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MOLECULAR SIEVES

Base Information
  • Chemical Name:MOLECULAR SIEVES
  • CAS No.:12173-28-3
  • Molecular Formula:Al3.2-3.8Ca0-1.9K0-3.8Na0-3.8O24Si8.2-8.8.16H2O
  • Molecular Weight:290.38
  • Hs Code.:
MOLECULAR SIEVES

Synonyms:Faujasite ((K0-1Na0-1Ca0-0.5)3.2-3.8(Al3.2-3.8Si8.2-8.8-O24).16H2O);13x molecular sieve;

Suppliers and Price of MOLECULAR SIEVES
Supply Marketing:
Business phase:
The product has achieved commercial mass production*data from LookChem market partment
Manufacturers and distributors:
  • Manufacture/Brand
  • Chemicals and raw materials
  • Packaging
  • price
  • Sigma-Aldrich
  • Molecular sieves, 13X beads, 8-12?mesh
  • 5 kg
  • $ 513.00
  • Sigma-Aldrich
  • Molecular sieves, 13X beads, 4-8?mesh
  • 5 kg
  • $ 390.00
  • Sigma-Aldrich
  • Molecular sieves, 13X beads, 8-12?mesh
  • 1 kg
  • $ 145.00
  • Sigma-Aldrich
  • Molecular sieves, 13X pellets, 3.2?mm
  • 1 kg
  • $ 139.00
  • Sigma-Aldrich
  • Molecular sieves, 13X beads, 4-8?mesh
  • 1 kg
  • $ 133.00
  • Sigma-Aldrich
  • Molecular sieves, 13X powder, ~2?μm avg. part. size
  • 1 kg
  • $ 106.00
Total 46 raw suppliers
Chemical Property of MOLECULAR SIEVES
Chemical Property:
  • Melting Point:>600°C 
Purity/Quality:

99.9% *data from raw suppliers

Molecular sieves, 13X beads, 8-12?mesh *data from reagent suppliers

Safty Information:
  • Pictogram(s): Xn,Xi 
  • Hazard Codes:Xn,Xi 
  • Statements: 20-36/37-36/37/38 
  • Safety Statements: 22-36-26 
MSDS Files:
Useful:
Refernces

Iron-containing mesoporous aluminosilicate: A highly active and reusable heterogeneous catalyst for hydroarylation of styrenes

10.1021/jo100803y

The research focuses on the development and application of an iron-containing mesoporous aluminosilicate (Fe-AlMCM-41) as a highly active and reusable heterogeneous catalyst for the hydroarylation of styrenes. The purpose of this study was to provide a straightforward access to important 1,1-diarylalkane products through C-H functionalization using a solid heterogeneous catalyst, which is less toxic and more accessible than traditional strong Lewis or Br?nsted acids. The researchers successfully achieved excellent yields of various styrene derivatives using the Fe-AlMCM-41 catalyst, which could be recovered and reused at least three times without significant loss in activity. The study concluded that Fe-AlMCM-41 is an effective catalyst for the synthesis of a wide variety of diarylethanes, offering a green and efficient method for carbon-carbon coupling reactions. Key chemicals used in the process include styrene derivatives, phenols, FeCl3, and the mesoporous material Al-MCM-41.

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