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Platinum

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78 iridiumplatinumgold
Pd

Pt

Ds
General
Name, Symbol, Number platinum, Pt, 78
Element category transition metals
Group, Period, Block 10, 6, d
Appearance grayish white
Standard atomic weight 195.084(9)  g·mol−1
Electron configuration [Xe] 4f14 5d9 6s1
Electrons per shell 2, 8, 18, 32, 17, 1
Physical properties
Phase solid
Density (near r.t.) 21.45  g·cm−3
Liquid density at m.p. 19.77  g·cm−3
Melting point 2041.4 K
(1768.3 °C, 3214.9 °F)
Boiling point 4098 K
(3825 °C, 6917 °F)
Heat of fusion 22.17  kJ·mol−1
Heat of vaporization 469  kJ·mol−1
Specific heat capacity (25 °C) 25.86  J·mol−1·K−1
Vapor pressure
P(Pa) 1 10 100 1 k 10 k 100 k
at T(K) 2330 (2550) 2815 3143 3556 4094
Atomic properties
Crystal structure cubic face centered
Oxidation states 1, 2, 3, 4, 5, 6
(mildly basic oxide)
Electronegativity 2.28 (Pauling scale)
Ionization energies 1st: 870 kJ/mol
2nd: 1791 kJ/mol
Atomic radius 135  pm
Atomic radius (calc.) 177  pm
Covalent radius 128  pm
Van der Waals radius 175 pm
Miscellaneous
Magnetic ordering paramagnetic
Electrical resistivity (20 °C) 105 n Ω·m
Thermal conductivity (300 K) 71.6  W·m−1·K−1
Thermal expansion (25 °C) 8.8  µm·m−1·K−1
Speed of sound (thin rod) (r.t.) 2800  m·s−1
Young's modulus 168  GPa
Shear modulus 61  GPa
Bulk modulus 230  GPa
Poisson ratio 0.38
Mohs hardness 4–4.5
Vickers hardness 549  MPa
Brinell hardness 392  MPa
CAS registry number 7440-06-4
Selected isotopes
Main article: Isotopes of platinum
iso NA half-life DM DE (MeV) DP
190Pt 0.014% 6.5×1011 y α 3.18 186Os
191Pt syn 2.76 d ε  ? 191Ir
192Pt 0.782% 192Pt is stable with 114 neutrons
190Pt syn 50 y ε  ? 193Ir
181mPt syn 4.33 d IT 0.1355e 193Pt
194Pt 32.967% 194Pt is stable with 116 neutrons
195Pt 33.832% 195Pt is stable with 117 neutrons
195mPt syn 4.02 d IT 0.1297e 195Pt
196Pt 25.242% 196Pt is stable with 118 neutrons
197Pt syn 19.8913 h β- 0.719 197Au
197mPt syn 1.59 h IT 0.3465 197Pt
198Pt 7.163% 198Pt is stable with 120 neutrons
References

Platinum (pronounced /ˈplætɪnəm/) is a chemical element with the atomic symbol Pt and an atomic number of 78. It is in group 10 of the Periodic Table of Elements. A heavy, malleable, ductile, precious, gray-white transition metal, platinum is resistant to corrosion and occurs in some nickel and copper ores along with some native deposits. Platinum is used in jewelry, laboratory equipment, electrical contacts, dentistry, and automobile emissions control devices. Platinum bullion has the ISO currency code of XPT. As of June 24, 2008, Platinum was worth $2,032 per troy ounce (approximately $65 per gram).[1]

Contents

[edit] Characteristics

When pure, the metal appears greyish-white and firm. The metal is corrosion-resistant. The catalytic properties of the six platinum family metals are outstanding. For this catalytic property, platinum is used in catalytic converters, incorporated in automobile exhaust systems, as well as tips of spark plugs. Platinum has a cubic crystal structure.

Platinum's wear- and tarnish-resistance characteristics are well suited for making fine jewelry. Platinum is more precious than gold. The price of platinum changes along with its availability, but its price is normally more than twice the price of gold. In the 18th century, platinum's rarity made King Louis XV of France declare it the only metal fit for a king.[2] Platinum possesses high resistance to chemical attack, excellent high-temperature characteristics, and stable electrical properties. All these properties have been exploited for industrial applications. Platinum does not generally oxidize in air at any temperature, but can be corroded by cyanides, halogens, sulfur, and caustic alkalis. This metal is insoluble in hydrochloric and nitric acid, but does dissolve in the mixture known as aqua regia (forming chloroplatinic acid). When crude platinum is dissolved in aqua regia, gold is removed from the solution as a precipitate by treatment with iron(II) chloride (FeCl2). The platinum is precipitated out as impure (NH4)2PtCl6 on treatment with ammonium chloride (NH4Cl), leaving H2PdCl4 in solution.

Common oxidation states of platinum include +2, and +4. The +1 and +3 oxidation states are less common, and are often stabilized by metal bonding in bimetallic (or polymetallic) species.

[edit] Applications

  • As a catalyst in the catalytic converter, an optional (though often mandatory by law) component of the gasoline-fueled automobile exhaust system (see "Notable characteristics" in this article).
  • As a catalyst in fuel cells. Reducing the amount of platinum required (and thus cost) is a major focus of fuel cell research.
  • Certain platinum-containing compounds are capable of crosslinking DNA and kill cells by similar pathways to alkylating chemotherapeutic agents. Cisplatin, carboplatin and oxaliplatin are licensed examples of this class of drugs.[3]
  • Platinum resistance thermometers.
  • Electrodes for use in electrolysis and electrochemical measurements (e.g., the standard hydrogen electrode).
  • In the Clark polarographic electrode for measuring oxygen tension.
  • A wide range of jewelry.
  • As a catalyst in the curing of silicone elastomers.
  • As a catalyst in glow plugs in some model engines.
  • In crucibles, alloyed with rhodium (10–40% of Rh), for high temperature melting (around 1500°C) of glass.
  • In photography, it is sometimes used for archival printmaking. Platinum prints display a greater range of tones than other Black and White printing methods. Additionally platinum's chemical stability makes for extremely long-lasting prints. The disadvantage of this method, in addition to the high cost, is that platinum is less light sensitive and prints must be contact printed at the same size as the negative. Therefore, enlargements can only be made by making an enlarged negative. Platinum salts alone generally create excessive contrast in prints; combined with salts from its sister metal, palladium, produce warmer and softer tones, without diminishing the tonal range platinum enables.
  • In watchmaking, Vacheron Constantin, Patek Philippe, Rolex, Breitling and other companies use platinum for producing their limited edition watch series. Watchmakers highly appreciate the unique properties of platinum as it neither tarnishes nor wears out.[4]

[edit] History

Naturally-occurring platinum and platinum-rich alloys have been known for a long time. Though the metal was used by pre-Columbian Native Americans, the first European reference to platinum appears in 1557 in the writings of the Italian humanist Julius Caesar Scaliger (1484–1558) as a description of a mysterious metal found in Central American mines between Darién (Panama) and Mexico ("up until now impossible to melt by any of the Spanish arts"). The word platinum comes from the Spanish word platina, meaning "little silver."

The alchemical symbol for platinum (shown above) was made by joining the symbols of silver and gold.
The alchemical symbol for platinum (shown above) was made by joining the symbols of silver and gold.

Platinum was discussed by astronomer Antonio de Ulloa and Don Jorge Juan y Santacilia (1713–1773), both appointed by King Philip V to join a geographical expedition in Peru that lasted from 1735 to 1745. Amongst other things, Ulloa observed the platina del pinto, the unworkable metal found with gold in New Granada (Colombia). British privateers intercepted Ulloa's ship on the return voyage. Though he was well-treated in England, and even made a member of the Royal Society he was prevented from publishing a reference to the unknown metal until 1748. Before that could happen Charles Wood independently isolated the element in 1741. Major finds were discovered in Russia in 1819, which produced around 90% of the global Platinum production at the turn of the 20th century.[5]

Due to its rarity, greater difficulty to work with and the need to alloy it with (at the time) an even more expensive metal iridium, platinum was only used in a limited way in jewelry at the end of the 19th century. This changed at beginning of the 20th century when most diamond ring mountings and most exclusive jewelry were almost completely made of platinum.[5] From 1875 to 1960 the SI unit of length (the standard metre) was defined as the distance between two lines on a standard bar of an alloy of ninety percent platinum and ten percent iridium, measured at 0 degrees Celsius.

[edit] Occurrence

Platinum ore
Platinum ore
Platinum output in 2005
Platinum output in 2005

Platinum is an extremely rare metal, occurring as only 0.003 ppb in the Earth's crust, and is 30 times rarer than gold. If all the world's platinum reserves were poured into one Olympic-size swimming pool, it would be just deep enough to cover one's ankles. Gold would fill more than three such pools.[6]

In 2005, South Africa was the top producer of platinum with an almost 80% share followed by Russia and Canada, reports the British Geological Survey.[7]

Platinum is often found chemically uncombined as native platinum and alloyed with iridium as platiniridium. The platinum arsenide, sperrylite (PtAs2), is a major source of platinum associated with nickel ores in the Sudbury Basin deposit in Ontario, Canada. The rare sulfide mineral cooperite, (Pt,Pd,Ni)S, contains platinum along with palladium and nickel. Cooperite occurs in the Merensky Reef within the Bushveld complex, Gauteng, South Africa.

Platinum, often accompanied by small amounts of other platinum family metals, occurs in alluvial placer deposits in the Witwatersrand of South Africa, the Ural Mountains, and in the Absaroka Range in the American state of Montana.[8]

Platinum is produced commercially as a by-product of nickel ore processing in the Sudbury deposit. The huge quantities of nickel ore processed makes up for the fact that platinum is present as only 0.5 ppm in the ore.

Platinum exists in relatively higher abundances on the Moon and in meteorites. Correspondingly, platinum is found in slightly higher abundances at sites of bolide impact on the Earth that are associated with resulting post-impact volcanism, and can be mined economically; the Sudbury Basin is one such example.

[edit] Production and price

1000 cubic centimetres of 99.9% pure platinum
1000 cubic centimetres of 99.9% pure platinum
Average price of platinum from 1991 to 2007 in US$ per troy ounce (~$40/g).
Average price of platinum from 1991 to 2007 in US$ per troy ounce (~$40/g).[9]

In order to obtain pure platinum, the ore is crushed, made into a slurry with water, and then mixed with a detergent containing "collector" molecules. Air is then blown through the mixture, enabling the grains of metal minerals to be separated from the rest of the mixture. This process is called "flotation." The next step is smelting.

In 2007, global supplies of 6.55 million ounces were more than matched by demand of 7.03 million ounces.[10]

In 2006, world supply of platinum was of about 217,700 kg or 7 million troy ounces.[11][12]

[edit] Precautions

According to the Centers for Disease Control and Prevention, short-term exposure to platinum salts "may cause irritation of the eyes, nose, and throat" and long-term exposure "may cause both respiratory and skin allergies." The current OSHA standard is 0.002 milligram per cubic meter of air averaged over an 8-hour work shift.[13]

Certain platinum complexes are used in chemotherapy and show good anti-tumor activity for some tumours. Cisplatin is particularly effective against testicular cancer; cure rate was improved from 10% to 85%.[14] However, the side effects are severe. Cisplatin causes cumulative, irreversible kidney damage and deafness.[15]. As with other ototoxic agents, deafness may be secondary to interactions with melanin in the stria vascularis.

As platinum is a catalyst in the manufacture of the silicone rubber and gel components of several types of medical implants (breast implants, joint replacement prosthetics, artificial lumbar discs, vascular access ports), the possibility that platinum free radicals could enter the body and cause adverse effects has merited study. The FDA and other countries have reviewed the issue and found no evidence to suggest toxicity in vivo.[16]

[edit] Symbol of prestige

An assortment of native platinum nuggets
An assortment of native platinum nuggets

Platinum's rarity as a metal has caused advertisers to associate it with exclusivity and wealth. "Platinum" credit cards have greater privileges than do "gold" ones. "Platinum awards" are the second highest possible, ranking above gold, silver and bronze, but below "Diamond". For example, in the United States a musical album that has sold more than 1,000,000 copies, will be credited as "platinum", whereas an album that sold more than 10,000,000 copies will be certified as “diamond”. And some products, such as blenders and vehicles, with a silvery-white color are identified as "platinum". Platinum is considered a precious metal, although its use is not as common as the use of gold or silver. The frame of the Crown of Queen Elizabeth the Queen Mother, manufactured for her Coronation as Consort of King George VI, is made of platinum. It was the first British crown to be made of this particular metal.

[edit] See also

[edit] References

  1. ^ "Live Market Quotes". Kitco. Retrieved on 2008-06-24.
  2. ^ "Platinum". Minerals Zone. Retrieved on 2007-04-05.
  3. ^ Richards, A.D. & Rodger, A. (2007). Synthetic metallomolecules as agents for the control of DNA structure Chem. Soc. Rev. 36 471–483.
  4. ^ Unknown Facts about Platinum
  5. ^ a b Smith, Marcell (1913). Diamonds, Pearls and Precious Stones (for the trade). Boston, Grifftih-Stillings Press. , pages 39-40
  6. ^ "Platinum: Pure, Rare, Eternal.". Retrieved on 2007-10-27.
  7. ^ "PLATINUM-GROUP METALS" (PDF). U.S. Geological Survey, Mineral Commodity Summaries (January 2007). Retrieved on 2007-08-19.
  8. ^ "Mining Platinum in Montana". Retrieved on December 2007.
  9. ^ [1] London Platinum and Palladium Market
  10. ^ Platinum Today
  11. ^ Johnson Matthey 2006 supply and demand charts
  12. ^ "Green curbs hit platinum supply", BBC News (May 20, 2002). Retrieved on 2007-08-19. 
  13. ^ "Occupational Health Guideline for Soluble Platinum Salts (as Platinum)" (PDF). Centers for Disease Control and Prevention. Retrieved on 2007-08-19.
  14. ^ Einhorn LH. (1990). "Treatment of testicular cancer: a new and improved model". J. Clin. Oncol. 8 (11): 1777–81. PMID 1700077. 
  15. ^ Von Hoff DD, et al (1979). "Toxic effects of cis-dichlorodiammineplatinum(II) in man". Cancer Treat. Rep. 63 (9–10): 1527–31. 
  16. ^ "FDA Backgrounder on Platinum in Silicone Breast Implants". U.S. Food and Drug Administration. Retrieved on 2007-08-19.

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