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Beryllium carbide (Be2C)

Beryllium carbide (Be2C) structure

Beryllium carbide (Be2C) 

structure
  • CAS No:

    506-66-1

  • Formula:

    CBe2

  • Chemical Name:

    Beryllium carbide (Be2C)

  • Synonyms:

    Beryllium carbide (Be2C);12069-36-2

Description

Beryllium Carbide, a white crystalline compound characterized by its chemical formula Be₂C, is renowned for its exceptional hardness and impressive thermal conductivity properties. This unique substance is often utilized in various industrial applications where these characteristics are highly valued. Its durability and ability to withstand high temperatures make it suitable for use in materials that require resilience and efficient heat transfer. Beryllium Carbide's distinctive qualities have led to its inclusion in the development of cutting-edge technologies and specialized manufacturing processes.

Beryllium carbide (Be2C) Basic Attributes

33.033582

30.024

208-050-7

DTXSID6060137

Characteristics

0

1.90

decomposes at >2100℃ [MER06]

decomposed very slowly by H2O; hydrolysis yields methane and beryllium hydroxide [KIR78] [MER06]

Safety Information

6.1(b)

1566

Beryllium carbide (Be2C) Use and Manufacturing

Uses

Beryllium Carbide, a compound of beryllium and carbon, finds its application in the realm of advanced ceramics, where it is utilized for its exceptional hardness and durability. This material is also employed in the construction of nuclear reactors, where it serves as a crucial component due to its ability to moderate neutrons effectively. The moderation of neutrons is a critical process in nuclear reactors, as it helps to control the rate of nuclear reactions, ensuring safe and efficient energy production. Beyond its established uses, Beryllium Carbide is an area of intense research for its potential applications in the aerospace industry. Its unique properties, such as high melting point and low density, make it an attractive candidate for spacecraft components that must withstand extreme temperatures and harsh environmental conditions. Furthermore, the compound's thermal stability and resistance to thermal shock make it suitable for high-temperature applications, where materials are subjected to significant thermal stresses without degrading. As research continues, the potential uses of Beryllium Carbide are likely to expand, offering innovative solutions in various high-tech fields.

Beryllium carbide (Be2C): INACTIVE

Computed Properties

Molecular Weight:30.035
Exact Mass:30.024366
Monoisotopic Mass:30.024366
Heavy Atom Count:3
Complexity:18.3
Covalently-Bonded Unit Count:1
Compound Is Canonicalized:Yes

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