Colossal negative thermal expansion in BiNiO3 induced by intermetallic charge transfer.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 21673668.
- Also identified by DOI 10.1038/ncomms1361 and PMC identifier 3156814.
- Licence recorded as CC BY-NC-SA.
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Abstract
The unusual property of negative thermal expansion is of fundamental interest and may be used to fabricate composites with zero or other controlled thermal expansion values. Here we report that colossal negative thermal expansion (defined as linear expansion <-10(-4) K(-1) over a temperature range ~100 K) is accessible in perovskite oxides showing charge-transfer transitions. BiNiO(3) shows a 2.6% volume reduction under pressure due to a Bi/Ni charge transfer that is shifted to ambient pressure through lanthanum substitution for Bi. Changing proportions of coexisting low- and high-temperature phases leads to smooth volume shrinkage on heating. The crystallographic linear expansion coefficient for Bi(0.95)La(0.05)NiO(3) is -137×10(-6) K(-1) and a value of -82×10(-6) K(-1) is observed between 320 and 380 K from a dilatometric measurement on a ceramic pellet. Colossal negative thermal expansion materials operating at ambient conditions may also be accessible through metal-insulator transitions driven by other phenomena such as ferroelectric orders.
Medical subject headings
- Bismuth
- Molecular Conformation
- Nickel
- Temperature