Activation and stabilization of enzymes in ionic liquids.
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[1] M. N. Gupta,et al. Obtaining higher transesterification rates with subtilisin Carlsberg in nonaqueous media. , 2004, Bioorganic & medicinal chemistry letters.
[2] C. Schmuttenmaer,et al. Effect of Reverse Micelle Size on the Librational Band of Confined Water and Methanol , 2001 .
[3] Katri Lundell,et al. Room Temperature Ionic Liquids in the Kinetic Resolution of Adrenaline‐Type Aminoethanols by Burkholderia cepacia Lipase under Normal and Microwave Conditions , 2005 .
[4] Yangyang Jiang,et al. Magnetic nanoparticles supported ionic liquids for lipase immobilization: Enzyme activity in catalyzing esterification , 2009 .
[5] T. Welton,et al. Characterizing ionic liquids on the basis of multiple solvation interactions. , 2002, Journal of the American Chemical Society.
[6] P. Pinto,et al. Oxidoreductase Behavior in Ionic Liquids: a Review , 2008, Analytical sciences : the international journal of the Japan Society for Analytical Chemistry.
[7] Dan Hancu,et al. Green processing using ionic liquids and CO2 , 1999, Nature.
[8] R. Sheldon,et al. Biocatalytic transformations in ionic liquids. , 2003, Trends in biotechnology.
[9] R. Prasad,et al. Ionic liquids as a reaction medium for lipase-catalyzed methanolysis of sunflower oil , 2007, Biotechnology Letters.
[10] Masahiro Yoshizawa,et al. Room temperature ionic liquids from 20 natural amino acids. , 2005, Journal of the American Chemical Society.
[11] G. Baker,et al. Designing enzyme-compatible ionic liquids that can dissolve carbohydrates , 2008 .
[12] M. Navia,et al. Cross-linked enzyme crystals as robust biocatalysts , 1992 .
[13] Woo-Jin Chang,et al. Enhanced activity and stability of ionic liquid-pretreated lipase , 2007 .
[14] M. Moniruzzaman,et al. Water-in-ionic liquid microemulsions as a new medium for enzymatic reactions , 2008 .
[15] U. Kragl,et al. Enhanced enantioselectivity of lipase from Pseudomonas sp. at high temperatures and fixed water activity in the ionic liquid, 1-butyl-3-methylimidazolium bis[(trifluoromethyl)sulfonyl]amide , 2002, Biotechnology Letters.
[16] R. Kazlauskas,et al. Biocatalysis in ionic liquids - advantages beyond green technology. , 2003, Current opinion in biotechnology.
[17] A. Russell,et al. Enzymatic Catalysis of Formation of Z‐Aspartame in Ionic Liquid − An Alternative to Enzymatic Catalysis in Organic Solvents , 2000, Biotechnology progress.
[18] Zhen Yang,et al. Ionic liquids: Green solvents for nonaqueous biocatalysis , 2005 .
[19] Alan J Russell,et al. Impact of ionic liquid physical properties on lipase activity and stability. , 2003, Journal of the American Chemical Society.
[20] R. Linhardt,et al. ENZYMATIC POLYMERIZATION OF PHENOLS IN ROOM TEMPERATURE IONIC LIQUIDS. , 2009, Journal of molecular catalysis. B, Enzymatic.
[21] M. Goto,et al. Poly(ethylene glycol)-lipase complexes that are highly active and enantioselective in ionic liquids. , 2004, Organic & biomolecular chemistry.
[22] R. A. Sheldon,et al. Cross-linked enzyme aggregates with enhanced activity: application to lipases , 2002, Biotechnology Letters.
[23] R. Linhardt,et al. Enzyme–Carbon Nanotube Conjugates in Room-temperature Ionic Liquids , 2007, Applied biochemistry and biotechnology.
[24] Sang Hyun Lee,et al. Lipase‐catalyzed synthesis of fatty acid sugar ester using extremely supersaturated sugar solution in ionic liquids , 2008, Biotechnology and bioengineering.
[25] P. Gao,et al. Catalytic activities of fungal oxidases in hydrophobic ionic liquid 1-butyl-3-methylimidazolium hexafluorophosphate-based microemulsion. , 2008, Colloids and surfaces. B, Biointerfaces.
[26] Y. Murakami,et al. Poly(ethylene glycol)-α-chymotrypsin complex catalytically active in anhydrous isooctane , 1999 .
[27] Gaoyong Zhang,et al. TX-100/water/1-butyl-3-methylimidazolium hexafluorophosphate microemulsions. , 2005, Langmuir : the ACS journal of surfaces and colloids.
[28] J. Brennecke,et al. Recovery of Organic Products from Ionic Liquids Using Supercritical Carbon Dioxide , 2001 .
[29] J. Dorsey,et al. Micelles in Analytical Chemistry , 1990 .
[30] Satoru Kato,et al. Catalytic activity of α-chymotrypsin in enzymatic peptide synthesis in ionic liquids , 2009 .
[31] Shweta Shah,et al. Obtaining high transesterification activity for subtilisin in ionic liquids. , 2007, Biochimica et biophysica acta.
[32] K. Drauz,et al. Ionic liquids as additives in the pig liver esterase (PLE) catalysed synthesis of chiral disubstituted malonates , 2005 .
[33] U. Bornscheuer,et al. Increased stability of an esterase from Bacillus stearothermophilus in ionic liquids as compared to organic solvents , 2003 .
[34] D. F. Evans,et al. The activity and stability of alkaline phosphatase in solutions of water and the fused salt ethylammonium nitrate , 1984 .
[35] Muhammad Moniruzzaman,et al. Recent advances of enzymatic reactions in ionic liquids , 2010 .
[36] D. Clark,et al. On the Salt-Induced Activation of Lyophilized Enzymes in Organic Solvents: Effect of Salt Kosmotropicity on Enzyme Activity , 2000 .
[37] D. Macfarlane,et al. Protein solubilising and stabilising ionic liquids. , 2005, Chemical communications.
[38] J. Pomposo,et al. Ionic Liquid Immobilized Enzyme for Biocatalytic Synthesis of Conducting Polyaniline , 2006 .
[39] P. James,et al. ChemInform Abstract: Immobilized Baker′s Yeast Reduction of Ketones in an Ionic Liquid, [bmim]PF6 and Water Mix. , 2001 .
[40] Shweta Shah,et al. Enhancement of lipase activity in non-aqueous media upon immobilization on multi-walled carbon nanotubes , 2007, Chemistry Central journal.
[41] M. Goto,et al. Enzymatic in situ saccharification of cellulose in aqueous-ionic liquid media , 2008, Biotechnology Letters.
[42] W. Leitner,et al. Continuous flow enzymatic kinetic resolution and enantiomer separation using ionic liquid/supercritical carbon dioxide media , 2003 .
[43] E. P. Hudson,et al. Biocatalysis in semi-aqueous and nearly anhydrous conditions. , 2005, Current opinion in biotechnology.
[44] N. Iwai,et al. An effective method to use ionic liquids as reaction media for asymmetric reduction by Geotrichum candidum , 2006 .
[45] Uwe T Bornscheuer,et al. Immobilizing enzymes: how to create more suitable biocatalysts. , 2003, Angewandte Chemie.
[46] Jonathan S Dordick,et al. Enzyme activation for organic solvents made easy. , 2008, Trends in biotechnology.
[47] P. Cummings,et al. Self-Assembly of Reverse Micelles in Water/Surfactant/Carbon Dioxide Systems by Molecular Simulation , 1999 .
[48] D. Gournis,et al. Lipases in water-in-ionic liquid microemulsions: Structural and activity studies , 2009 .
[49] J. Iborra,et al. Ionic liquids improve citronellyl ester synthesis catalyzed by immobilized Candida antarctica lipase B in solvent-free media , 2007 .
[50] M. Goto,et al. Homogeneous enzymatic reactions in ionic liquids with poly(ethylene glycol)-modified subtilisin. , 2006, Organic & biomolecular chemistry.
[51] M. Morimoto,et al. Increased enantioselectivity and remarkable acceleration of lipase-catalyzed transesterification by using an imidazolium PEG-alkyl sulfate ionic liquid. , 2006, Chemistry.
[52] Zheng Guo,et al. Lipase-catalyzed glycerolysis of fats and oils in ionic liquids : a further study on the reaction system , 2006 .
[53] Xianfu Lin,et al. Markedly enhancing lipase-catalyzed synthesis of nucleoside drugs' ester by using a mixture system containing organic solvents and ionic liquid. , 2006, Bioorganic & medicinal chemistry letters.
[54] P. Adlercreutz,et al. Factors Governing the Activity of Lyophilised and Immobilised Lipase Preparations in Organic Solvents , 2002, Chembiochem : a European journal of chemical biology.
[55] M. Goto,et al. Extractive solubilization, structural change, and functional conversion of cytochrome c in ionic liquids via crown ether complexation. , 2006, Analytical chemistry.
[56] J. Iborra,et al. Understanding structure-stability relationships of Candida antartica lipase B in ionic liquids. , 2005, Biomacromolecules.
[57] Michiel Janssen,et al. Room-temperature ionic liquids that dissolve carbohydrates in high concentrations , 2005 .
[58] J. Iborra,et al. On the importance of the supporting material for activity of immobilized Candida antarctica lipase B in ionic liquid/hexane and ionic liquid/supercritical carbon dioxide biphasic media , 2007 .
[59] Aaron M. Scurto,et al. Carbon dioxide induced separation of ionic liquids and water. , 2003, Chemical communications.
[60] Hua Zhao,et al. Kinetic Study on the Enzymatic Resolution of Homophenylalanine Ester Using Ionic Liquids , 2003, Biotechnology progress.
[61] J. A. Laszlo,et al. α‐Chymotrypsin catalysis in imidazolium‐based ionic liquids , 2001 .
[62] D. Weuster‐Botz,et al. Water immiscible ionic liquids as solvents for whole cell biocatalysis. , 2006, Journal of biotechnology.
[63] A. Maitra,et al. Solution behaviour of Aerosol OT in non-polar solvents , 1995 .
[64] M. Moniruzzaman,et al. Formation of reverse micelles in a room-temperature ionic liquid. , 2008, Chemphyschem : a European journal of chemical physics and physical chemistry.
[65] U. Bornscheuer,et al. Lipase-catalyzed glucose fatty acid ester synthesis in ionic liquids. , 2005, Organic letters.
[66] U. Kragl,et al. Enzyme catalysis in ionic liquids: lipase catalysed kinetic resolution of 1-phenylethanol with improved enantioselectivity , 2001 .
[67] Neil R Thomas,et al. Biocatalysis in supercritical fluids, in fluorous solvents, and under solvent-free conditions. , 2007, Chemical reviews.
[68] A. Kiener,et al. Industrial biocatalysis today and tomorrow , 2001, Nature.
[69] Zheng Guo,et al. Improving enzymatic production of diglycerides by engineering binary ionic liquid medium system. , 2009, New biotechnology.
[70] U. Bornscheuer,et al. Optimization of lipase-catalyzed glucose fatty acid ester synthesis in a two-phase system containing ionic liquids and t-BuOH , 2005 .
[71] D. Macfarlane,et al. Unexpected improvement in stability and utility of cytochrome c by solution in biocompatible ionic liquids. , 2006, Biotechnology and bioengineering.
[72] K. Okrasa,et al. Ionic liquids as a new reaction medium for oxidase–peroxidase-catalyzed sulfoxidation , 2003 .
[73] N. Nakamura,et al. Biocatalytic oxidation of cellobiose in an hydrated ionic liquid , 2009 .
[74] M. Navia,et al. Protein Crystals as Novel Catalytic Materials. , 2001, Angewandte Chemie.
[75] P. Das,et al. Improved activity of horseradish peroxidase (HRP) in ‘specifically designed’ ionic liquid , 2007 .
[76] Yue-zhong Li,et al. Negative effect of [bmim][PF6] on the catalytic activity of alcohol dehydrogenase: mechanism and prevention , 2008 .
[77] C. Faulds,et al. Feruloyl esterase-catalysed synthesis of glycerol sinapate using ionic liquids mixtures. , 2009, Journal of biotechnology.
[78] M. Freemantle. DESIGNER SOLVENTS : IONIC LIQUIDS MAY BOOST CLEAN TECHNOLOGY DEVELOPMENT , 1998 .
[79] Shaohua Zhang,et al. A cyclic voltammetric technique for the detection of micro-regions of bmimPF6/Tween 20/H2O microemulsions and their performance characterization by UV-Vis spectroscopy , 2006 .
[80] M. Zong,et al. Efficient enantioselective hydrolysis of D,L-phenylglycine methyl ester catalyzed by immobilized Candida antarctica lipase B in ionic liquid containing systems. , 2006, Journal of biotechnology.
[81] D. Clark,et al. Salts dramatically enhance activity of enzymes suspended in organic solvents , 1994 .
[82] M. Goto,et al. Enzyme encapsulation in microparticles composed of polymerized ionic liquids for highly active and reusable biocatalysts. , 2009, Organic & biomolecular chemistry.
[83] J. Iborra,et al. On the nature of ionic liquids and their effects on lipases that catalyze ester synthesis. , 2009, Journal of biotechnology.
[84] W. Leitner,et al. Biocatalysis in ionic liquids: batchwise and continuous flow processes using supercritical carbon dioxide as the mobile phase. , 2002, Chemical communications.
[85] N. Bruce,et al. Cofactor-dependent enzyme catalysis in functionalized ionic solvents. , 2004, Chemical communications.
[86] A. Chadha,et al. The role of different anions in ionic liquids on Pseudomonas cepacia lipase catalyzed transesterification and hydrolysis , 2009 .
[87] P. Suarez,et al. Ionic liquid (molten salt) phase organometallic catalysis. , 2002, Chemical reviews.
[88] S. Ha,et al. Enzyme-catalyzed reactions in ionic liquids , 2006 .
[89] Zheng Guo,et al. Preparation of CLA ascorbyl ester with improved volumetric productivity by an ionic liquid-based reaction system. , 2008, Organic & biomolecular chemistry.
[90] J. Holmes,et al. Water-in-CO2 microemulsions studied by small-angle neutron scattering , 1997 .
[91] M. Moniruzzaman,et al. Biocatalysis in water-in-ionic liquid microemulsions: a case study with horseradish peroxidase. , 2009, Langmuir : the ACS journal of surfaces and colloids.
[92] K. R. Seddon,et al. The distillation and volatility of ionic liquids , 2006, Nature.
[93] S. Bai,et al. pH memory of immobilized lipase for (+/-)-menthol resolution in ionic liquid. , 2008, Journal of agricultural and food chemistry.
[94] T. Itoh,et al. Enhanced enantioselectivity and remarkable acceleration on the lipase-catalyzed transesterification using novel ionic liquids , 2004 .
[95] M. Zong,et al. Novozym 435-catalyzed regioselective benzoylation of 1-β-d-arabinofuranosylcytosine in a co-solvent mixture of C4MIm·PF6 and pyridine , 2007 .
[96] Aaron M. Scurto,et al. CO(2) as a separation switch for ionic liquid/organic mixtures. , 2002, Journal of the American Chemical Society.
[97] D. Weuster‐Botz,et al. Asymmetric whole cell biotransformations in biphasic ionic liquid/water-systems by use of recombinant Escherichia coli with intracellular cofactor regeneration , 2007 .
[98] A. Klibanov,et al. The effect of water on enzyme action in organic media. , 1988, The Journal of biological chemistry.
[99] I. Yoo,et al. Effect of ionic liquid on the kinetics of peroxidase catalysis. , 2007, Journal of microbiology and biotechnology.
[100] V. V. Mozhaev,et al. Oxidative enzymes possess catalytic activity in systems with ionic liquids , 2002, Biotechnology Letters.
[101] R. Marcilla,et al. Enzymatic polyester synthesis in ionic liquids , 2006 .
[102] M. Goto,et al. Spectrophotometric assay for protease activity in ionic liquids using chromogenic substrates. , 2008, Analytical biochemistry.
[103] S. Shirakami,et al. Lipase-Catalyzed Enantioselective Acylation in the Ionic Liquid Solvent System: Reaction of Enzyme Anchored to the Solvent , 2001 .
[104] R. Sheldon,et al. Enzyme aggregation in ionic liquids studied by dynamic light scattering and small angle neutron scattering , 2007 .
[105] R. Atkin,et al. Activity and thermal stability of lysozyme in alkylammonium formate ionic liquids—influence of cation modification , 2009 .
[106] Marek Kosmulski,et al. Thermal stability of low temperature ionic liquids revisited , 2004 .
[107] M. Goto,et al. Crown ether-mediated extraction and functional conversion of cytochrome C in ionic liquids. , 2006, Biomacromolecules.
[108] U. Kragl,et al. At low water activity α-chymotrypsin is more active in an ionic liquid than in non-ionic organic solvents , 2002, Biotechnology Letters.
[109] U. Banerjee,et al. Increased enantioselectivity of lipase in the transesterification of dl-(±)-3-phenyllactic acid in ionic liquids , 2009 .
[110] J. Cabral,et al. A comparative study of biocatalysis in non-conventional solvents: Ionic liquids, supercritical fluids and organic media , 2004 .
[111] S. Barreiros,et al. Lipase catalysed mono and di-acylation of secondary alcohols with succinic anhydride in organic media and ionic liquids , 2008 .
[112] Shweta Shah,et al. Kinetic resolution of (+/-)-1-phenylethanol in [Bmim][PF6] using high activity preparations of lipases. , 2007, Bioorganic & medicinal chemistry letters.
[113] G. Lye,et al. Enzymatic ketone reductions with co-factor recycling: Improved reactions with ionic liquid co-solvents , 2008 .
[114] R. Sheldon,et al. Lipase-catalyzed reactions in ionic liquids. , 2000, Organic letters.
[115] Michel Vaultier,et al. Continuous green biocatalytic processes using ionic liquids and supercritical carbon dioxide. , 2002, Chemical communications.
[116] M. Goto,et al. Comb-shaped poly(ethylene glycol)-modified subtilisin Carlsberg is soluble and highly active in ionic liquids. , 2005, Chemical communications.
[117] Hua Zhao,et al. Using ionic liquid [EMIM][CH3COO] as an enzyme-‘friendly’ co-solvent for resolution of amino acids , 2006 .
[118] N. Nakamura,et al. Stability of Thermophilic Cytochrome P450 Modified with Poly(ethylene oxide) in Ionic Liquid , 2006 .
[119] Roger A. Sheldon,et al. Dissolution of Candida antarctica lipase B in ionic liquids: effects on structure and activity , 2004 .
[120] J. Holmes,et al. Bioconversions in a Water-in-CO2 Microemulsion , 1998 .
[121] Young Eon Kim,et al. Study on immunostimulating activity of macrophage treated with purified polysaccharides from liquid culture and fruiting body of Lentinus edodes. , 2009, Journal of microbiology and biotechnology.
[122] Frank V. Bright,et al. Water-in-Carbon Dioxide Microemulsions: An Environment for Hydrophiles Including Proteins , 1996, Science.
[123] Mahn-Joo Kim,et al. Ionic liquid-coated enzyme for biocatalysis in organic solvent. , 2002, The Journal of organic chemistry.
[124] Chihiro Saito,et al. Lipase‐catalyzed polymerization of L‐lactide in ionic liquids , 2008 .
[125] Vesna Najdanovic-Visak,et al. Distribution ratios of lipase-catalyzed reaction products in ionic liquid supercritical CO2 systems:resolution of 2-octanol enantiomers , 2008 .
[126] A. Klibanov,et al. Dramatic enhancement of enzymatic activity in organic solvents by lyoprotectants , 1993, Biotechnology and bioengineering.
[127] V. B. Morris,et al. Stability and catalytic properties of encapsulated subtilisin in xerogels of alkoxisilanes , 2008 .
[128] E. Macedo,et al. Ionic liquids as alternative co-solvents for laccase: study of enzyme activity and stability. , 2008, Biotechnology and bioengineering.
[129] Yi Yan Yang,et al. Cross-linked enzyme aggregates (CLEAs) with controlled particles: Application to Candida rugosa lipase , 2006 .
[130] Roger A. Sheldon,et al. Biocatalysis in ionic liquids. , 2002, Chemical reviews.
[131] P. Dyson,et al. Rationalisation of solvent effects in the Diels-Alder reaction between cyclopentadiene and methyl acrylate in room temperature ionic liquids , 2005 .
[132] T. Tan,et al. Functional dependency of structures of ionic liquids: do substituents govern the selectivity of enzymatic glycerolysis? , 2006, Organic & biomolecular chemistry.
[133] M. Kane,et al. Performance of Cholesterol Oxidase Sequestered within Reverse Micelles Formed in Supercritical Carbon Dioxide , 2000 .
[134] J. Dupont,et al. Supported Ionic Liquid Enzymatic Catalysis for the Production of Biodiesel , 2008 .
[135] R. Sheldon,et al. Cross-linked enzyme aggregates: a simple and effective method for the immobilization of penicillin acylase. , 2000, Organic letters.
[136] J. Iborra,et al. Lipase Catalysis in Ionic Liquids and Supercritical Carbon Dioxide at 150 °C , 2003 .
[137] U. Hanefeld,et al. Immobilised Burkholderia cepacia lipase in dry organic solvents and ionic liquids: A comparison , 2009 .
[138] J. Iborra,et al. Dynamic structure–function relationships in enzyme stabilization by ionic liquids , 2005 .
[139] M. Zong,et al. Use of ionic liquids to improve whole-cell biocatalytic asymmetric reduction of acetyltrimethylsilane for efficient synthesis of enantiopure (S)-1-trimethylsilylethanol , 2006 .
[140] M. Goto,et al. Poly(ethylene glycol)-lipase complex that is catalytically active for alcoholysis reactions in ionic liquids , 2002, Biotechnology Letters.
[141] H. Ohno,et al. Electron Transfer Process of Poly(ethylene oxide)-Modified Cytochrome c in Imidazolium Type Ionic Liquid , 2003 .
[142] Cheng-Kang Lee,et al. Biocatalytic reactions in hydrophobic ionic liquids , 2009 .
[143] Hua Zhao,et al. Lipase dissolution and stabilization in ether-functionalized ionic liquids , 2009 .
[144] R. Sheldon,et al. Biocatalysis in ionic liquids. , 2007, Chemical reviews.
[145] R. Sheldon,et al. Cross-linked Candida antarctica lipase B is active in denaturing ionic liquids , 2007 .
[146] R. Kazlauskas,et al. Improved preparation and use of room-temperature ionic liquids in lipase-catalyzed enantio- and regioselective acylations. , 2001, The Journal of organic chemistry.
[147] F. Srienc,et al. Enzymatic synthesis of poly(hydroxyalkanoates) in ionic liquids. , 2007, Journal of biotechnology.
[148] J. Iborra,et al. Chemoenzymatic dynamic kinetic resolution of rac-1-phenylethanol in ionic liquids and ionic liquids/supercritical carbon dioxide systems , 2006, Biotechnology Letters.
[149] M. Zong,et al. Use of an ionic liquid to improve asymmetric reduction of 4′-methoxyacetophenone catalyzed by immobilized Rhodotorula sp. AS2.2241 cells , 2009 .
[150] U. Kragl,et al. Enzyme catalysis in ionic liquids. , 2002, Current opinion in biotechnology.
[151] Ipsita Roy,et al. Enzymes in organic media , 2004 .
[152] P. Halling,et al. Practical route to high activity enzyme preparations for synthesis in organic media , 1998 .
[153] R. Sheldon,et al. Structure and activity of Candida antarctica lipase B in ionic liquids , 2006 .
[154] Yuji Saito,et al. Application of polyethylene glycol-modified enzymes in biotechnological processes: organic solvent-soluble enzymes , 1986 .
[155] N. Nakamura,et al. Solubilization of heme proteins in low polar solvents by chemical modification on a protein's surface , 2008 .
[156] C. Ebert,et al. Stability and activity of immobilised penicillin G amidase in ionic liquids at controlled aw , 2005 .
[157] A. Boffi,et al. Horseradish peroxidase in ionic liquids: Reactions with water insoluble phenolic substrates , 2007 .
[158] Sung Ho Ha,et al. Lipase-catalyzed biodiesel production from soybean oil in ionic liquids. , 2007 .
[159] U. Bornscheuer,et al. Improving ascorbyl oleate synthesis catalyzed by Candida antarctica lipase B in ionic liquids and water activity control by salt hydrates , 2009 .
[160] Udo Kragl,et al. Use of an ionic liquid in a two-phase system to improve an alcohol dehydrogenase catalysed reduction. , 2004, Chemical communications.
[161] Shiro Kobayashi,et al. Enzymatic Synthesis of Polyesters in Ionic Liquids , 2002 .
[162] Alexander M. Klibanov,et al. Enzyme-catalyzed processes in organic solvents. , 1985 .
[163] R. P. Swatloski,et al. Efficient, halide free synthesis of new, low cost ionic liquids: 1,3-dialkylimidazolium salts containing methyl- and ethyl-sulfate anions , 2002 .
[164] Dirk Weuster-Botz,et al. Efficient whole-cell biotransformation in a biphasic ionic liquid/water system. , 2004, Angewandte Chemie.
[165] C. Peters,et al. Solubility of carbon dioxide in systems with [bmim][BF4] and some selected organic compounds of interest for the pharmaceutical industry , 2006 .
[166] K. Bélafi-Bakó,et al. Thermal stability enhancement of Candida rugosa lipase using ionic liquids , 2005 .
[167] B. Bhanage,et al. Candida antarctica lipase B-catalyzed synthesis of acetamides using [BMIm(PF6)] as a reaction medium , 2009 .
[168] M. Pileni,et al. Structure and reactivity in reverse micelles , 1989 .
[169] Zaijun Li,et al. Improved activity and stability of pseudomonas capaci lipase in a novel biocompatible ionic liquid, 1‐isobutyl‐3‐methylimidazolium hexafluorophosphate , 2008 .
[170] Manpreet Singh,et al. Stereoselective synthesis of (R)-1-chloro-3(3,4-difluorophenoxy)-2-propanol using lipases from Pseudomonas aeruginosa in ionic liquid-containing system , 2009 .
[171] G J Lye,et al. Room-temperature ionic liquids as replacements for organic solvents in multiphase bioprocess operations. , 2000, Biotechnology and bioengineering.
[172] Luisi Pl,et al. Solubilization of enzymes and nucleic acids in hydrocarbon micellar solutions. , 1986 .
[173] C. Vieille,et al. Activity and selectivity of W110A secondary alcohol dehydrogenase from Thermoanaerobacter ethanolicus in organic solvents and ionic liquids: mono- and biphasic media. , 2008, Organic & biomolecular chemistry.
[174] James H. Davis. Task-Specific Ionic Liquids , 2004 .
[175] R. Bogel-Łukasik. Sustainable Processes Employing Ionic Liquids for Secondary Alcohols Separation , 2007 .
[176] Daeho Kim,et al. Dynamic kinetic resolution of secondary alcohols by enzyme–metal combinations in ionic liquid , 2004 .
[177] T. Itoh,et al. Efficient Lipase-Catalyzed Enantioselective Acylation in an Ionic Liquid Solvent System , 2003 .
[178] L. Mei,et al. Lyophilization of lipase with cyclodextrins for efficient catalysis in ionic liquids. , 2007, Journal of bioscience and bioengineering.
[179] N. Gathergood,et al. Biodegradable, non-bactericidal oxygen-functionalised imidazolium esters: A step towards ‘greener’ ionic liquids , 2009 .
[180] Tom Welton,et al. Room-temperature ionic liquids: solvents for synthesis and catalysis. 2. , 1999, Chemical reviews.
[181] K. Hult,et al. Vacuum-driven lipase-catalysed direct condensation of L-ascorbic acid and fatty acids in ionic liquids: synthesis of a natural surface active antioxidant , 2003 .
[182] P. Carvalho,et al. Esterification of (RS)-Ibuprofen by native and commercial lipases in a two-phase system containing ionic liquids , 2006 .
[183] A. Daugulis,et al. Phosphonium ionic liquids for degradation of phenol in a two-phase partitioning bioreactor , 2005, Applied Microbiology and Biotechnology.
[184] J. Iborra,et al. Criteria to Design Green Enzymatic Processes in Ionic Liquid/Supercritical Carbon Dioxide Systems , 2004, Biotechnology progress.
[185] J. Dordick,et al. Enzyme activation for nonaqueous media. , 2002, Current opinion in biotechnology.
[186] R. Rogers,et al. Ionic liquid salt-induced inactivation and unfolding of cellulase from Trichoderma reesei , 2003 .
[187] Zheng Guo,et al. New opportunity for enzymatic modification of fats and oils with industrial potentials. , 2005, Organic & biomolecular chemistry.
[188] T. Itoh,et al. Novel supporting materials of lipase PS suitable for use in an ionic liquid solvent system , 2003 .
[189] M. Goto,et al. Activation of lipase in ionic liquids by modification with comb-shaped poly(ethylene glycol) , 2006 .
[190] Ewa Bogel-Łukasik,et al. Conductivity of 1-Butyl-3-methyl-imidazolium Chloride Solutions in Alcohols , 2006 .
[191] P. Luisi,et al. Micellar solubilization of biopolymers in organic solvents. 5. Activity and conformation of .alpha.-chymotrypsin in isooctane-AOT reverse micelles , 1981 .
[192] A. Ghanem. The utility of cyclodextrins in lipase-catalyzed transesterification in organic solvents: enhanced reaction rate and enantioselectivity. , 2003, Organic & biomolecular chemistry.
[193] S. S. Mohile,et al. Influence of ionic liquids on the rates and regioselectivity of lipase-mediated biotransformations on 3,4,6-tri-O-acetyl-d-glucal , 2004 .