Giant uniaxial negative thermal expansion in FeZr2 alloy over a wide temperature range
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DOI: 10.1038/s41467-023-40074-7
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- Yuan Zhang & Bin Chen & Daqin Guan & Meigui Xu & Ran Ran & Meng Ni & Wei Zhou & Ryan O’Hayre & Zongping Shao, 2021. "Thermal-expansion offset for high-performance fuel cell cathodes," Nature, Nature, vol. 591(7849), pages 246-251, March.
- Chengyi Yu & Kun Lin & Suihe Jiang & Yili Cao & Wenjie Li & Yilin Wang & Yan Chen & Ke An & Li You & Kenichi Kato & Qiang Li & Jun Chen & Jinxia Deng & Xianran Xing, 2021. "Plastic and low-cost axial zero thermal expansion alloy by a natural dual-phase composite," Nature Communications, Nature, vol. 12(1), pages 1-8, December.
- Peter Mohn, 1999. "A century of zero expansion," Nature, Nature, vol. 400(6739), pages 18-19, July.
- Y. W. Long & N. Hayashi & T. Saito & M. Azuma & S. Muranaka & Y. Shimakawa, 2009. "Temperature-induced A–B intersite charge transfer in an A-site-ordered LaCu3Fe4O12 perovskite," Nature, Nature, vol. 458(7234), pages 60-63, March.
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