generation capacitively coupled plasma microtorch optical emission spectrometry. , 2013, Talanta: The International Journal of Pure and Applied Analytical Chemistry.
[11] M. He,et al. Synthesis of mixed coating with multi-functional groups for in-tube hollow fiber solid phase microextraction-high performance liquid chromatography-inductively coupled plasma mass spectrometry speciation of arsenic in human urine. , 2012, Journal of chromatography. A.
[12] Bin Hu,et al. Sensitive determination of phenylarsenic compounds based on a dual preconcentration method with capillary electrophoresis/UV detection. , 2011, Journal of chromatography. A.
[13] M. He,et al. Titania immobilized polypropylene hollow fiber as a disposable coating for stir bar sorptive extraction-high performance liquid chromatography-inductively coupled plasma mass spectrometry speciation of arsenic in chicken tissues. , 2011, Journal of chromatography. A.
[14] G. Jiang,et al. Rapid analysis of volatile arsenic species released from lake sediment by a packed cotton column coupled with atomic fluorescence spectrometry , 2010 .
[15] D. Upreti,et al. Arsenic accumulation in lichens of Mandav monuments, Dhar district, Madhya Pradesh, India , 2009, Environmental monitoring and assessment.
[16] W. Goessler,et al. Individual variability in the human metabolism of an arsenic-containing carbohydrate, 2',3'-dihydroxypropyl 5-deoxy-5-dimethylarsinoyl-beta-D-riboside, a naturally occurring arsenical in seafood. , 2009, Chemical research in toxicology.
[17] R. Tabacchi,et al. Lichen extracts as raw materials in perfumery. Part 2: treemoss , 2009 .
[18] W. Cullen. Is Arsenic an Aphrodisiac?: The Sociochemistry of an Element , 2008 .
[19] J. Feldmann,et al. Can we trust mass spectrometry for determination of arsenic peptides in plants: comparison of LC–ICP–MS and LC–ES-MS/ICP–MS with XANES/EXAFS in analysis of Thunbergia alata , 2008, Analytical and bioanalytical chemistry.
[20] T. Narukawa,et al. Study on simultaneous speciation of arsenic and antimony by HPLC-ICP-MS. , 2007, Talanta.
[21] J. Edmonds,et al. Dimethyloxarsylethanol from anaerobic decomposition of brown kelp (Ecklonia radiata): A likely precursor of arsenobetaine in marine fauna , 1982, Experientia.
[22] S. Hirano,et al. A new metabolic pathway of arsenite: arsenic–glutathione complexes are substrates for human arsenic methyltransferase Cyt19 , 2005, Archives of Toxicology.
[23] X. Le,et al. Peer Reviewed: Arsenic Speciation , 2004 .
[24] T. Řezanka,et al. Natural occurrence of arseno compounds in plants, lichens, fungi, algal species, and microorganisms , 2003 .
[25] J. Szpunar,et al. The speciation of arsenic in biological tissues and the certification of reference materials for quality control , 2003 .
[26] I. Koch,et al. Arsenic Species in Terrestrial Fungi and Lichens from Yellowknife, NWT, Canada , 2000 .
[27] W. Goessler,et al. Characterization of an algal extract by HPLC-ICP-MS and LC-electrospray MS for use in arsenosugar speciation studies , 2000 .
[28] J. Edmonds,et al. Arsenic and Marine Organisms , 1996 .
[29] J. Edmonds,et al. Arseno-sugars from brown kelp (Ecklonia radiata) as intermediates in cycling of arsenic in a marine ecosystem , 1981, Nature.