The first Special Topic issue devoted to green chemistry was published in Pure and Applied Chemistry in July 2000 [ Pure Appl. Chem. 72 , 1207-1403 (2000)]. Since then, three collections of works have been published, arising from the recently launched IUPAC series of International Conferences on Green Chemistry: - 1st International Conference on Green Chemistry (ICGC-1), Dresden, Germany, 10-15 September 2006: Pure Appl. Chem. 79 , 1833-2100 (2007) - 2nd International Conference on Green Chemistry (ICGC-2), Moscow, Russia, 14-20 September 2008: Pure Appl. Chem. 81 , 1961-2129 (2009) - 3rd International Conference on Green Chemistry (ICGC-3), Ottawa, Canada, 15-18 August 2010: Pure Appl. Chem. 83 , 1343-1406 (2011) This Special Topic issue forms part of the series on green chemistry, and is an outcome of IUPAC Project No. 2008-016-1-300: “Chlorine-free Synthesis for Green Chemistry” previously announced in Chemistry International , May-June, p. 22 (2011). The IUPAC Subcommittee on Green Chemistry was founded in July 2001 and has selected the following definition for green chemistry [1]: “The invention, design and application of chemical products and processes to reduce or to eliminate the use and generation of hazardous substances” [2]. Much controversy persists about the appropriate terminology to describe this new field of research. Which term should be selected, “green chemistry” or “sustainable chemistry”? Perhaps consensus can be achieved if different purposes and interests of chemists are reconciled. If we are involved in fundamental research devoted to the discovery of new reaction pathways and reagents, “green” is the best word because it defines these intents, thus the term “green chemistry” would be the best name for this field of research. If we are interested in exploitation of a process or a product that must be profitable, then such chemical manufacture must be sustainable by many criteria (price, competition, profit, environment, etc.), and, accordingly, “sustainable chemistry” is the term that best defines this objective. This Special Topic issue has been designed with the intent to explore the restriction, or preferably prevention, of the use of halogenated compounds, whenever feasible, through the assembly and reporting of already identified information. This intent has been pursued through innovative synthetic pathways using clearly identified production drivers (e.g., energy consumption, environmental impact, economical feasibility, etc.). In past decades, scientific knowledge and feasible technologies were unavailable, but we now have enough expertise to pursue discontinuation of hazardous and toxic reagents. In fact, the replacement of reagents that are toxic, dangerous, and produced by eco-unfriendly processes is still an underdeveloped area of chemistry today. Pietro Tundo Project Co-chair 1. For a short history of green chemistry, see: P. Tundo, F. Aricò. Chem. Int. 29 (5), (2007). 2. P. Anastas, D. Black, J. Breen, T. Collins, S. Memoli, J. Miyamoto, M. Polyakoff, W. Tumas, P. Tundo. Pure Appl. Chem. 72 , 1207 (2000).
Inhalt
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Öffentlich zugänglichPreface31. Oktober 2013
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Öffentlich zugänglichChlorine-free synthesis: An overview24. Februar 2012
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Öffentlich zugänglichReplacing benzyl chloride with benzyl alcohol in heterogeneous catalytic benzylation of aromatic compounds3. Februar 2012
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Öffentlich zugänglichNovel general halogen-free methodology for the synthesis of organophosphorus compounds17. Januar 2012
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Öffentlich zugänglichEnvironmentally benign and effective syntheses of N-substituted carbamates via alcoholysis of disubstituted ureas over TiO2/SiO2 catalyst4. Oktober 2011
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Öffentlich zugänglichPhosgene-free synthesis of 1,3-diphenylurea via catalyzed reductive carbonylation of nitrobenzene6. Januar 2012
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Öffentlich zugänglichGreen approaches to the production of iopamidol15. September 2011
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Öffentlich zugänglichLaser electrodispersion as a new chlorine-free method for the production of highly effective metal-containing supported catalysts18. Januar 2012
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Öffentlich zugänglichMolecular sieve catalysts as substitutes for metal chlorides in the chemical industry: Some selected examples21. Oktober 2011
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Öffentlich zugänglichSimple halogen-free synthesis of aryl cinnamates using Mo-Keggin heteropoly acids as catalyst21. Oktober 2011
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Öffentlich zugänglichPolyoxometalate and copolymer-functionalized ionic liquid catalyst for esterification19. Oktober 2011
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Öffentlich zugänglichChlorine-free copper-catalyzed oxidative synthesis of 1,3,4-oxadiazoles with molecular oxygen as the sole oxidant27. September 2011
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Öffentlich zugänglichSelective epoxidation of propylene to propylene oxide with H2 and O2 over Au/Ti-MWW catalysts23. November 2011
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Öffentlich zugänglichOrganic synthesis using carbon dioxide as phosgene-free carbonyl reagent1. September 2011
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Öffentlich zugänglichRecent progress in phosgene-free methods for synthesis of dimethyl carbonate22. September 2011
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Öffentlich zugänglichChlorine-free catalysts for green synthesis of cyclic carbonates from carbon dioxide9. November 2011
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Öffentlich zugänglichCyclic carbonates as monomers for phosgene- and isocyanate-free polyurethanes and polycarbonates21. Oktober 2011
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Öffentlich zugänglichDirect synthesis of dimethyl carbonate from methanol and carbon dioxide over organotin-functionalized mesoporous benzene-silica15. September 2011
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Öffentlich zugänglichSynthesis of unsymmetrical organic carbonates catalyzed by a sulfonic acid-functionalized zirconium phosphonate30. September 2011
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Öffentlich zugänglichActivity of ceria and ceria-supported gold nanoparticles for the carbamoylation of aliphatic amines by dimethyl carbonate19. September 2011
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Öffentlich zugänglichPhosgene-free carbamoylation of aniline via dimethyl carbonate19. November 2011
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Öffentlich zugänglichCyclization reaction of amines with dialkyl carbonates to yield 1,3-oxazinan-2-ones23. November 2011
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Öffentlich zugänglichA greener, halide-free approach to ionic liquid synthesis8. Dezember 2011
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Öffentlich zugänglichChlorine-free alternatives to the synthesis of ionic liquids for biomass processing10. Februar 2012
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Öffentlich zugänglichSynthesis of glycerol carbonate from glycerol and dimethyl carbonate in basic ionic liquids15. Oktober 2011
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Öffentlich zugänglichAerobic oxidation of 5-hydroxymethylfurfural to 2,5-diformylfuran on supported vanadium oxide catalysts: Structural effect and reaction mechanism31. Oktober 2011
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Öffentlich zugänglichHydrogenation of methyl laurate to produce lauryl alcohol over Cu/ZnO/Al2O3 with methanol as the solvent and hydrogen source5. November 2011
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Öffentlich zugänglichEffective catalysis of poly(ethylene terephthalate) (PET) degradation by metallic acetate ionic liquids8. Februar 2012
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Öffentlich zugänglichEnvironmentally friendly approaches to the synthesis of new antibiotics from sugars15. Februar 2012
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Öffentlich zugänglichA green metrics assessment of phosgene and phosgene-free syntheses of industrially important commodity chemicals19. November 2011