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Expanding the Utility of One-Pot Multistep Reaction Networks through Compartmentation and Recovery of the Catalyst

Phan, Nam T. S. ; Gill, Christopher S. ; Nguyen, Joseph V. ; Zhang, Z. John ; Jones, Christopher W.

Angewandte Chemie, 2006-03, Vol.118 (14), p.2267-2270 [Periódico revisado por pares]

Weinheim: WILEY-VCH Verlag

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  • Título:
    Expanding the Utility of One-Pot Multistep Reaction Networks through Compartmentation and Recovery of the Catalyst
  • Autor: Phan, Nam T. S. ; Gill, Christopher S. ; Nguyen, Joseph V. ; Zhang, Z. John ; Jones, Christopher W.
  • Assuntos: Acidität ; Heterogene Katalyse ; Magnetische Eigenschaften ; Nanostrukturen ; Synthesemethoden
  • É parte de: Angewandte Chemie, 2006-03, Vol.118 (14), p.2267-2270
  • Notas: istex:29E5A9C9C1DD93BD921965D0F7766BD7D7A20447
    The US DOE Office of Basic Energy Sciences is acknowledged for financial support through Catalysis Science Contract No. DE-FG02-03ER15459. DuPont is also thanked for a Young Professor Award. C.W.J. acknowledges support from ChBE at GT through the J. Carl & Sheila Pirkle Faculty Fellowship.
    ark:/67375/WNG-GNHNSRP7-8
    ArticleID:ANGE200503445
    The US DOE Office of Basic Energy Sciences is acknowledged for financial support through Catalysis Science Contract No. DE‐FG02‐03ER15459. DuPont is also thanked for a Young Professor Award. C.W.J. acknowledges support from ChBE at GT through the J. Carl & Sheila Pirkle Faculty Fellowship.
  • Descrição: Kontrollierte Katalyse: Die Kombination von magnetisch mit gravimetrisch rückgewinnbaren Katalysatoren, z. B. der Nanopartikel‐gebundenen Base (blau im Bild) mit der Harz‐gebundenen Säure (grün), ermöglicht den Einsatz nichtkomplementärer Katalysatoren in vielstufigen Eintopfreaktionskaskaden (z. B. A→B→C). Die Katalysatoren werden nach der Reaktion zurückgewonnen und in anschließenden, unabhängigen Reaktionen wiederverwendet.
  • Editor: Weinheim: WILEY-VCH Verlag
  • Idioma: Inglês

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