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title:(Infiltrated AND SrTiO<sub>3</sub>\:FeCr-based AND anodes AND for AND metalsupported AND SOFC)

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1 Conference paper

Infiltrated SrTiO3:FeCr-based anodes for metalsupported SOFC

electronically conducting layers, into which electrocatalytically active materials are infiltrated after sintering. This paper presents the first results on single cell testing of 25 cm2 cells with 16 cm2 active area of a metal-supported SOFC were the anode backbone consists of a composite of Nbdoped SrTiO3 (STN

Year: 2012

Language: English

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2 Conference paper

Infiltrated SrTiO3:FeCr-based anodes for metalsupported SOFC

electronically conducting layers, into which electrocatalytically active materials are infiltrated after sintering. This paper presents the first results on single cell testing of 25 cm2 cells with 16 cm2 active area of a metal-supported SOFC were the anode backbone consists of a composite of Nbdoped SrTiO3 (STN

Year: 2012

Language: English

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3 Journal article

Infiltrated SrTiO3:FeCr‐based Anodes for Metal‐Supported SOFC

The concept of using electronically conducting anode backbones with subsequent infiltration of electrocatalytic active materials has been used to develop an alternative solid oxide fuel cell (SOFC) design based on a ferritic stainless steel support. The anode backbone consists of a composite made of Nb‐doped SrTiO3 (STN) and FeCr stainless steel. A number of different experimental routes and analysis techniques have been used to evaluate the microstructural and chemical changes occurring in the composite anode layer during electrochemical testing at intermediate temperatures (650 °C). STN a...

Year: 2013

Language: English

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