powered by CADENAS

Social Share

Pseudo palladium (9218 views - Material Database)

Pseudo palladium (RhAg) is a binary alloy consisting of equal parts of rhodium (atomic number 45) and silver (atomic number 47) created using nanotechnology to create a far more homogenous mixture than might be possible using more conventional methods. This alloy exhibits properties of the intervening element palladium (atomic number 46).
Go to Article

Pseudo palladium

Pseudo palladium

Pseudo palladium

Pseudo palladium (RhAg) is a binary alloy consisting of equal parts of rhodium (atomic number 45) and silver (atomic number 47) created using nanotechnology to create a far more homogenous mixture than might be possible using more conventional methods. This alloy exhibits properties of the intervening element palladium (atomic number 46).

History

The production of this alloy was first reported by Kyoto University Professor Hiroshi Kitagawa and his research team, October 27, 2010.[1] To make the new alloy, the Kyoto team used nanotechnology to "nebulise" the rhodium and silver and gradually mixed them with heated alcohol, with the two metals mixed stably at the atomic level. The same team also produced alternatives to other kinds of rare metals.[2]

Characteristics

The new alloy has similar properties to palladium, which is used as a catalyst to cleanse exhaust gas and absorbs large quantities of hydrogen.

Rhodium, palladium and silver have 45, 46 and 47 electrons, respectively, numbers that determine their chemical characterizations.

"The orbits of the electrons in the rhodium and silver atoms probably got jumbled up and formed the same orbits as those of palladium," Kitagawa said.[3]

Applications

The alloy has similar properties to palladium, which is used in cars' emission-reducing catalytic converters as well as in computers, mobile phones, flatscreen TVs and dentistry instruments.

Hydrogen storage is cited as one potential use, however, according to researchers, the pseudo palladium alloy has only one half of palladium's hydrogen storage capacity.[4]

See also


41xx steelAL-6XNAlGaAlloy 20AlnicoAlumelAlluminioLeghe di alluminioCupralluminiAl-LiAmalgamaBronzo arsenicaleRame arsenicaleBell metalBerillioBeryllium copperBiglioneBirmabrightBismanolBismutoOttone (lega)BrightrayBronzoBulat steelCalamine brassGhisaCelestriumChinese silverChromelCromoChromium hydrideCobaltoColored goldCostantanaRameCopper hydrideCopper–tungstenCorinthian bronzeCrown goldCrucible steelCunifeCupronichelCymbal alloysAcciaio DamascoLega di DevardaDuralluminioDutch metalElectrical steelElettroElektronElinvarFernicoFerrolegaFerroceriumFerrochromeFerromanganeseFerromolybdenumFerrosiliconFerrotitanioFerrouraniumField's metalFlorentine bronzeGalfenolGalinstanoGallio (elemento chimico)Gilding metalVetroGlucydurOroGuanín (bronze)GunmetalHaynes InternationalHepatizonHiduminiumAcciaio super rapidoHigh-strength low-alloy steelHydronaliumInconelIndioInvarFerroIron–hydrogen alloyItalmaKanthal (alloy)KovarPiomboLitioMagnaliumMagnesioMagnoxMangalloyManganinaAcciaio MaragingAISI 316Martensitic stainless steelMegalliumMelchior (alloy)MercuryMischmetalMolybdochalkosMonelMu-metalMuntz metalMushet steelNichromeNichelNickel hydrideAlpaccaNitinolNicrosilNisilOro nordicoOrmoluPermalloyPhosphor bronzePig ironPrincisbeccoMaterie plastichePlexiglasPlutonioPlutonium–gallium alloyPotassioReynolds 531RhoditeRodioRose's metalSamarioSanicro 28ScandioShakudōArgentoSilver steelSodioNaKSolderSpeculum metalSpiegeleisenAcciaio armonicoStaballoyAcciaio inossidabileAcciaioStelliteAcciaio strutturaleSupermalloyAcciaio chirurgicoTerneStagno (elemento chimico)TitanioTombacTool steelTumbagaLega tipograficaUranioVitalliumAcciaio CortenWood's metalWootz steelY alloyZeron 100ZincoZirconioTerfenol-DScandium hydrideSamarium–cobalt magnetArgentium sterling silverBritannia silverDoré bullionGoloidPlatinum sterlingShibuichiArgento sterlingArgento tibetanoTitanium Beta CTitanium alloyIdruro di titanioGum metalTitanium goldNitruro di titanioBabbitt (alloy)Britannia metalPeltroQueen's metalMetallo biancoIdruro di uranioZamakZirconium hydrideIdrogenoElioBoroAzotoOssigenoFluoroMetanoMezzanino (architettura)Atomo

This article uses material from the Wikipedia article "", which is released under the Creative Commons Attribution-Share-Alike License 3.0. There is a list of all authors in Wikipedia

Material Database

database,rohs,reach,compliancy,directory,listing,information,substance,material,restrictions,data sheet,specification