What is Lanthanum?
Lanthanum (symbol La) is element 57 on the periodic table, a lanthanide in period 6. The first lanthanide and the element that hid inside cerium for 36 years before anyone noticed. At room temperature it is a solid.
Structure
Not a diagram of dots on rings — a Monte-Carlo sample of the actual probability density |ψ|² for each occupied subshell. Drag to rotate. Blue and violet mark opposite signs of the wavefunction, which is what makes bonding possible.
Measured values
Every bar shows where lanthanum sits among all 118 elements for that property.
Sources: IUPAC 2021 standard atomic weights · CRC Handbook of Chemistry and Physics · NIST. Values marked ~ are predicted rather than measured.
Size, to scale
Radius 187 pm — that is 0.187 nm, so about 2674 million of them side by side would span a millimetre.
Thermal range
Lanthanum is liquid over a 2544 K window, from 1193 K to 3737 K.
The story
The first lanthanide and the element that hid inside cerium for 36 years before anyone noticed.
Carl Gustav Mosander, a Swedish chemist and student of the great Jöns Jakob Berzelius, was studying cerium nitrate when he noticed something peculiar. The supposedly pure cerium exhibited properties that didn't quite match what was expected.
Through meticulous fractional crystallization - a painstaking process of repeatedly dissolving and recrystallizing compounds - Mosander managed to separate what he thought was pure cerium into two distinct substances.
Mosander named the new element "lanthanum" from the Greek word "lanthanein," meaning "to lie hidden". This was incredibly prophetic - lanthanum had indeed been hiding in cerium samples for decades.
Mosander's discovery came during the golden age of elemental discovery. The same year (1839), he also discovered terbium and erbium. His systematic approach to separating rare earth elements laid the groundwork for understanding the entire lanthanide series.
"The elements seemed to multiply before our eyes, each separation revealing new complexities hidden within what we thought was simple."
— Contemporary description of rare earth element discoveries
Mosander's discovery of lanthanum was significant because it proved that even "well-known" elements could harbor hidden secrets. This discovery sparked a 70-year quest to separate and identify all the rare earth elements, fundamentally changing our understanding of atomic structure and periodicity.
Carl Mosander discovered more elements than any other scientist except for Glenn T. Seaborg. His methodical approach to rare earth separation influenced generations of chemists and established Sweden as a powerhouse in early elemental chemistry.
Applications
Lanthanum is the gateway element to the lanthanide series and plays crucial roles in modern technology. As a catalyst extraordinaire, lanthanum compounds are essential in petroleum refining, where they help crack heavy crude oil into gasoline and diesel fuel that powers our world.
High-end camera lenses contain lanthanum glass - up to 50% by weight. This special glass has an incredibly low dispersion, meaning it bends different colors of light by almost the same amount, eliminating the rainbow fringes (chromatic aberration) that plague cheaper lenses. When you see those crystal-clear, professional photographs, lanthanum is working behind the scenes.
Nickel-metal hydride (NiMH) batteries - found in hybrid cars like the Toyota Prius - rely on lanthanum-based alloys to store hydrogen. A typical hybrid car battery contains about 10-15 kg of lanthanum, making it one of the largest industrial uses of this rare earth element.
The "flint" in cigarette lighters is actually a mischmetal alloy containing 25-50% lanthanum. When struck, lanthanum creates the bright sparks that ignite the fuel. This same technology is used in welding electrodes and theatrical pyrotechnics.
Where it comes from
39 mg/kg of Earth's crust · more abundant than 77% of elements
Despite being called "rare earth," lanthanum is actually three times more abundant than lead in Earth's crust. The "rare" designation comes from the extreme difficulty of separating and purifying these elements from their natural state.
Chemical formula: (Ce,La)CO₃F
La content: 25-35%
Major deposits: Mountain Pass (California), Bayan Obo (China)
Chemical formula: (Ce,La,Nd,Th)PO₄
La content: 15-25%
Major deposits: Australia, India, Brazil, South Africa
Lanthanum forms through fractional crystallization in alkaline igneous rocks and carbonatites. It concentrates in late-stage magmatic processes and weathering products, often associated with fluorine and carbonate minerals.
Handling
Lanthanum and its compounds are generally considered moderately hazardous with specific precautions required for safe handling.
Inhalation Risk: Lanthanum dust can cause respiratory irritation and potential lung damage. Fine particles may cause pneumoconiosis (lung scarring) with prolonged exposure.
Move victim to fresh air immediately. If breathing difficulties persist, seek medical attention.
Flush with clean water for 15 minutes. Remove contact lenses if easily removable. Seek medical attention.
Wash affected area with soap and water. Remove contaminated clothing.
Rinse mouth with water. Do not induce vomiting. Seek immediate medical attention.
Lanthanum compounds should not be released into waterways as they can bioaccumulate in aquatic organisms. Dispose of waste through licensed hazardous waste facilities.
Quick answers
Lanthanum (symbol La) is element 57 on the periodic table, a lanthanide in period 6. The first lanthanide and the element that hid inside cerium for 36 years before anyone noticed. At room temperature it is a solid.
[Xe] 5d¹ 6s², giving 6 occupied shells holding 2, 8, 18, 18, 9, 2 electrons respectively.Lanthanum melts at 1193 K (919.9 °C) and boils at 3737 K (3463.9 °C).
The standard atomic weight of Lanthanum is 138.905 u. That is a weighted average across its naturally occurring isotopes, which is why it is rarely a whole number.
Lanthanum has a density of 6.162 g/cm³. Water is 1.0 g/cm³, so a block of lanthanum is about 6.2× heavier.
Lanthanum has a Pauling electronegativity of 1.1. The scale runs from 0.70 (francium, the least greedy for electrons) to 3.98 (fluorine, the most). A value this low means it readily gives its outer electrons away, forming positive ions.
Lanthanum was discovered in 1839 by Carl Gustav Mosander. It is named after greek lanthanein, "to lie hidden".
Lanthanum makes up about 39 mg/kg of the Earth's crust — uncommon, but not rare.