What is Praseodymium?
Praseodymium (symbol Pr) is element 59 on the periodic table, a lanthanide in period 6. A rare earth that colours welder's goggles and, alloyed with neodymium, makes formidable magnets. 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 praseodymium 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 182 pm — that is 0.182 nm, so about 2747 million of them side by side would span a millimetre.
Thermal range
Praseodymium is liquid over a 2585 K window, from 1208 K to 3793 K.
The story
A rare earth that colours welder's goggles and, alloyed with neodymium, makes formidable magnets.
Carl Auer von Welsbach, an Austrian chemist and inventor, was studying didymium - a supposed element that had puzzled scientists for decades. Using the newly developed technique of fractional crystallization, he suspected didymium was not a single element.
Through painstaking crystallization experiments, Welsbach successfully separated didymium into two distinct elements. The process required hundreds of recrystallizations and took months to complete.
Welsbach named one element "praseodymium" from the Greek words "prasios" (green) and "didymos" (twin), referring to its green salts and its twin relationship with neodymium, which he discovered simultaneously.
For over 40 years, scientists had been studying "didymium," thinking it was a single element. The mystery began in 1841 when Carl Mosander first separated it from cerium. The breakthrough came when Welsbach applied systematic spectroscopy to study the supposed element's properties.
"The spectroscope revealed lines that could not belong to a single element - the puzzle of didymium was finally solved."
— Carl Auer von Welsbach, 1885
Carl Auer von Welsbach was not just a discoverer but an inventor whose work changed daily life:
Welsbach's separation of praseodymium and neodymium proved that careful analytical chemistry could reveal hidden complexity in nature. His techniques became the foundation for separating all the rare earth elements.
Though Welsbach received numerous honors during his lifetime, including being made a baron by the Austrian Emperor, his contributions to rare earth chemistry are often overlooked. Modern high-tech industries owe their existence to his fundamental discoveries.
Applications
Praseodymium is the "color master" of the rare earth family, producing the most vibrant green colors in materials science. Its unique electronic structure makes it invaluable in optical and magnetic applications.
Praseodymium yellow-green is one of the most stable and vibrant colorants known to science. Unlike organic dyes that fade, praseodymium maintains its brilliant color for centuries. It's used in:
Praseodymium is crucial in manufacturing the world's strongest permanent magnets:
Praseodymium's unique optical properties make it essential for:
Praseodymium prices are highly volatile due to limited supply and growing demand from the electric vehicle industry. A typical electric car requires 200-600 grams of praseodymium in its various components.
Where it comes from
9.2 mg/kg of Earth's crust · more abundant than 68% of elements
Praseodymium is one of the rarer rare earth elements, making up only about 5% of all lanthanide content in ore deposits. Despite being "rare," it's still more abundant than silver or mercury.
Chemical formula: (Ce,La,Pr,Nd)CO₃F
Pr content: 4-6%
Major source: Mountain Pass (USA), Bayan Obo (China)
Chemical formula: (Ce,La,Nd,Th)PO₄
Pr content: 3-5%
Found in: Beach sand deposits, placer mines
Chemical formula: YPO₄ (with Pr substitution)
Pr content: 1-3%
Specialty source: Heavy mineral sands
Praseodymium forms in carbonatite complexes and alkaline igneous intrusions through extreme magmatic differentiation. The element concentrates during late-stage crystallization processes, often associated with fluorine-rich fluids.
Recycling efficiency is low (5-10%) but improving rapidly due to rising prices and supply concerns.
Praseodymium faces significant supply chain vulnerabilities due to geographic concentration of production and the technical difficulty of separation from other rare earth elements. Processing requires sophisticated chemical separation techniques.
Handling
Praseodymium compounds require careful handling due to respiratory and skin sensitization risks, plus fire hazards with the metal form.
Praseodymium Metal: Highly pyrophoric when finely divided.
Use class D extinguisher or dry sand. Evacuate area. Never use water - causes violent reaction.
Remove to fresh air immediately. Monitor for delayed respiratory effects. Seek medical attention.
Flush with clean water for 15 minutes. Hold eyelids open. Remove contacts if safe to do so.
Wash thoroughly with soap and water. Remove contaminated clothing immediately.
Ecotoxicity: Praseodymium compounds can be toxic to aquatic life. Prevent release to waterways and soil. Dispose through licensed hazardous waste facilities only.
Quick answers
Praseodymium (symbol Pr) is element 59 on the periodic table, a lanthanide in period 6. A rare earth that colours welder's goggles and, alloyed with neodymium, makes formidable magnets. At room temperature it is a solid.
[Xe] 4f³ 6s², giving 6 occupied shells holding 2, 8, 18, 21, 8, 2 electrons respectively.Praseodymium melts at 1208 K (934.9 °C) and boils at 3793 K (3519.9 °C).
The standard atomic weight of Praseodymium is 140.908 u. That is a weighted average across its naturally occurring isotopes, which is why it is rarely a whole number.
Praseodymium has a density of 6.77 g/cm³. Water is 1.0 g/cm³, so a block of praseodymium is about 6.8× heavier.
Praseodymium has a Pauling electronegativity of 1.13. 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.
Praseodymium was discovered in 1885 by Carl Auer von Welsbach. It is named after greek prasios didymos, "green twin".
Praseodymium makes up about 9.2 mg/kg of the Earth's crust — uncommon, but not rare.