Synthesis, structures and properties of transition metal doped SrIrO3
dc.contributor.author | Qasim, I | en_AU |
dc.contributor.author | Kennedy, BJ | en_AU |
dc.contributor.author | Avdeev, M | en_AU |
dc.date.accessioned | 2013-03-12T00:17:28Z | en_AU |
dc.date.available | 2013-03-12T00:17:28Z | en_AU |
dc.date.issued | 2013-01-10 | en_AU |
dc.date.statistics | 2013-03-12 | en_AU |
dc.description.abstract | The synthesis of some transition metal SrIr1-xMxO3 type oxides is described. These have an orthorhombic perovskite type-structure and are only found when the formal oxidation state of the Ir is approximately equal to +4.5 and for M = Fe, Co, Ni and Zn. Occupancy of the TM eg type orbitals appears to contribute to the break-down of the dimeric motif seen in the 6H-SrIrO3 structure. Variable temperature resistivity measurements show that SrIr0.8Zn0.2O3 is a metal; SrIr0.8Ni0.2O3 an non-metal and SrIr0.8Co0.2O3 undergoes a temperature dependent metal-insulator transition. © 2013, Royal Society of Chemistry | en_AU |
dc.identifier.citation | Qasim, I., Kennedy, B. J., & Avdeev, M. (2013). Synthesis, structures and properties of transition metal doped SrIrO3. Journal of Materials Chemistry A, 1(9), 3127-3132. doi:10.1039/C3TA00540B | en_AU |
dc.identifier.govdoc | 4897 | en_AU |
dc.identifier.issn | 2050-7488 | en_AU |
dc.identifier.issue | 9 | en_AU |
dc.identifier.journaltitle | Journal of Materials Chemistry A | en_AU |
dc.identifier.pagination | 3127-3132 | en_AU |
dc.identifier.uri | http://dx.doi.org/10.1039/C3TA00540B | en_AU |
dc.identifier.uri | http://apo.ansto.gov.au/dspace/handle/10238/4515 | en_AU |
dc.identifier.volume | 1 | en_AU |
dc.language.iso | en | en_AU |
dc.publisher | Royal Society of Chemistry | en_AU |
dc.subject | Oxides | en_AU |
dc.subject | Powders | en_AU |
dc.subject | Perovskites | en_AU |
dc.subject | Iron | en_AU |
dc.subject | Cobalt | en_AU |
dc.subject | Nickel | en_AU |
dc.title | Synthesis, structures and properties of transition metal doped SrIrO3 | en_AU |
dc.type | Journal Article | en_AU |
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