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Leached phase-separated porous glasses as support material in liquid phase heterogeneous catalysis - a short review

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EN
Abstrakty
EN
Leached phase-separated porous glasses are interesting support materials for heterogeneous catalysts utilized for cross-coupling reactions and hydrogenation reactions in the liquid phase. The option to construct tailor-made porous structures and shapes of the particles results in materials with interesting properties for catalysis, such as narrow pore size distribution or specific surface area. Loading of porous glasses with various metals by the wet-impregnation technique leads to active catalysts for widespread applications in organic synthesis. This article reviews the application of porous glass-based catalysts for the construction of new C-C bonds as well as for chemoselective hydrogenation under microwave-assisted or classical heating conditions.
Czasopismo
Rocznik
Strony
245--254
Opis fizyczny
Bibliogr. 31 poz.
Twórcy
autor
autor
  • Institute for Technical Chemistry and Environmental Chemistry (ITUC), Friedrich-Schiller University Jena, Lessingstraße 12, D-07743 Jena, Germany
Bibliografia
  • [1] JANOWSKI F., ENKE D. [Eds.], Porous Glasses, Wiley-VCH, Weinheim, 2002.
  • [2] ENKE D., JANOWSKI F., SCHWIEGER W., Porous glasses in the 21st century – A short review,Microporous and Mesoporous Materials 60(1–3), 2003, pp. 19–30.Leached phase-separated porous glasses as support material... 253
  • [3] KURAOKA K., CHUJO Y., YAZAWA T., Hydrocarbon separation via porous glass membranes surface-modified using organosilane compounds, Journal of Membrane Science 182(1–2), 2001, pp. 139–149.
  • [4] KUNDU S.K., DEAE-Silica gel and DEAE-controlled porous glass as ion exchangers for the isolation of glycolipids, Methods in Enzymology 72, 1981, pp. 174–185.
  • [5] CHOMA I., DAWIDOWICZ A.L., Controlled-porosity glasses as alternative adsorbents to silica gel for HPLC, Chromatographia 33(3–4), 1992, pp. 122–126.
  • [6] SCHMÖGER C., GALLERT T., STOLLE A., ONDRUSCHKA B., BONRATH W., Microwave-assisted chemoselective hydrogenation reactions incorporating hydrogen as reducing agent, Chemical Engineering and Technology 34(3), 2011, pp. 445–451.
  • [7] PREISING H., ENKE D., Relations between texture and transport properties in the primary pore system of catalyst supports, Colloids and Surfaces A 300(1–2), 2007, pp. 21–29.
  • [8] SUZUKI A., Cross-coupling reactions of organoboranes: An easy way to construct C–C bonds (Nobel lecture), Angewandte Chemie International Edition 50(30), 2011, pp. 6722–6737.
  • [9] NEGISHI E., Magical power of transition metals: Past, present, and future (Nobel lecture), Angewandte Chemie International Edition 50(30), 2011, pp. 6738–6764.
  • [10] MIYAURA N., YAMADA K., SUZUKI A., A new stereospecific cross-coupling by the palladium-catalyzed reaction of 1-alkenylboranes with 1-alkenyl or 1-alkynyl halides, Tetrahedron Letters 20(36), 1979, pp. 3437–3440.
  • [11] SCHMÖGER C., SZUPPA T., TIED A., SCHNEIDER F., STOLLE A., ONDRUSCHKA B., Pd on porous glass: A versatile and easily recyclable catalyst for Suzuki and Heck reactions, ChemSusChem 1(4), 2008, pp. 339–347.
  • [12] ALAM M.N., SARKAR S.M., Mesoporous MCM-41 supported N-heterocyclic carbene-Pd(II) complex for Suzuki coupling reaction, Reaction Kinetics, Mechanisms and Catalysis 103(2), 2011, pp. 493–500.
  • [13] LASRI J., MAC LEOD T.C.O., POMBEIRO A.J.L., Oxadiazoline and ketoimine palladium(II) complexes supported on a chitosan membrane and their catalytic activity for the microwave-assisted Suzuki–Miyaura cross-coupling in water, Applied Catalysis A: General 397(1–2), 2011, pp. 94–102.
  • [14] MARTINA K., LEONHARDT S.E.S., ONDRUSCHKA B., CURINI M., BINELLO A., CRAVOTTO G., In situ cross-linked chitosan Cu(I) or Pd(II) complexes as a versatile, eco-friendly recyclable solid catalyst, Journal of Molecular Catalysis A: Chemical 334(1–2), 2011, pp. 60–64.
  • [15] FREITAG J., HERMANN M., NÜCHTER M., ONDRUSCHKA B., SCHNEIDER F., STOLLE A., Microwave assisted synthesis using catalysts on contolled pore glass carriers, Optica Applicata 35(4), 2005, pp. 745–752.
  • [16] STOLLE A., SCHMÖGER C., ONDRUSCHKA B., BONRATH W., KELLER T.F., JANDT K.D., Liquid phase hydrogenation of benzalacetophenone: Effect of solvent, catalyst support, catalytic metal and reaction conditions, Chinese Journal of Catalysis 32(6–8), 2011, pp. 1312–1322.
  • [17] LI J., MAU A.W.-H., STRAUSS C.R., The use of palladium on porous glass for catalytic coupling reactions, Chemical Communications, Issue 14, 1997, pp. 1275–1276.
  • [18] HECK R.F., NOLLEY J.P., Palladium-catalyzed vinylic hydrogen substitution reactions with aryl, benzyl, and styryl halides, Journal of Organic Chemistry 37(14), 1972, pp. 2320–2322.
  • [19] WOLF F., JANOWSKI F., HEYER W., Zur Hydrierung von Kohlenwasserstoffen an Katalysatoren des Systems poröses Glas-Metall, Zeitschrift für anorganische und allgemeine Chemie 432(1), 1977, pp. 242–248.
  • [20] TAKAHASHI T., YAMASHITA K., KAI T., FUJIYOSHI I., Hydrogenation of benzene, mono-, di-, and trimethylbenzenes over nickel catalysts supported on porous glass, The Canadian Journal of Chemical Engineering 64(6), 1986, pp. 1008–1013.
  • [21] TAKAHASHI T., YANAGIMOTO Y., MATSUOKA T., KAI T., Hydrogenation activity of benzenes on nickel catalysts supported on porous glass prepared from borosilicate glass with small amounts of metal oxides, Microporous Materials 6(4), 1996, pp. 189–194.254 T. GALLERT et al.
  • [22] VENUTO P.B., Organic catalysis over zeolites: A perspective on reaction paths within micropores, Microporous Materials 2(5), 1994, pp. 297–411.
  • [23] TAKAHASHI T., IWAISHI S.-I., YANAGIMOTO Y., KAI T., Hydrogenation of 1-hexenes and 1-octenes over nickel catalyst supported on porous glass prepared from borosilicate glass, Korean Journal of Chemical Engineering 14(6), 1997, pp. 459–463.
  • [24] SCHMÖGER C., STOLLE A., BONRATH W., ONDRUSCHKA B., KELLER T., JANDT K.D., A practical approach for ambient-pressure hydrogenations using Pd on porous glass, ChemSusChem 2(1), 2009, pp. 77–82.
  • [25] STOLLE A., BRAUNS C., NÜCHTER M., ONDRUSCHKA B., BONRATH W., FINDEISEN M., Thermal behaviour of selected C10 H16 monoterpenes, European Journal of Organic Chemistry, Issue 15, 2006, pp. 3317–3325.
  • [26] NÜCHTER M., ONDRUSCHKA B., Verfahren zur Durchführung Metall-katalysierter Reaktionen, insbesondere Palladium-katalysierter Reaktionen, DE 102004033601 A1, 2006.
  • [27] BONRATH W., ONDRUSCHKA B., SCHMÖGER C., STOLLE A., Novel selective hydrogenation catalyst comprising palladium on porous silica glass and the use thereof, WO 2010020671 A1, 2010.
  • [28] GALLERT T., HAHN M., SELLIN M., SCHMÖGER C., STOLLE A., ONDRUSCHKA B., KELLER T.F., JANDT K.D., Microwave-assisted partial hydrogenation of citral by using ionic liquid-coated porous glass catalysts, ChemSusChem 4(11), 2011, pp. 1654–1661.
  • [29] CLAUS P., ARRAS J., RUPPERT D., Einfluss ionischer Flüssigkeiten mit funktionalisierten Kationen auf die palladiumkatalysierte Flüssigphasenhydrierung von Citral, Chemie Ingenieur Technik 81(12), 2009, pp. 2007–2011.
  • [30] ARRAS J., STEFFAN M., SHAYEGHI Y., RUPPERT D., CLAUS P., Regioselective catalytic hydrogenation of citral with ionic liquids as reaction modifiers, Green Chemistry 11(5), 2009, pp. 716–723.
  • [31] KERNCHEN U., ETZOLD B., KORTH W., JESS A., Solid catalyst with ionic liquid layer (SCILL) – A new concept to improve selectivity illustrated by hydrogenation of cyclooctadiene, Chemical Engineering and Technology 30(8), 2007, pp. 985–994.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW7-0023-0009
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