File:Beacetate.png · Wikimedia Commons · See Wikimedia Commons
beryllium
Sign in to saveAlso known as Be, element 4, glucineum, ₄Be
Beryllium is a chemical element; it has symbol Be and atomic number 4. It is a steel-gray, hard, strong, lightweight and brittle alkaline earth metal. It is a divalent element that occurs naturally only in combination with other elements to form minerals. Gemstones high in beryllium include beryl (aquamarine, emerald, red beryl) and chrysoberyl. It is a relatively rare element in the universe, usually occurring as a product of the spallation of larger atomic nuclei that have collided with cosmic rays. Within the cores of stars, beryllium is depleted as it is fused into heavier elements. Beryll
OverviewAI-generated
Beryllium is a chemical element with the symbol Be and atomic number 4. Its standard chemical formula is Be. The element has an atomic mass of 9.0121831 and an electronegativity of 2. Its electron configuration is listed as 1s² 2s² or [He] 2s². The ionic radius is 0.45.
Beryllium has a density of 1.850 and electrical conductivity of 25000000. It melts at 2349 and boils at 4532. The vapor pressure is 0. The primary oxidation state is 2. It was discovered in 1798. The Unicode character for the element is 鈹.
Safety guidelines include a time-weighted average exposure limit of 0.002 and a ceiling exposure limit of 0.0005. The level immediately dangerous to life or health is 4. The NIOSH Pocket Guide ID is 0054. In chemical databases, it is identified by PubChem CID 5460467 and InChIKey ATBAMAFKBVZNFJ-UHFFFAOYSA-N.
Synthesized by Vinony from 34 facts across 4 sources: Wikidata, PubMed, PubChem, Vinony graph. Generated from structured data (not the Wikipedia text) and checked against those facts — may still contain errors.
Chemical data
- Formula
- Be
- Molecular weight
- 9.012183 g/mol
- IUPAC name
- beryllium
- SMILES
- [Be]
- InChIKey
- ATBAMAFKBVZNFJ-UHFFFAOYSA-N
- Polar surface area
- 0 Ų
- H-bond donors
- 0
- H-bond acceptors
- 0
- Formal charge
- 0
via PubChem
Research
5,133 papers- Chronic Beryllium Disease: Update on a Moving Target.Chest · 2020
- Beryllium carcinogenesis.Advances in experimental medicine and biology · 1977
- Beryllium exposure: dermal and immunological considerations.International archives of occupational and environmental health · 2006
- Beryllium revisited.Journal of occupational and environmental medicine · 1997
- Beryllium metal II. a review of the available toxicity data.The Annals of occupational hygiene · 2011
via PubMed
~41 min read
Encyclopedic overview
32 sectionsContents
- Characteristics
- Physical properties
- Nuclear properties
- Optical properties
- Isotopes and nucleosynthesis
- Occurrence
- Extraction
- Chemical properties
- Aqueous solutions
- Organic chemistry
- History
- Etymology
- Applications
- Radiation windows
- Mechanical applications
- Alloys
- Mirrors
- Magnetic applications
- Nuclear applications
- Acoustics
- Electronics
- Medical applications
- Toxicity and safety
- Biological effects
- Inhalation
- Occupational exposure
- Detection
- Notes
- References
- Cited sources
- Further reading
- External links
Beryllium is a chemical element; it has symbol Be and atomic number 4. It is a steel-gray, hard, strong, lightweight and brittle alkaline earth metal. It is a divalent element that occurs naturally only in combination with other elements to form minerals. Gemstones high in beryllium include beryl (aquamarine, emerald, red beryl) and chrysoberyl. It is a relatively rare element in the universe, usually occurring as a product of the spallation of larger atomic nuclei that have collided with cosmic rays. Within the cores of stars, beryllium is depleted as it is fused into heavier elements. Beryllium constitutes about 0.0004 percent by mass of Earth's crust. The world's annual beryllium production of 220 tons is usually manufactured by extraction from the mineral beryl, a difficult process because beryllium bonds strongly to oxygen.
In structural applications, the combination of high flexural rigidity, thermal stability, thermal conductivity and low density (1.85 times that of water) make beryllium a desirable aerospace material for aircraft components, missiles, spacecraft, and satellites. Because of its low density and atomic mass, beryllium is relatively transparent to X-rays and other forms of ionizing radiation; therefore, it is the most common window material for X-ray equipment and components of particle detectors. When added as an alloying element to aluminium, copper (notably the alloy beryllium copper), iron, or nickel, beryllium improves many physical properties. For example, tools and components made of beryllium copper alloys are strong and hard and do not create sparks when they strike a steel surface. In air, the surface of beryllium oxidizes readily at room temperature to form a passivation layer 1–10 nm thick that protects it from further oxidation and corrosion. The metal oxidizes in bulk (beyond the passivation layer) when heated above , and burns brilliantly when heated to about .
Excerpted from Wikipedia’s “beryllium” article, available under the CC BY-SA 4.0 licence.
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