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lead
Sign in to saveAlso known as Pb, element 82
Lead () is a chemical element with the symbol Pb (from the Latin ) and atomic number 82. It is a heavy metal, denser than most common materials. Lead is soft, malleable, and has a relatively low melting point. When freshly cut or melted, it appears shiny silvery with a bluish tint, but tarnishes to dull gray on exposure to air. Lead has the highest atomic number of any stable element, and three of its isotopes are endpoints of major nuclear decay chains of heavier elements.
Lead is a heavy metal element (symbol Pb) that is soft, malleable, and has a relatively low melting point, appearing silvery-blue when freshly cut but tarnishing to gray in air. It matters scientifically because it has the highest atomic number of any stable element and serves as the endpoint of major nuclear decay chains from heavier elements.
AI-generated from the Wikipedia summary — may contain errors.
Chemical data
- Formula
- Pb
- Molecular weight
- 207 g/mol
- IUPAC name
- lead
- SMILES
- [Pb]
- InChIKey
- WABPQHHGFIMREM-UHFFFAOYSA-N
- Polar surface area
- 0 Ų
- H-bond donors
- 0
- H-bond acceptors
- 0
- Formal charge
- 0
via PubChem
Research
962,367 papers- Lead poisoning.ReviewAustralian family physician · 1993Campbell B
- Lead poisoning.ReviewPediatrics in review · 2000Markowitz MDOI: 10.1542/pir.21-10-327
- Sources of lead exposure in various countries.ReviewReviews on environmental health · 2019Obeng-Gyasi EDOI: 10.1515/reveh-2018-0037
- Lead.ReviewClinics in laboratory medicine · 1990Gerson B
- Lead-interacting proteins and their implication in lead poisoning.ReviewCritical reviews in toxicology · 2018de Souza ID, de Andrade AS, Dalmolin RJSDOI: 10.1080/10408444.2018.1429387
- Perspectives on lead toxicity.ReviewClinical biochemistry · 1993Lockitch GDOI: 10.1016/0009-9120(93)90113-k
- Lead poisoning: Clinical and laboratory considerations.Advances in clinical chemistry · 2023Bunch D, Pyle-Eilola ALDOI: 10.1016/bs.acc.2023.08.001
- Biomarkers of lead exposure.ReviewIndustrial health · 2000Sakai TDOI: 10.2486/indhealth.38.127
via PubMed
Wikidata facts
- Mass
- 207.2
- Image
- Lead-2.jpg
Show 18 more facts
- melting point
- 328
- atomic number
- 82
- element symbol
- Pb
- Commons category
- Lead
- NIOSH Pocket Guide ID
- 0368
- density
- 11.34
- immediately dangerous to life or health
- 100
- Commons gallery
- Lead
- boiling point
- 1740
- vapor pressure
- 0
- time-weighted average exposure limit
- 0.05
- electronegativity
- 2
- standard molar entropy
- 64.8
- chemical formula
- Pb
- canonical SMILES
- [Pb]
- Unicode character
- 鉛
- ionic radius
- 0.94
Sources (8)
via Wikidata · CC0
~57 min read
Article
43 sectionsContents
- Physical properties
- Atomic
- Bulk
- Isotopes
- Chemistry
- Inorganic compounds
- Lead(II)
- Lead(IV)
- Other oxidation states
- Organolead
- Origin and occurrence
- In space
- On Earth
- Etymology
- History
- Production
- Primary
- Two-stage process
- Direct process
- Alternatives
- Secondary
- Applications
- Elemental form
- Batteries
- Coating for cables
- Compounds
- Historical Preservation
- Biological effects
- Toxicity
- Effects
- Exposure sources
- Lead in foods
- Lead in plastic toys
- Treatment
- Disease burden
- Environmental effects
- Restriction and remediation
- See also
- Notes
- References
- Bibliography
- Further reading
- External links
Lead () is a chemical element with the symbol Pb (from the Latin ) and atomic number 82. It is a heavy metal, denser than most common materials. Lead is soft, malleable, and has a relatively low melting point. When freshly cut or melted, it appears shiny silvery with a bluish tint, but tarnishes to dull gray on exposure to air. Lead has the highest atomic number of any stable element, and three of its isotopes are endpoints of major nuclear decay chains of heavier elements.
Lead is a relatively unreactive post-transition metal. Its weak metallic character is shown by its amphoteric behavior: lead and lead oxides react with both acids and bases, and it tends to form covalent bonds. Lead compounds usually occur in the +2 oxidation state rather than the +4 state common in lighter members of the carbon group, with exceptions mostly limited to organolead compounds. Like the lighter members of the group, lead can bond with itself, forming chains and polyhedral structures.
Gallery (53)
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