Rapid detection of HSO4- in water: Novel immobilized azo-azomethine colorimetric anion receptors on solid supports.
暂无分享,去创建一个
[1] T. Gunnlaugsson,et al. Luminescent/colorimetric probes and (chemo-) sensors for detecting anions based on transition and lanthanide ion receptor/binding complexes , 2018 .
[2] A. Dutta,et al. Heterogenized hybrid catalyst of 1-sulfonic acid-3-methyl imidazolium ferric chloride over NaY zeolite for one-pot synthesis of 2-amino-4-arylpyrimidine derivatives: A viable approach , 2016 .
[3] Serkan Erdemir,et al. A highly selective fluorescent sensor based on calix[4]arene appended benzothiazole units for Cu2+, S2− and HSO4− ions in aqueous solution , 2016 .
[4] M. Zendehdel,et al. Immobilized 4-methyl-2,6-diformyl phenol complexes on a zeolite: Characterization and catalytic applications in esterification, Diels–Alder and aldol condensation , 2016 .
[5] Jiajie Ou,et al. A fluorescent turn-on probe for detection of HSO4− ion based on hydrolysis of BODIPY-derived Schiff base with chromogenic and fluorogenic dual signals , 2016 .
[6] N. Guchhait,et al. Amido-Schiff base derivatives as colorimetric fluoride sensor: Effect of nitro substitution on the sensitivity and color change. , 2015, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[7] Philip A. Gale,et al. Anion sensing by small molecules and molecular ensembles. , 2015, Chemical Society reviews.
[8] Hong-Seok Kim,et al. A fluorescent chemosensor for sequential recognition of gallium and hydrogen sulfate ions based on a new phenylthiazole derivative , 2015 .
[9] N. Basarić,et al. HSO4− sensing based on proton transfer in H-bonding complexes , 2014 .
[10] P. Zucca,et al. Inorganic Materials as Supports for Covalent Enzyme Immobilization: Methods and Mechanisms , 2014, Molecules.
[11] Hamid Khanmohammadi,et al. Naked-eye detection of inorganic fluoride in aqueous media using a new azo-azomethine colorimetric receptor enhanced by electron withdrawing groups , 2014 .
[12] Liming Jiang,et al. A polymeric film probe with a turn-on fluorescence response to hydrogen sulfate ions in aqueous media. , 2013, Journal of materials chemistry. B.
[13] Yi Pan,et al. Novel calix[4]arene-based receptors with bis-squaramide moieties for colorimetric sensing of anions via two different interaction modes , 2013 .
[14] Virendra Kumar,et al. Uncovering the true mechanism of optical detection of HSO4- in water by Schiff-base receptors--hydrolysis vs. hydrogen bonding. , 2012, Chemical communications.
[15] You‐Ming Zhang,et al. A novel colorimetric HSO4(-) sensor in aqueous media. , 2012, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[16] N. Kaur,et al. Imine linked fluorescent chemosensor for Al3+ and resultant complex as a chemosensor for HSO4− anion , 2012 .
[17] H. Khanmohammadi,et al. New 1,2,4-triazole-based azo-azomethine dyes. Part I: synthesis, characterization and spectroscopic studies. , 2012, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[18] Chaoliang Tan,et al. Fluorescent‐based Solid Sensor for HSO4− in Water , 2010, Photochemistry and photobiology.
[19] Jin Yong Lee,et al. Fluorescence turn-on sensors for HSO4-. , 2009, Chemical communications.
[20] X. Shang. The anion recognition properties of Schiff base or its reductive system based on 2,2'-bipyridine derivatives. , 2009, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[21] Ayman H. Ahmed,et al. Synthesis and identification of zeolite-encapsulated iron (II), iron (III)-hydrazone complexes , 2009 .
[22] R. Hillamo,et al. Effects of solubility of urban air fine and coarse particles on cytotoxic and inflammatory responses in RAW 264.7 macrophage cell line. , 2008, Toxicology and applied pharmacology.
[23] Narinder Singh,et al. Benzimidazole-based ratiometric fluorescent receptor for selective recognition of acetate , 2007 .
[24] A. Bhaumik,et al. Highly luminescent organic : Inorganic hybrid mesoporous silicas containing tunable chemosensor inside the pore wall , 2007 .
[25] B. Moyer,et al. Sulfate separation by selective crystallization of a urea-functionalized metal-organic framework. , 2007, Chemical communications.
[26] Arte M. Newman. Focus on solid state chemistry , 2007 .
[27] J. Sessler,et al. Receptors for tetrahedral oxyanions , 2006 .
[28] A. M. Khedr,et al. Synthesis and spectral studies of 5-[3-(1,2,4-triazolyl-azo]-2,4-dihydroxybenzaldehyde (TA) and its Schiff bases with 1,3-diaminopropane (TAAP) and 1,6-diaminohexane (TAAH). Their analytical application for spectrophotometric microdetermination of cobalt(II). Application in some radiochemical studie , 2005 .
[29] E. Monzani,et al. Nature of urea-fluoride interaction: incipient and definitive proton transfer. , 2004, Journal of the American Chemical Society.
[30] M. Sastry,et al. Pt and Pd Nanoparticles Immobilized on Amine-Functionalized Zeolite: Excellent Catalysts for Hydrogenation and Heck Reactions , 2004 .
[31] J. Sessler,et al. Synthesis and study of a new diamidodipyrromethane macrocycle. An anion receptor with a high sulfate-to-nitrate binding selectivity. , 2004, Chemical communications.
[32] G. Socrates,et al. Infrared and Raman characteristic group frequencies : tables and charts , 2001 .
[33] L. T. Zhuravlev. The surface chemistry of amorphous silica. Zhuravlev model , 2000 .
[34] W. Stöber,et al. Controlled growth of monodisperse silica spheres in the micron size range , 1968 .
[35] Joel H. Hildebrand,et al. A Spectrophotometric Investigation of the Interaction of Iodine with Aromatic Hydrocarbons , 1949 .