Pi electron cloud mediated separation of aromatics using supported ionic liquid (SIL) membrane having antibacterial activity
暂无分享,去创建一个
[1] S. Sridhar. Membrane Technology , 2018 .
[2] V. Abetz,et al. Scalable application of thin film coating techniques for supported liquid membranes for gas separation made from ionic liquids , 2016 .
[3] S. Jayabun,et al. Piperidinium based ionic liquid in combination with sulphoxides: Highly efficient solvent systems for the extraction of thorium , 2016 .
[4] V. Kovalishyn,et al. Antibacterial Activity of Imidazolium‐Based Ionic Liquids Investigated by QSAR Modeling and Experimental Studies , 2016, Chemical biology & drug design.
[5] Bin Wang,et al. Structure-Antibacterial Activity Relationships of Imidazolium-Type Ionic Liquid Monomers, Poly(ionic liquids) and Poly(ionic liquid) Membranes: Effect of Alkyl Chain Length and Cations. , 2016, ACS applied materials & interfaces.
[6] Xiangping Zhang,et al. Recent development of ionic liquid membranes , 2016 .
[7] R. Kadam,et al. Selective separation of uranium from nuclear waste solution by bis(2,4,4-trimethylpentyl)phosphinic acid in ionic liquid and molecular diluents: a comparative study , 2016, Journal of Radioanalytical and Nuclear Chemistry.
[8] Hongyan Tang,et al. Effect of surface hydrophilic modification on the wettability, surface charge property and separation performance of PTFE membrane , 2015 .
[9] S. R. Wickramasinghe,et al. Evaluation of fouling mechanisms in asymmetric microfiltration membranes using advanced imaging , 2014 .
[10] S. R. Wickramasinghe,et al. Designing magnetic field responsive nanofiltration membranes , 2013 .
[11] W. Verboom,et al. Highly efficient diglycolamide-based task-specific ionic liquids: synthesis, unusual extraction behaviour, irradiation, and fluorescence studies. , 2013, Chemistry.
[12] W. Verboom,et al. Diglycolamide-functionalized calix[4]arenes showing unusual complexation of actinide ions in room temperature ionic liquids: role of ligand structure, radiolytic stability, emission spectroscopy, and thermodynamic studies. , 2013, Inorganic chemistry.
[13] P. Mohapatra,et al. Role of alkyl substituent in room temperature ionic liquid on the electrochemical behavior of uranium ion and its local environment , 2013, Journal of Radioanalytical and Nuclear Chemistry.
[14] P. Mohapatra,et al. Extraction of radiostrontium from nuclear waste solution using crown ethers in room temperature ionic liquids , 2012 .
[15] Quan‐Fu An,et al. Effect of the surface property of poly(tetrafluoroethylene) support on the mechanism of polyamide active layer formation by interfacial polymerization , 2012 .
[16] W. Verboom,et al. A highly efficient solvent system containing functionalized diglycolamides and an ionic liquid for americium recovery from radioactive wastes. , 2012, Dalton transactions.
[17] Kristina T. Constantopoulos,et al. Surface modification of commercial cellulose acetate membranes using surface-initiated polymerizatio , 2011 .
[18] L. J. Lozano,et al. Recent advances in supported ionic liquid membrane technology , 2011 .
[19] M. Hashim,et al. Ionic liquids in supported liquid membrane technology , 2011 .
[20] Yufeng Zhang,et al. Surface modification of PVDF membrane via AGET ATRP directly from the membrane surface , 2011 .
[21] Shuang Wang,et al. A Novel Application of Supported Liquid Membrane Based on Hydrophobic Ionic Liquids to the Selective Transport of Phenol and p-Nitrophenol , 2011 .
[22] Richard D. Noble,et al. Perspective on ionic liquids and ionic liquid membranes , 2011 .
[23] L. Pérez,et al. Self-aggregation and antimicrobial activity of imidazolium and pyridinium based ionic liquids in aqueous solution. , 2011, Journal of colloid and interface science.
[24] K. Matyjaszewski,et al. ARGET ATRP of Methyl Acrylate with Inexpensive Ligands and ppm Concentrations of Catalyst , 2011 .
[25] S. R. Wickramasinghe,et al. Stimuli-responsive membranes , 2010 .
[26] Nándor Nemestóthy,et al. Gas separation properties of supported liquid membranes prepared with unconventional ionic liquids , 2010 .
[27] Bruno Scrosati,et al. Ionic-liquid materials for the electrochemical challenges of the future. , 2009, Nature materials.
[28] G. Soulas,et al. A fluorescence-based assay for measuring the viable cell concentration of mixed microbial communities in soil. , 2009, Journal of microbiological methods.
[29] Hideto Matsuyama,et al. CO2 separation facilitated by task-specific ionic liquids using a supported liquid membrane , 2008 .
[30] F. Hernández‐Fernández,et al. A SEM-EDX study of highly stable supported liquid membranes based on ionic liquids , 2007 .
[31] David R. Luebke,et al. Experimental investigation of the permeability and selectivity of supported ionic liquid membranes for CO2/He separation at temperatures up to 125 °C , 2007 .
[32] F. Hernández‐Fernández,et al. A novel application of supported liquid membranes based on ionic liquids to the selective simultaneous separation of the substrates and products of a transesterification reaction , 2007 .
[33] Jing-fu Liu,et al. Direct determination of chlorophenols in environmental water samples by hollow fiber supported ionic liquid membrane extraction coupled with high-performance liquid chromatography. , 2007, Journal of chromatography. A.
[34] K. Binnemans. Ionic liquid crystals. , 2005, Chemical reviews.
[35] Charles F. Kulpa,et al. Toxicity and antimicrobial activity of imidazolium and pyridinium ionic liquids , 2005 .
[36] J. Pomposo,et al. Synthesis of Novel Polycations Using the Chemistry of Ionic Liquids , 2005 .
[37] O. Güven,et al. Synthesis and Characterization of Poly(N‐vinylimidazole‐co‐acrylonitrile) and Determination of Monomer Reactivity Ratios , 2004 .
[38] S. Edberg,et al. Heterotrophic plate count bacteria--what is their significance in drinking water? , 2004, International journal of food microbiology.
[39] R. Lynden-Bell,et al. Macroscopic and microscopic properties of solutions of aromatic compounds in an ionic liquid , 2004 .
[40] M. Dietz,et al. Influence of solvent structural variations on the mechanism of facilitated ion transfer into room-temperature ionic liquids , 2003 .
[41] R. Rogers,et al. Selection of ionic liquids for green chemical applications , 2003 .
[42] Jairton Dupont,et al. Room temperature dialkylimidazolium ionic liquid-based fuel cells , 2003 .
[43] Zusing Yang,et al. Room temperature ionic liquid as a novel medium for liquid/liquid extraction of metal ions , 2003 .
[44] R. Lynden-Bell,et al. Why are aromatic compounds more soluble than aliphatic compounds in dimethylimidazolium ionic liquids? A simulation study , 2003 .
[45] R. Rogers,et al. Liquid clathrate formation in ionic liquid-aromatic mixtures. , 2003, Chemical communications.
[46] J. Crespo,et al. Studies on the selective transport of organic compounds by using ionic liquids as novel supported liquid membranes. , 2002, Chemistry.
[47] G J Lye,et al. Room-temperature ionic liquids as replacements for organic solvents in multiphase bioprocess operations. , 2000, Biotechnology and bioengineering.
[48] R. Desjardins,et al. LIVE/DEAD BacLight : application of a new rapid staining method for direct enumeration of viable and total bacteria in drinking water. , 1999, Journal of microbiological methods.
[49] T. Welton. Room-Temperature Ionic Liquids. Solvents for Synthesis and Catalysis. , 1999, Chemical reviews.