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HIGHLY SINTERABLE LANTHANUM STRONTIUM TITANATE INTERCONNECTS THROUGH DOPING
An interconnect material is formed by combining a lanthanum-doped strontium titanate with an aliovalent transition metal to form a precursor composition and sintering the precursor composition to form the interconnect material. The aliovalent transition metal can be an electron-acceptor dopant, such as manganese, cobalt, nickel or iron, or the aliovalent transition metal can be an electron-donor dopant, such as niobium or tungsten. A solid oxide fuel cell, or a strontium titanate varistor, or a strontium titanate capacitor can include the interconnect material that includes a lanthanum-doped strontium titanate that is further doped with an aliovalent transition metal.
HIGHLY SINTERABLE LANTHANUM STRONTIUM TITANATE INTERCONNECTS THROUGH DOPING
An interconnect material is formed by combining a lanthanum-doped strontium titanate with an aliovalent transition metal to form a precursor composition and sintering the precursor composition to form the interconnect material. The aliovalent transition metal can be an electron-acceptor dopant, such as manganese, cobalt, nickel or iron, or the aliovalent transition metal can be an electron-donor dopant, such as niobium or tungsten. A solid oxide fuel cell, or a strontium titanate varistor, or a strontium titanate capacitor can include the interconnect material that includes a lanthanum-doped strontium titanate that is further doped with an aliovalent transition metal.
HIGHLY SINTERABLE LANTHANUM STRONTIUM TITANATE INTERCONNECTS THROUGH DOPING
HOCH SINTERBARE LANTHAN-STRONTIUM-TITANAT-VERBINDUNGEN DURCH DOTIERUNG
INTERCONNEXION EN TITANATE DE LANTHANE ET DE STRONTIUM HAUTEMENT FRITTABLE PAR DOPAGE
MOHANRAM ARAVIND (Autor:in) / NARENDAR YESHWANTH (Autor:in) / LIN GUANGYONG (Autor:in)
02.05.2018
Patent
Elektronische Ressource
Englisch
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