Negative thermal expansion: Mechanisms and materials
Author:
Publisher
Springer Science and Business Media LLC
Subject
Physics and Astronomy (miscellaneous)
Link
https://link.springer.com/content/pdf/10.1007/s11467-021-1070-0.pdf
Reference327 articles.
1. L. P. Prisco, P. I. Ponton, M. V. Guaman, R. R. Avillez, C. P. Romao, M. B. Johnson, M. A. White, and B. A. Marinkovic, Assessment of the thermal shock resistance figures of merit of Al2W3O12, a low thermal expansion ceramic, J. Am. Ceram. Soc. 99(5), 1742 (2016)
2. T. A. Mary, J. S. O. Evans, T. Vogt, and A. W. Sleight, Negative thermal expansion from 0.3 to 1050 Kelvin in ZrW2O8, Science 272(5258), 90 (1996)
3. N. Zhang, L. Li, M. Wu, Y. Li, D. Feng, C. Liu, Y. Mao, J. Guo, M. Chao, and E. Liang, Negative thermal expansion and electrical properties of α-Cu2V2O7, J. Eur. Ceram. Soc. 36(11), 2761 (2016)
4. X. H. Ge, Y. C. Mao, X. S. Liu, Y. G. Cheng, B. H. Yuan, M. J. Chao, and E. J. Liang, Negative thermal expansion and broad band photo luminescence in a novel material of ZrScMo2VO12, Sci. Rep. 6(1), 24832 (2016)
5. N. K. Shi, A. Sanson, Q. Gao, Q. Sun, Y. Ren, Q. Z. Huang, D. O. deSouza, X. R. Xing, and J. Chen, Strong negative thermal expansion in a low-cost and facile oxide of Cu2P2O7, J. Am. Chem. Soc. 142(6), 3088 (2020)
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