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Catalog Number:
47142
CAS Number:
1303-86-2
Boron oxide powder (-200mesh)
Purity:
≥ 98% (Trace metals basis)
Documents
$81.00 /100G
Pack Size Availability Price
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Product Information

Boron oxide powder, also known as boric oxide or diboron trioxide, is a versatile compound with significant applications across various industries. This fine powder, characterized by its high purity and -200 mesh particle size, is widely utilized in the production of glass, ceramics, and fiberglass, enhancing their durability and thermal resistance. Additionally, boron oxide serves as a crucial flux in metallurgy, promoting the melting of metals and improving the quality of alloys. Its unique properties also make it an essential ingredient in the formulation of boron-containing compounds, which are used in agriculture as fertilizers and pesticides, contributing to improved crop yields.

Researchers and industry professionals benefit from boron oxide powder's ability to act as a catalyst in chemical reactions, particularly in organic synthesis and polymerization processes. Its low toxicity and environmental compatibility further enhance its appeal, making it a preferred choice for sustainable applications. With its multifaceted uses and advantages over similar compounds, boron oxide powder stands out as a valuable resource for innovation and efficiency in various fields.

CAS Number
1303-86-2
Purity
≥ 98% (Trace metals basis)
Molecular Formula
B2O3
Molecular Weight
69.62
PubChem ID
518682
Appearance
White powder
Mesh Size
APS -200mesh
Conditions
Store at RT
General Information
CAS Number
1303-86-2
Purity
≥ 98% (Trace metals basis)
Molecular Formula
B2O3
Molecular Weight
69.62
PubChem ID
518682
Appearance
White powder
Mesh Size
APS -200mesh
Conditions
Store at RT
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

Boron oxide powder (-200 mesh) is widely utilized in research focused on:

  • Glass Manufacturing: It serves as a key ingredient in producing borosilicate glass, which is known for its thermal resistance and durability. This makes it ideal for laboratory glassware and cookware.
  • Ceramics: The compound is used to enhance the properties of ceramic materials, improving their strength and thermal stability, which is crucial for applications in electronics and high-temperature environments.
  • Fertilizers: In agriculture, it acts as a micronutrient in fertilizers, promoting healthy plant growth by aiding in the development of flowers and seeds.
  • Flame Retardants: It is incorporated into various materials to improve fire resistance, making it valuable in construction and textiles, where safety is a priority.
  • Pharmaceuticals: The compound is explored in drug formulations, particularly in targeting delivery systems, due to its ability to enhance the solubility of certain medications.

Citations