Novel Concepts for Iron and Manganesecatalyzed Homogenous Redox Transformations

Novel Concepts for Iron and Manganesecatalyzed Homogenous Redox Transformations

Transition metal catalysis plays a crucial role in the development of new chemical transformations, which can be broadly applied in organic synthesis, medicinal chemistry, synthesis of biologically relevant molecules, pharmaceuticals and other related fields. In recent years, the need for application of sustainable methods is......
fra 681,63
Tilgjengelig i 1 butikker
Forhåndsbestill
Frakt og levering
Beskrivelse
Transition metal catalysis plays a crucial role in the development of new chemical transformations, which can be broadly applied in organic synthesis, medicinal chemistry, synthesis of biologically relevant molecules, pharmaceuticals and other related fields. In recent years, the need for application of sustainable methods is significantly growing due to the necessity of waste-free transformations. Plenty of industrially run processes still apply classical procedures, which often lead to production of tons of waste as a consequence of multistep synthesis. Thus, development of novel catalytic systems which would afford complex molecular structures via straightforward processes is still desired. Hence, metal-catalyzed transformations play a crucial role in the development of new synthetic strategies, as they can easily lead to the reduction of synthetic steps and, ipso facto, reduction of waste leading to atom-economic transformations. Application of transition metals particularly in homogenous catalysis was initiated by industrial processes such as carbonylation of alkenes and alkynes by metal carbonyls, production of polyethylene and polypropylene by the Ziegler-Natta catalysts or conversion of ethylene into acetaldehyde in the Wacker’s process. This breakthrough inspired investigation of other synthetic reactions, which could be catalyzed by transition metals. Soon after, the field was dominated by application of catalysts containing precious-metal centers leading to the facile synthesis of higher molecules. Significant role of transition metals in chemistry was highlighted by Nobel prizes in 2001 (K. B. Sharpless, W. S. Knowles, R. Noyori) for metal-catalyzed enantioselective hydrogenation and oxidation reactions, in 2005 (R. Schrock, R. Grubbs, Y. Chauvin) for application of transition metals in metathesis and in 2010 (R. F. Heck, A. Suzuki, E. Negishi) for application of Pd-based systems in cross-coupling reactions, which with enormous impact modernized organic synthesis in research laboratories and in industry. However, the application of late and noble metal catalytic systems exhibits crucial drawbacks. Noble metals are expensive, due to their low abundance in the earth crust (Figure 1)[4] and related challenges in their extraction. Moreover, they are toxic and lead to formation of toxic waste.Taking into account the huge impact of catalysis nowadays and how it can influence our life and environment, modern chemical society focuses on finding more economically and environmentally friendly methods. As an alternative, implementation of base metal catalysis gained a lot of attention as it can lead to most cost-effective and more environmentally friendly protocols. Moreover, base metals can demonstrate similar reactivity as noble metals or exhibit new features, leading to other interesting transformations.

Produktinformasjon

Oppdag Novel Concepts for Iron and Manganesecatalyzed Homogenous Redox Transformations

Er du på jakt etter banebrytende løsninger innen kjemisk syntese? Novel Concepts for Iron and Manganesecatalyzed Homogenous Redox Transformations er svaret! Dette produktet representerer en ny epoke for både forskere og industri ved å tilby effektive metoder for å realisere komplekse molekylære strukturer med minimal avfall.

Hvorfor Velge Jern- og Mangan Katalyserte Transformasjoner?

  • Bærekraftig tilnærming: Økden avfall ved bruk av jern og mangan som katalysatorer bidrar til mer miljøvennlige prosesser.
  • Kostnadseffektivitet: Base metall katalyse gir en økonomisk fordel sammenlignet med dyre edelmetaller.
  • Redusert toksisitet: Unngå dannelse av giftige substanser, noe som er en vanlig utfordring med tradisjonelle metoder.

Teknologiske Fremskritt

Med Novel Concepts for Iron and Manganesecatalyzed Homogenous Redox Transformations kan forskere utforske nye syntetiske strategier. Ved å benytte seg av jern og mangan, kan man oppnå høy reaktivitet samtidig som man reduserer antall syntesetrinn. Dette er ikke bare effektivt, men også en nødvendighet i dagens kjemiske landskap, der det er økende fokus på bærekraft og atomøkonomi.

Bruksområder og Applikasjoner

Dette innovative produktet er ideelt for:

  • Organisk syntese
  • Medisinsk kjemi
  • Syntese av biologisk relevante molekyler

Konklusjon

Ikke gå glipp av muligheten til å integrere Novel Concepts for Iron and Manganesecatalyzed Homogenous Redox Transformations i dine prosjekter. Det representerer ikke bare et skifte mot mer effektive metoder, men også en fremtid hvor kjemisk forskning kan vokse ansvarlig. Din vei til bedre og mer bærekraftige resultater begynner her!

Spesifikasjon

Produkt
ProduktnavnNovel Concepts for Iron and Manganesecatalyzed Homogenous Redox Transformations
MerkeOther Brand

Pris og prishistorikk

Akkurat nå er 681,63 den billigste prisen for Novel Concepts for Iron and Manganesecatalyzed Homogenous Redox Transformations blant 1 butikker hos Prisradar. Sjekk også vår topp 5-rangering av beste matematikk og naturfag for å være sikker på at du gjør det beste kjøpet.

Prisutvikling:
Vokser
Laveste pris:
623,2
Gjennomsnittspris:
675,-
Høyeste pris:
681,63
Beste tilbudet:
platekompaniet.no
Ikke tilgjengelig