1,4-DISILABUTANE

97%

Reagent Code: #88114
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CAS Number 4364-07-2

science Other reagents with same CAS 4364-07-2

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 90.27 g/mol
Formula C₂H₁₀Si₂
thermostat Physical Properties
Melting Point -15 °C
Boiling Point 45-46 °C
inventory_2 Storage & Handling
Density 0.697 g/cm3
Storage 2-8°C, sealed, dry

description Product Description

1,4-Disilabutane is primarily utilized in the field of organometallic chemistry and materials science. It serves as a precursor for the synthesis of silicon-based polymers and ceramics, which are essential in producing high-performance materials with thermal and chemical resistance. The compound is also employed in the development of silicon-containing organic compounds, which are valuable in creating advanced coatings and adhesives. Additionally, 1,4-disilabutane finds applications in the research and production of semiconductors, where its properties contribute to the fabrication of electronic components with enhanced efficiency and durability. Its role in catalysis is notable as well, particularly in processes that require silicon-based intermediates for chemical transformations.

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Size Availability Unit Price Quantity
inventory 5g
10-20 days ฿35,100.00

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1,4-DISILABUTANE
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1,4-Disilabutane is primarily utilized in the field of organometallic chemistry and materials science. It serves as a precursor for the synthesis of silicon-based polymers and ceramics, which are essential in producing high-performance materials with thermal and chemical resistance. The compound is also employed in the development of silicon-containing organic compounds, which are valuable in creating advanced coatings and adhesives. Additionally, 1,4-disilabutane finds applications in the research and p

1,4-Disilabutane is primarily utilized in the field of organometallic chemistry and materials science. It serves as a precursor for the synthesis of silicon-based polymers and ceramics, which are essential in producing high-performance materials with thermal and chemical resistance. The compound is also employed in the development of silicon-containing organic compounds, which are valuable in creating advanced coatings and adhesives. Additionally, 1,4-disilabutane finds applications in the research and production of semiconductors, where its properties contribute to the fabrication of electronic components with enhanced efficiency and durability. Its role in catalysis is notable as well, particularly in processes that require silicon-based intermediates for chemical transformations.

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