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Green Solvent: Green Shadow on Chemical Synthesis

Current organic synthesis, v.17 no.6, 2020년, pp.426 - 439  

Sahoo, Tejaswini (School of Applied Sciences, Kalinga Institute of Industrial Technology (KIIT), Deemed to be University, Bhubaneswar-751024, India) ,  Panda, Jagannath (School of Applied Sciences, Kalinga Institute of Industrial Technology (KIIT), Deemed to be University, Bhubaneswar-751024, India) ,  Sahu, Jnanaranjan (School of Applied Sciences, Kalinga Institute of Industrial Technology (KIIT), Deemed to be University, Bhubaneswar-751024, India) ,  Sarangi, Dayananda (School of Applied Sciences, Kalinga Institute of Industrial Technology (KIIT), Deemed to be University, Bhubaneswar-751024, India) ,  Sahoo, Sunil K. (Health Physics Division, BARC, Mumbai, India) ,  Nanda, Braja. B. (P.G. Department of Chemistry, Vikram Deb Autonomous College, Jeypore- 764001, Odisha, India) ,  Sahu, Rojalin (School of Applied Sciences, Kalinga Institute of Industrial Technology (KIIT), Deemed to be University, Bhubaneswar-751024, India)

Abstract AI-Helper 아이콘AI-Helper

The natural beauty and purity of our planet has been contaminated deeply due to human selfish activities such as pollution, improper waste management, and various industrial and commercial discharges of untreated toxic by-products into the lap of nature. The collective impact of these hazardous susp...

참고문헌 (125)

  1. Green Chem Capello C. 9 927 2007 10.1039/b617536h Capello C.; Fischer U.; Hungerbuhler K.; What is a green solvent? A comprehensive framework for the environmental assessment of solvents. Green Chem 2007,9(9),927-934 

  2. Green Chem Curzons A.D. 3 1 2001 10.1039/b007871i Curzons A.D.; David J.C.; Constable, David N. Mortimer, and Virginia L. Cunningham. So you think your process is green, how do you know?-Using principles of sustainability to determine what is green-A corporate perspective. Green Chem 2001,3(1),1-6 

  3. Green Chem Jessop P.G. 13 1391 2011 10.1039/c0gc00797h Jessop P.G.; Searching for green solvents. Green Chem 2011,13(6),1391-1398 

  4. Green Chem Sheldon R.A. 7 267 2005 10.1039/b418069k Sheldon R.A.; Green solvents for sustainable organic synthesis: State of the art. Green Chem 2005,7(5),267-278 

  5. Acc Chem Res Anastas P.T. 35 686 2002 10.1021/ar010065m Anastas P.T.; Kirchhoff M.M.; Origins, current status, and future challenges of green chemistry. Acc Chem Res 2002,35(9),686-694 

  6. J Chem Technol Biotechnol Bubalo C. 90 1631 2015 10.1002/jctb.4668 Bubalo C.; Marina S.V.; Redovnikovi I.R.; Joki S.; Green solvents for green technologies. J Chem Technol Biotechnol 2015,90(9),1631-1639 

  7. Annu Rev Pharmacol Toxicol Kalf G.F. 27 399 1987 10.1146/annurev.pa.27.040187.002151 Kalf G.F.; Post G.B.; Snyder R.; Solvent toxicology: Recent advances in the toxicology of benzene, the glycol ethers, and carbon tetrachloride. Annu Rev Pharmacol Toxicol 1987,27(1),399-427 

  8. J Supercrit Fluids Beckman E.J. 28 121 2004 10.1016/S0896-8446(03)00029-9 Beckman E.J.; Supercritical and near-critical CO2 in green chemical synthesis and processing. J Supercrit Fluids 2004,28(2-3),121-191 

  9. Nucl Eng Technol Ahn Y. 47 647 2015 10.1016/j.net.2015.06.009 Ahn Y.; Bae S.J.; Kim M.; Cho S.K.; Baik S.; Lee J.I.; Cha J.E.; Review of supercritical CO2 power cycle technology and current status of research and development. Nucl Eng Technol 2015,47(6),647-661 

  10. Adv Mater Cooper A.I. 13 1111 2001 10.1002/1521-4095(200107)13:14<1111:aid-adma1111>3.0.co;2-l Cooper A.I.; Recent developments in materials synthesis and processing using supercritical CO2. Adv Mater 2001,13(14),1111-1114 

  11. Environ Sci Technol Beckman E.J. 37 5289 2003 10.1021/es034540i Beckman E.J.; Oxidation reactions in CO2: Academic exercise or future green processes? Environ Sci Technol 2003,37(23),5289-5296 

  12. Ind Eng Chem Res Srinivas P. 33 3118 1994 10.1021/ie00036a029 Srinivas P.; Mukhopadhyay M.; Oxidation of cyclohexane in supercritical carbon dioxide medium. Ind Eng Chem Res 1994,33(12),3118-3124 

  13. Green Chem Duan Z-Q. 14 1581 2012 10.1039/c2gc35092k Duan Z-Q.; Hu F.; Highly efficient synthesis of phosphatidylserine in the eco-friendly solvent γ-valerolactone. Green Chem 2012,14(6),1581-1583 

  14. Bioresour Technol Zhang T. 209 108 2016 10.1016/j.biortech.2016.02.108 Zhang T.; Li W.; Xu Z.; Liu Q.; Ma Q.; Jameel H.; Chang H.M.; Ma L.; Catalytic conversion of xylose and corn stalk into furfural over carbon solid acid catalyst in γ-valerolactone. Bioresour Technol 2016,209,108-114 

  15. Molecules Kumar A. 24 4004 2019 10.3390/molecules24214004 Kumar A.; Sharma A.; de la Torre B.G.; Albericio F.; scope and limitations of γ-valerolactone (gvl) as a green solvent to be used with base for fmoc removal in solid phase peptide synthesis. Molecules 2019,24(21),4004 

  16. Green Chem Gu Y. 12 1127 2010 10.1039/c001628d Gu Y.; Jerome F.; Glycerol as a sustainable solvent for green chemistry. Green Chem 2010,12(7),1127-1138 

  17. Green Chem Abbott A.P. 13 82 2011 10.1039/C0GC00395F Abbott A.P.; Harris R.C.; Ryder K.S.; D’Agostino C.; Gladden L.F.; Mantle M.D.; Glycerol eutectics as sustainable solvent systems. Green Chem 2011,13(1),82-90 

  18. Chem Commun (Camb) Diaz-Alvarez A.E. 47 6208 2011 10.1039/c1cc10620a Diaz-Alvarez A.E.; Francos J.; Lastra-Barreira B.; Crochet P.; Cadierno V.; Glycerol and derived solvents: New sustainable reaction media for organic synthesis. Chem Commun (Camb) 2011,47(22),6208-6227 

  19. Green Chem Delample M. 12 804 2010 10.1039/b925021b Delample M.; Villandier N.; Douliez J-P.; Camy S.; Condoret J-S.; Pouilloux Y.; Barrault J.; Jerome F.; Glycerol as a cheap, safe and sustainable solvent for the catalytic and regioselective β, β-diarylation of acrylates over palladium nanoparticles. Green Chem 2010,12(5),804-808 

  20. Renew Energy Leoneti A.B. 45 138 2012 10.1016/j.renene.2012.02.032 Leoneti A.B.; Aragao-Leoneti V.; De Oliveira S.V.W.B.; Glycerol as a by-product of biodiesel production in Brazil: Alternatives for the use of unrefined glycerol. Renew Energy 2012,45,138-145 

  21. Tetrahedron Lett Bakhrou N. 51 3935 2010 10.1016/j.tetlet.2010.05.101 Bakhrou N.; Lamaty F.; Martinez J.; Colacino E.; Ring-closing metathesis in glycerol under microwave activation. Tetrahedron Lett 2010,51(30),3935-3937 

  22. Monatshefte fur Chemie-Chemical Monthly Bahrani A. 150 303 2019 10.1007/s00706-018-2313-9 Bahrani A.; Karimi-Jaberi Z.; A green one-pot synthesis of α-amino nitrile derivatives via Strecker reaction in deep eutectic solvents. Monatshefte fur Chemie-Chemical Monthly 2019,150(2),303-307 

  23. Eur J Org Chem He H-X. 2014 6190 2014 10.1002/ejoc.201402764 He H-X.; Du D-M.; Organocatalytic enantioselective strecker reaction of imines containing a thiazole moiety by using a cinchona­based squaramide catalyst. Eur J Org Chem 2014,2014(28),6190-6199 

  24. Eutectic Solvents ChemSusChem Florindo C. 12 1549 2019 10.1002/cssc.201900147 Florindo C.; Branco L.C.; Marrucho I.M.; Quest for Green-Solvent Design: From Hydrophilic to Hydrophobic (Deep). Eutectic Solvents ChemSusChem 2019,12(8),1549-1559 

  25. Chem Commun (Camb) Abbott A.P. 1 70 2003 10.1039/b210714g Abbott A.P.; Capper G.; Davies D.L.; Rasheed R.K.; Tambyrajah V.; Novel solvent properties of choline chloride/urea mixtures. Chem Commun (Camb) 2003,1(1),70-71 

  26. J Am Chem Soc Abbott A.P. 126 9142 2004 10.1021/ja048266j Abbott A.P.; Boothby D.; Capper G.; Davies D.L.; Rasheed R.K.; Deep eutectic solvents formed between choline chloride and carboxylic acids: Versatile alternatives to ionic liquids. J Am Chem Soc 2004,126(29),9142-9147 

  27. Chem Rev Smith E.L. 114 11060 2014 10.1021/cr300162p Smith E.L.; Abbott A.P.; Ryder K.S.; Deep eutectic solvents (DESs) and their applications. Chem Rev 2014,114(21),11060-11082 

  28. Chem Soc Rev Zhang Q. 41 7108 2012 10.1039/c2cs35178a Zhang Q.; De Oliveira Vigier K.; Royer S.; Jerome F.; Deep eutectic solvents: syntheses, properties and applications. Chem Soc Rev 2012,41(21),7108-7146 

  29. Monatshefte fur Chemie-Chemical Monthly Tang B. 144 1427 2013 10.1007/s00706-013-1050-3 Tang B.; Row K.H.; Recent developments in deep eutectic solvents in chemical sciences. Monatshefte fur Chemie-Chemical Monthly 2013,144(10),1427-1454 

  30. Angew Chem Int Ed Engl Mamajanov I. 49 6310 2010 10.1002/anie.201001561 Mamajanov I.; Engelhart A.E.; Bean H.D.; Hud N.V.; DNA and RNA in anhydrous media: duplex, triplex, and G-quadruplex secondary structures in a deep eutectic solvent. Angew Chem Int Ed Engl 2010,49(36),6310-6314 

  31. RSC Advances Maugeri Z. 2 421 2012 10.1039/C1RA00630D Maugeri Z.; Dominguez de Maria P.; Novel choline-chloride-based deep-eutectic-solvents with renewable hydrogen bond donors: Levulinic acid and sugar-based polyols. RSC Advances 2012,2(2),421-425 

  32. Anal Chim Acta Dai Y. 766 61 2013 10.1016/j.aca.2012.12.019 Dai Y.; van Spronsen J.; Witkamp G-J.; Verpoorte R.; Choi Y.H.; Natural deep eutectic solvents as new potential media for green technology. Anal Chim Acta 2013,766,61-68 

  33. Energy Fuels Garcia G. 29 2616 2015 10.1021/ef5028873 Garcia G.; Aparicio S.; Ullah R.; Atilhan M.; Deep eutectic solvents: Physicochemical properties and gas separation applications. Energy Fuels 2015,29,2616-2644 

  34. ACS Sustain Chem Paiva A. 2 1063 2014 10.1021/sc500096j Paiva A.; Craveiro R.; Aroso I.; Martins M.; Reis R.L.; Ana Rita C.D.; Natural deep eutectic solvents-solvents for the 21st century. ACS Sustain Chem 2014,2(5),1063-1071 

  35. J Chem Eng Data Abbott A.P. 51 1280 2006 10.1021/je060038c Abbott A.P.; Capper G.; Davies D.L.; McKenzie K.J.; Obi S.U.; Solubility of metal oxides in deep eutectic solvents based on choline chloride. J Chem Eng Data 2006,51(4),1280-1282 

  36. Green Chem Zhang Z-H. 14 1502 2012 10.1039/c2gc35258c Zhang Z-H.; Zhang X-N.; Mo L-P.; Li Y-X.; Ma F-P.; Catalyst-free synthesis of quinazoline derivatives using low melting sugar-urea-salt mixture as a solvent. Green Chem 2012,14(5),1502-1506 

  37. Green Chem Francisco M. 14 2153 2012 10.1039/c2gc35660k Francisco M.; van den Bruinhorst A.; Kroon M.C.; New natural and renewable low transition temperature mixtures (LTTMs): Screening as solvents for lignocellulosic biomass processing. Green Chem 2012,14(8),2153-2157 

  38. ChemSusChem del Monte F. 7 999 2014 10.1002/cssc.201300864 del Monte F.; Carriazo D.; Serrano M.C.; Gutierrez M.C.; Ferrer M.L.; Deep eutectic solvents in polymerizations: A greener alternative to conventional syntheses. ChemSusChem 2014,7(4),999-1009 

  39. Acc Chem Res Wagle D.V. 47 2299 2014 10.1021/ar5000488 Wagle D.V.; Zhao H.; Baker G.A.; Deep eutectic solvents: Sustainable media for nanoscale and functional materials. Acc Chem Res 2014,47(8),2299-2308 

  40. Synthesis Kalinski C. 2008 4007 2008 10.1055/s-0028-1083239 Kalinski C.; Lemoine H.; Schmidt J.; Burdack C.; Kolb J.; Umkehrer M.; Ross G.; Multicomponent reactions as a powerful tool for generic drug synthesis. Synthesis 2008,2008(24),4007-4011 

  41. Chem Rev Toure B.B. 109 4439 2009 10.1021/cr800296p Toure B.B.; Hall D.G.; Natural product synthesis using multicomponent reaction strategies. Chem Rev 2009,109(9),4439-4486 

  42. Monatshefte fur Chemie-Chemical Monthly Ramezanpour S. 149 625 2018 10.1007/s00706-017-2086-6 Ramezanpour S.; Panahi A.; Rominger F.; Diastereoselective synthesis of peptidomimetics in one-pot Ugi reaction using trans-4-isopropylcyclohexanecarboxylic acid. Monatshefte fur Chemie-Chemical Monthly 2018,149(3),625-633 

  43. Curr Med Chem Weber L. 9 2085 2002 10.2174/0929867023368719 Weber L.; The application of multi-component reactions in drug discovery. Curr Med Chem 2002,9(23),2085-2093 

  44. Chem Rev Domling A. 112 3083 2012 10.1021/cr100233r Domling A.; Wang W.; Wang K.; Chemistry and biology of multicomponent reactions. Chem Rev 2012,112(6),3083-3135 

  45. Liebigs Ann Chem Strecker A. 75 27 1850 10.1002/jlac.18500750103 Strecker A.; The artificial synthesis of lactic acid and a new homologue of glycine. Liebigs Ann Chem 1850,75,27-45 

  46. Monatshefte fur Chemie/Chemical Monthly Eberhard R. 135 1289 2004 /10.1007/s00706-004-0204-8 Eberhard R.; Christian E.; A convenient synthesis of 1-benzyl-1, 2, 3, 4-tetrahydroisoquinolines by combined Strecker/Bruylants reaction. Monatshefte fur Chemie/Chemical Monthly 2004,135(10),1289-1295 

  47. Acc Chem Res Ganem B. 42 463 2009 10.1021/ar800214s Ganem B.; Strategies for innovation in multicomponent reaction design. Acc Chem Res 2009,42(3),463-472 

  48. J Am Chem Soc Corey E.J. 118 9202 1996 10.1021/ja962480t Corey E.J.; Gin D.Y.; Kania R.S.; Enantioselective total synthesis of ecteinascidin 743. J Am Chem Soc 1996,118(38),9202-9203 

  49. Cold Spring Harb Perspect Biol Benner S.A. 2 2010 10.1101/cshperspect.a003467 Benner S.A.; Kim H-J.; Kim M-J.; Ricardo A.; Planetary organic chemistry and the origins of biomolecules. Cold Spring Harb Perspect Biol 2010,2(7) 

  50. Expert Opin Pharmacother Aoki K. 16 1749 2015 10.1517/14656566.2015.1057120 Aoki K.; Ijima T.; Kamiyama H.; Kamiko K.; Terauchi Y.; Anagliptin decreases serum lathosterol level in patients with type 2 diabetes: A pilot study. Expert Opin Pharmacother 2015,16(12),1749-1754 

  51. J Med Chem Paget C.J. 12 1010 1969 10.1021/jm00306a010 Paget C.J.; Kisner K.; Stone R.L.; DeLong D.C.; Heterocyclic substituted ureas. I. Immunosuppression and virus inhibition by benzimidazoleureas. J Med Chem 1969,12(6),1010-1015 

  52. ACS Sustain Chem Patil J. 6 10578 2018 10.1021/acssuschemeng.8b01915 Patil J.; Ghodke S.; Jain R.; Dandekar P.; Extraction of Vitamin D from button mushroom (agaricus bisporus) using deep eutectic solvent and ultrasonication. ACS Sustain Chem 2018,6(8),10578-10586 

  53. Bioorg Med Chem Lett Yang W-Y. 25 1394 2015 10.1016/j.bmcl.2015.02.051 Yang W-Y.; Won T.H.; Ahn C-H.; Lee S-H.; Yang H-C.; Shin J.; Oh K-B.; Streptococcus mutans sortase A inhibitory metabolites from the flowers of Sophora japonica. Bioorg Med Chem Lett 2015,25(7),1394-1397 

  54. Chem Biol Interact Lopez-Revuelta A. 161 79 2006 10.1016/j.cbi.2006.03.004 Lopez-Revuelta A.; Sanchez-Gallego J.I.; Hernandez-Hernandez A.; Sanchez-Yague J.; Llanillo M.; Membrane cholesterol contents influence the protective effects of quercetin and rutin in erythrocytes damaged by oxidative stress. Chem Biol Interact 2006,161(1),79-91 

  55. Arch Pharm Res Kim J.M. 31 886 2008 10.1007/s12272-001-1242-1 Kim J.M.; Yun-Choi H.S.; Anti-platelet effects of flavonoids and flavonoid-glycosides from Sophora japonica. Arch Pharm Res 2008,31(7),886-890 

  56. Korean J Pharmacogn Lee D-S. 43 39 2012 Lee D-S.; Kim K-S.; Li B.; Choi H-G.; Keo S.; Jun K-Y.; Park J-H.; Kim Y-C.; Anti-inflammatory effect of the Cirsium japonicum var. ussuriense 70% ethanolic extract in RAW264. 7 cells by heme oxygenase-1 expression. Korean J Pharmacogn 2012,43(1),39-45 

  57. Pharmacol Ther Birt D.F. 90 157 2001 10.1016/S0163-7258(01)00137-1 Birt D.F.; Hendrich S.; Wang W.; Dietary agents in cancer prevention: Flavonoids and isoflavonoids. Pharmacol Ther 2001,90(2-3),157-177 

  58. Bioorg Med Chem Mastuda H. 10 3123 2002 10.1016/S0968-0896(02)00227-4 Mastuda H.; Morikawa T.; Ueda K.; Managi H.; Yoshikawa M.; Structural requirements of flavonoids for inhibition of antigen-Induced degranulation, TNF-α and IL-4 production from RBL-2H3 cells. Bioorg Med Chem 2002,10(10),3123-3128 

  59. J Mol Liq Khandelwal S. 215 345 2016 10.1016/j.molliq.2015.12.015 Khandelwal S.; Tailor Y.K.; Kumar M.; Deep eutectic solvents (DESs) as eco-friendly and sustainable solvent/catalyst systems in organic transformations. J Mol Liq 2016,215,345-386 

  60. Ecotoxicol Environ Saf Rado?evi K. 112 46 2015 10.1016/j.ecoenv.2014.09.034 Rado?evi K.; Bubalo M.C.; Srek V.G.; Grgas D.; Dragievi T.L.; Redovnikovi I.R.; Evaluation of toxicity and biodegradability of choline chloride based deep eutectic solvents. Ecotoxicol Environ Saf 2015,112,46-53 

  61. Bioresour Technol Zhang C-W. 219 1 2016 10.1016/j.biortech.2016.07.026 Zhang C-W.; Xia S-Q.; Ma P-S.; Facile pretreatment of lignocellulosic biomass using deep eutectic solvents. Bioresour Technol 2016,219,1-5 

  62. Phytochem Anal Liu Y. 30 156 2019 10.1002/pca.2801 Liu Y.; Zhang H.; Yu H.; Guo S.; Chen D.; Deep eutectic solvent as a green solvent for enhanced extraction of narirutin, naringin, hesperidin and neohesperidin from Aurantii Fructus. Phytochem Anal 2019,30(2),156-163 

  63. Pharm Biol Jiang Y. 52 581 2014 10.3109/13880209.2013.854396 Jiang Y.; Bai X.; Zhu X.; Li J.; The effects of Fructus Aurantii extract on the 5-hydroxytryptamine and vasoactive intestinal peptide contents of the rat gastrointestinal tract. Pharm Biol 2014,52(5),581-585 

  64. Evid Based Complement Alternat Med Wu Z. 2016 10.1155/2016/5616905 Wu Z.; Zhang S.; Li P.; Lu X.; Wang J.; Zhao L.; Wang Y.; Effect of aurantii fructus immaturus flavonoid on the contraction of isolated gastric smooth muscle strips in rats. Evid Based Complement Alternat Med 2016, 

  65. Food Chem Lin Z. 134 1181 2012 10.1016/j.foodchem.2012.02.161 Lin Z.; Wang H.; Xu Y.; Dong J.; Hashi Y.; Chen S.; Identification of antioxidants in Fructus aurantii and its quality evaluation using a new on-line combination of analytical techniques. Food Chem 2012,134(2),1181-1191 

  66. J Pharm Biomed Anal Chen H-F. 59 90 2012 10.1016/j.jpba.2011.10.013 Chen H-F.; Zhang W-G.; Yuan J-B.; Li Y-G.; Yang S-L.; Yang W-L.; Simultaneous quantification of polymethoxylated flavones and coumarins in Fructus aurantii and Fructus aurantii immaturus using HPLC-ESI-MS/MS. J Pharm Biomed Anal 2012,59,90-95 

  67. Yaowu Fenxi Zazhi Wei J.I.A. 32 1267 2012 Wei J.I.A.; Cheng C.A.O.; Optimal extracting conditions for flavonoids in Fructus Aurantii Immaturus with central composite design and response surface method. Yaowu Fenxi Zazhi 2012,32(7),1267-1271 

  68. Shiyong Yaowu Yu Linchuang Xiao Y.M. 16 127 2013 Xiao Y.M.; Zhang J.J.; Weng Y.C.; Zhao Q.C.; Extraction process of flavanone in Citrus aurantium L. by orthogonal design. Shiyong Yaowu Yu Linchuang 2013,16(2),127-129 

  69. Pharmacogn Mag Wang J. 8 166 2012 10.4103/0973-1296.96581 Wang J.; Zhao Y-M.; Guo C-Y.; Zhang S-M.; Liu C-L.; Zhang D-S.; Bai X-M.; Ultrasound-assisted extraction of total flavonoids from Inula helenium. Pharmacogn Mag 2012,8(30),166-170 

  70. Molecules Duan L. 24 2842 2019 10.3390/molecules24152842 Duan L.; Zhang C.; Zhang C.; Xue Z.; Zheng Y.; Guo L.; Green extraction of phenolic acids from artemisia argyi leaves by tailor-made ternary deep eutectic solvents. Molecules 2019,24(15),2842 

  71. Environ Clean Technol Seddon K.R. 68 351 1997 10.1002/(SICI)1097-4660(199704)68:4<351:AID-JCTB613>3.0.CO;2-4 Seddon K.R.; Ionic liquids for clean technology. J. Chem. Tech. Biotech. Int. Res. Proc. Environ Clean Technol 1997,68(4),351-356 

  72. Chem Rev Welton T. 99 2071 1999 10.1021/cr980032t Welton T.; Room-temperature ionic liquids. Solvents for synthesis and catalysis. Chem Rev 1999,99(8),2071-2084 

  73. Chem Eng Seddon K. 730 33 2002 Seddon K.; Ionic liquids: Designer solvents for green synthesis. Chem Eng 2002,730,33-35 

  74. Prog Polym Sci Kubisa P. 29 3 2004 10.1016/j.progpolymsci.2003.10.002 Kubisa P.; Application of ionic liquids as solvents for polymerization processes. Prog Polym Sci 2004,29(1),3-12 

  75. Polymer synthesis in ionic liquids In: Carmichael Adrian J. 319 2003 Carmichael Adrian J.; Haddleton David M.; Polymer synthesis in ionic liquids In: Ionic Liquids in Synthesis. Peter Wasserscheid Thomas Welton , Ed.2003,319-335 

  76. Tetrahedron Jain N. 5 1015 2005 10.1016/j.tet.2004.10.070 Jain N.; Kumar A.; Chauhan S.; Chauhan S.M.S.; Chemical and biochemical transformations in ionic liquids. Tetrahedron 2005,5(61),1015-1060 

  77. Biocatal Biotransform Husum T.L. 19 331 2001 10.3109/10242420109003648 Husum T.L.; Jørgensen C.T.; Christensen M.W.; Kirk O.; Enzyme catalysed synthesis in ambient temperature ionic liquids. Biocatal Biotransform 2001,19(4),331-338 

  78. Curr Opin Biotechnol Kragl U. 13 565 2002 10.1016/S0958-1669(02)00353-1 Kragl U.; Eckstein M.; Kaftzik N.; Enzyme catalysis in ionic liquids. Curr Opin Biotechnol 2002,13(6),565-571 

  79. Curr Opin Biotechnol Park S. 14 432 2003 10.1016/S0958-1669(03)00100-9 Park S.; Kazlauskas R.J.; Biocatalysis in ionic liquids - advantages beyond green technology. Curr Opin Biotechnol 2003,14(4),432-437 

  80. Green Chem Sheldon R.A. 4 147 2002 10.1039/b110008b Sheldon R.A.; Lau R.M.; Sorgedrager M.J.; van Rantwijk F.; Seddon K.R.; Biocatalysis in ionic liquids. Green Chem 2002,4(2),147-151 

  81. Trends Biotechnol van Rantwijk F. 21 131 2003 10.1016/S0167-7799(03)00008-8 van Rantwijk F.; Madeira Lau R.; Sheldon R.A.; Biocatalytic transformations in ionic liquids. Trends Biotechnol 2003,21(3),131-138 

  82. Ionic liquids in synthesis Mantz R.A. 2003 Mantz R.A.; Trulove P.C.; Wasserscheid P.; Welton T.; Ionic liquids in synthesis 2003 

  83. Appl Catal A Gen Gordon C.M. 222 101 2001 10.1016/S0926-860X(01)00834-1 Gordon C.M.; New developments in catalysis using ionic liquids. Appl Catal A Gen 2001,222(1-2),101-117 

  84. Chem Week Houlton S. 166 S10 2004 Houlton S.; Ionic liquids: the route to cleaner and more efficient fine chemical synthesis? Chem Week 2004,166(7),S10-S11 

  85. Chem Eng Commun Zhao H. 193 1660 2006 10.1080/00986440600586537 Zhao H.; Innovative applications of ionic liquids as “green” engineering liquids. Chem Eng Commun 2006,193(12),1660-1677 

  86. Z Naturforsch B Meng X. 64 929 2009 10.1515/znb-2009-0809 Meng X.; Zhang S.; Xu H.; Liu K.; Wu Z.; Zhang Z.; Ionic liquid-assisted solvothermal synthesis of ni particles and study of their electrocatalytic effect for calcium dobesilate oxidation. Z Naturforsch B 2009,64(8),929-934 

  87. Tetrahedron Chowdhury S. 63 2363 2007 10.1016/j.tet.2006.11.001 Chowdhury S.; Mohan R.S.; Scott J.L.; Reactivity of ionic liquids. Tetrahedron 2007,63(11),2363-2389 

  88. Green Chem Huddleston J.G. 3 156 2001 10.1039/b103275p Huddleston J.G.; Visser A.E.; Reichert W.M.; Willauer H.D.; Broker G.A.; Rogers R.D.; Characterization and comparison of hydrophilic and hydrophobic room temperature ionic liquids incorporating the imidazolium cation. Green Chem 2001,3(4),156-164 

  89. J Organomet Chem Sun J. 690 3490 2005 10.1016/j.jorganchem.2005.02.011 Sun J.; Shin-ichiro F.; Arai M.; Development in the green synthesis of cyclic carbonate from carbon dioxide using ionic liquids. J Organomet Chem 2005,690(15),3490-3497 

  90. Chem Commun (Camb) Sheldon R. 23 2399 2001 10.1039/b107270f Sheldon R.; Catalytic reactions in ionic liquids. Chem Commun (Camb) 2001,23(23),2399-2407 

  91. Catal Today Zhao D. 74 157 2002 10.1016/S0920-5861(01)00541-7 Zhao D.; Wu M.; Kou Y.; Min E.; Ionic liquids: Applications in catalysis. Catal Today 2002,74(1-2),157-189 

  92. Angew Chem Int Ed Engl Wasserscheid P. 39 3772 2000 10.1002/1521-3773(20001103)39:21<3772:aid-anie3772>3.0.co;2-5 Wasserscheid P.; Keim W.; Ionic liquids-New solutions for transition metal catalysis. Angew Chem Int Ed Engl 2000,39(21),3772-3789 

  93. Catal Commun Wang J-Q. 8 167 2007 10.1016/j.catcom.2006.05.049 Wang J-Q.; Yue X-D.; Cai F.; He L-N.; Solventless synthesis of cyclic carbonates from carbon dioxide and epoxides catalyzed by silica-supported ionic liquids under supercritical conditions. Catal Commun 2007,8(2),167-172 

  94. Clean Prod Process Holbrey J.D. 1 223 1999 Holbrey J.D.; Seddon K.R.; Ionic liquids. Clean Prod Process 1999,1(4),223-236 

  95. Nature Blanchard L.A. 399 28 1999 10.1038/19887 Blanchard L.A.; Dan H.; Beckman E.J.; Brennecke J.F.; Green processing using ionic liquids and CO 2. Nature 1999,399(6731),28 

  96. J Phys Chem B Anthony J.L. 106 7315 2002 10.1021/jp020631a Anthony J.L.; Maginn E.J.; Brennecke J.F.; Solubilities and thermodynamic properties of gases in the ionic liquid 1-n-butyl-3-methylimidazolium hexafluorophosphate. J Phys Chem B 2002,106(29),7315-7320 

  97. Ionic liquids in synthesis Wasserscheid P. 2008 Wasserscheid P.; Welton T.; Ionic liquids in synthesis 2008 

  98. ACS symposium series Rogers R.D. 2002 10.1021/bk-2002-0818 Rogers R.D.; Ionic liquids: Industrial applications to green chemistry. ACS symposium series American Chemical Society2002 

  99. Chem Rev Hallett J.P. 111 3508 2011 10.1021/cr1003248 Hallett J.P.; Welton T.; Room-temperature ionic liquids: solvents for synthesis and catalysis. 2. Chem Rev 2011,111(5),3508-3576 

  100. Polym Sci J Ser C Vygodskii Ya.S. 43 236 2001 Vygodskii Ya.S.; Ionic liquids as novel promising reaction media for organic and polymer syntheses. Polym Sci J Ser C 2001,43,236-251 

  101. Aldrichim Acta Zhao H. 2002 Zhao H.; Malhotra S.V.; Applications of ionic liquids in organic synthesis. Aldrichim Acta 2002 

  102. Prog Polym Sci Kubisa P. 34 1333 2009 10.1016/j.progpolymsci.2009.09.001 Kubisa P.; Ionic liquids as solvents for polymerization processes-Progress and challenges. Prog Polym Sci 2009,34(12),1333-1347 

  103. Chem Commun Huddleston J.G. 16 1765 1998 10.1039/A803999B Huddleston J.G.; Willauer H.D.; Swatloski R.P.; Visser A.E.; Rogers R.D.; Room temperature ionic liquids as novel media for ‘clean’liquid-liquid extraction. Chem Commun 1998,16,1765-1766 

  104. Polyhedron Suarez P.A.Z. 15 1217 1996 10.1016/0277-5387(95)00365-7 Suarez P.A.Z.; Jeane E.L.D.; Sandra E.; Roberto F.D.S.; Jairton D.;; The use of new ionic liquids in two-phase catalytic hydrogenation reaction by rhodium complexes. Polyhedron 1996,15(7),1217-1219 

  105. Chem Eng News Freemantle M. 79 21 2001 10.1021/cen-v079n001.p021 Freemantle M.; New horizons for ionic liquids. Chem Eng News 2001,79(1),21-21 

  106. Energy Fuels Schneider S. 22 2871 2008 10.1021/ef800286b Schneider S.; Hawkins T.; Rosander M.; Vaghjiani G.; Chambreau S.; Drake G.; Ionic liquids as hypergolic fuels. Energy Fuels 2008,22(4),2871-2872 

  107. Chem Rev van Rantwijk F. 107 2757 2007 10.1021/cr050946x van Rantwijk F.; Sheldon R.A.; Biocatalysis in ionic liquids. Chem Rev 2007,107(6),2757-2785 

  108. J Am Chem Soc Ichikawa T. 129 10662 2007 10.1021/ja0740418 Ichikawa T.; Yoshio M.; Hamasaki A.; Mukai T.; Ohno H.; Kato T.; Self-organization of room-temperature ionic liquids exhibiting liquid-crystalline bicontinuous cubic phases: formation of nano-ion channel networks. J Am Chem Soc 2007,129(35),10662-10663 

  109. Chem Rev Hapiot P. 108 2238 2008 10.1021/cr0680686 Hapiot P.; Lagrost C.; Electrochemical reactivity in room-temperature ionic liquids. Chem Rev 2008,108(7),2238-2264 

  110. Acc Chem Res Han X. 40 1079 2007 10.1021/ar700044y Han X.; Armstrong D.W.; Ionic liquids in separations. Acc Chem Res 2007,40(11),1079-1086 

  111. Chem Rev Haumann M. 108 1474 2008 10.1021/cr078374z Haumann M.; Riisager A.; Hydroformylation in room temperature ionic liquids (RTILs): catalyst and process developments. Chem Rev 2008,108(4),1474-1497 

  112. J Org Chem Du Y. 73 4709 2008 10.1021/jo800269v Du Y.; Wu Y.; Liu A-H.; He L-N.; Quaternary ammonium bromide functionalized polyethylene glycol: A highly efficient and recyclable catalyst for selective synthesis of 5-aryl-2-oxazolidinones from carbon dioxide and aziridines under solvent-free conditions. J Org Chem 2008,73(12),4709-4712 

  113. Polymer (Guildf) Han S. 38 317 1997 10.1016/S0032-3861(97)88175-X Han S.; Kim C.; Kwon D.; Thermal/oxidative degradation and stabilization of polyethylene glycol. Polymer (Guildf) 1997,38(2),317-323 

  114. Dalton Trans Aresta M. 28 2975 2007 10.1039/b700658f Aresta M.; Dibenedetto A.; Utilisation of CO2 as a chemical feedstock: opportunities and challenges. Dalton Trans 2007,28(28),2975-2992 

  115. ChemSusChem Wang J-Q. 2 755 2009 10.1002/cssc.200900060 Wang J-Q.; He L-N.; Miao C-X.; Gao J.; The free-radical chemistry of polyethylene glycol: Organic reactions in compressed carbon dioxide. ChemSusChem 2009,2(8),755-760 

  116. Adv Funct Mater Burgues­Ceballos I. 24 1449 2014 10.1002/adfm.201301509 Burgues­Ceballos I.; Machui F.; Min J.; Ameri T.; Voigt M.M.; Luponosov Y.N.; Ponomarenko S.A.; Lacharmoise P.D.; Campoy­Quiles M.; Brabec C.J.; Solubility based identification of green solvents for small molecule organic solar cells. Adv Funct Mater 2014,24(10),1449-1457 

  117. Angew Chem Int Ed Engl Chen X. 53 14378 2014 10.1002/anie.201409208 Chen X.; Liu X.; Burgers M.A.; Huang Y.; Bazan G.C.; Green-solvent-processed molecular solar cells. Angew Chem Int Ed Engl 2014,53(52),14378-14381 

  118. Food Chem Cvjetko B.M. 200 159 2016 10.1016/j.foodchem.2016.01.040 Cvjetko B.M.; urko N.; Toma?evi M.; Kovaevi Gani K.; Radoji Redovnikovi I.; Green extraction of grape skin phenolics by using deep eutectic solvents. Food Chem 2016,200,159-166 

  119. J Agric Food Chem Ruesgas-Ramon M. 65 3591 2017 10.1021/acs.jafc.7b01054 Ruesgas-Ramon M.; Figueroa-Espinoza M.C.; Durand E.; Application of deep eutectic solvents (DES) for phenolic compounds extraction: overview, challenges, and opportunities. J Agric Food Chem 2017,65(18),3591-3601 

  120. Inorg Chem Commun Liao J-H. 8 390 2005 10.1016/j.inoche.2005.01.025 Liao J-H.; Wu P-C.; Bai Y-H.; Eutectic mixture of choline chloride/urea as a green solvent in synthesis of a coordination polymer:[Zn (O3PCH2CO2)]? NH4. Inorg Chem Commun 2005,8(4),390-392 

  121. Ind Eng Chem Res Visser A.E. 39 3596 2000 10.1021/ie000426m Visser A.E.; Swatloski R.P.; Reichert W.M.; Griffin S.T.; Rogers R.D.; Traditional extractants in nontraditional solvents: Groups 1 and 2 extraction by crown ethers in room-temperature ionic liquids. Ind Eng Chem Res 2000,39(10),3596-3604 

  122. ACS symposium series Holbrey J.D.W. 121 2003 10.1021/bk-2003-0856.ch011 Holbrey J.D.W.; Matthew Reichert; R. G. Reddy; and R. D. Rogers; Ionic liquids as green solvents: Progress and prospects. ACS symposium series American Chemical Society Washington DC2003,121-133 

  123. J Chem Technol Biotechnol Zhao H. 88 3 2013 10.1002/jctb.3935 Zhao H.; Baker G.A.; Ionic liquids and deep eutectic solvents for biodiesel synthesis: A review. J Chem Technol Biotechnol 2013,88(1),3-12 

  124. Green Chem Abbott A.P. 9 868 2007 10.1039/b702833d Abbott A.P.; Cullis P.M.; Gibson M.J.; Harris R.C.; Raven E.; Extraction of glycerol from biodiesel into a eutectic based ionic liquid. Green Chem 2007,9(8),868-872 

  125. Biocatal Biotransform Garcia C. 36 131 2018 10.1080/10242422.2017.1349760 Garcia C.; Hoyos P.; Hernaiz M.J.; Enzymatic synthesis of carbohydrates and glycoconjugates using lipases and glycosidases in green solvents. Biocatal Biotransform 2018,36(2),131-140 

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