REFERENCES

1. Guillaume C. Recherches sur les aciers au nickel. J Phys Theor Appl 1898;7:262-74.

2. Honda K. A new alloy, 'stainless-invar'. Nature 1933;131:587-587.

3. Huang Q, Santoro A, Lynn JW, et al. Structure and magnetic order in La1-xCaxMnO3 (0 < x < ~0.33). Phys Rev B 1998;58:2684-91.

4. Li Q, Lin K, Liu Z, et al. Chemical diversity for tailoring negative thermal expansion. Chem Rev 2022;122:8438-86.

5. Chippindale AM, Hibble SJ, Bilbé EJ, et al. Mixed copper, silver, and gold cyanides, (MxM'1-x)CN: tailoring chain structures to influence physical properties. J Am Chem Soc 2012;134:16387-400.

6. Poornaprakash B, Subramanyam K, Vattikuti SP, Pratap Reddy MS. Achieving enhanced ferromagnetism in ZnTbO nanoparticles through Cu co-doping. Ceram Int 2019;45:16347-52.

7. Tan Z, Miao P, Hagihala M, et al. Room temperature zero thermal expansion in a cubic cobaltite. J Phys Chem Lett 2020;11:6785-90.

8. Guo X, Ni X, Li J, et al. Designing mechanical metamaterials with kirigami-inspired, hierarchical constructions for giant positive and negative thermal expansion. Adv Mater 2021;33:e2004919.

9. Xu J, Wang Z, Huang H, et al. Significant zero thermal expansion via enhanced magnetoelastic coupling in kagome magnets. Adv Mater 2023;35:e2208635.

10. Song Y, Sun Q, Yokoyama T, et al. Transforming thermal expansion from positive to negative: the case of cubic magnetic compounds of (Zr,Nb)Fe2. J Phys Chem Lett 2020;11:1954-61.

11. Shiga M, Nakamura Y. Magnetovolume effects and invar characters of (Zr1-xNbx)Fe2. J Phys Soc Jpn 1979;47:1446-51.

12. Wada H, Shimamura N, Shiga M. Thermal and transport properties of Sc1-xTixFe2. J Phys Soc Jpn 1994;63:283-8.

13. Ren Q, Hutchison W, Wang J, et al. Negative thermal expansion of Ni-doped MnCoGe at room-temperature magnetic tuning. ACS Appl Mater Interfaces 2019;11:17531-8.

14. Shen F, Zhou H, Hu F, et al. Cone-spiral magnetic ordering dominated lattice distortion and giant negative thermal expansion in Fe-doped MnNiGe compounds. Mater Horizons 2020;7:804-10.

15. Hu F, Shen B, Sun J, Cheng Z, Rao G, Zhang X. Influence of negative lattice expansion and metamagnetic transition on magnetic entropy change in the compound LaFe11.4Si1.6. Appl Phys Lett 2001;78:3675-7.

16. Fujita A, Fukamichi K, Wang J, Kawazoe Y. Large magnetovolume effects and band structure of itinerant-electron metamagnetic La(FexSi1-x)13 compounds. Phys Rev B 2003;68:104431.

17. Khmelevskyi S, Mohn P. Theory of invar anomalies in the laves phase RCo2 (R = Ho, Dy) intermetallic compounds. J Magn Magn Mater 2004;272-276:525-6.

18. Hu J, Lin K, Cao Y, et al. Adjustable magnetic phase transition inducing unusual zero thermal expansion in Cubic RCo2-based intermetallic compounds (R = Rare earth). Inorg Chem 2019;58:5401-5.

19. Yang N, Dennis K, Mccallum R, Kramer M, Zhang Y, Lee P. Spontaneous magnetostriction in R2Fe14B (R=Y, Nd, Gd, Tb, Er). J Magn Magn Mater 2005;295:65-76.

20. Kuchin A, Medvedeva I, Gaviko V, Kazantsev V. Magnetovolume properties of Y2Fe17-xMx alloys (M = Si or Al). J Alloys Compd 1999;289:18-23.

21. Cao Y, Lin K, Khmelevskyi S, et al. Ultrawide temperature range super-invar behavior of R2(Fe,Co)17 materials (R = Rare Earth). Phys Rev Lett 2021;127:055501.

22. Weiss RJ. The origin of the ‘invar’ effect. Proc Phys Soc 1963;82:281-8.

23. Fang C, Wang J, Hong F, et al. Tuning the magnetic and structural transitions in TbCo2Mnx compounds. Phys Rev B 2017;96:064425.

24. Bloch D, Lemaire R. Metallic alloys and exchange-enhanced paramagnetism. application to rare-earth-cobalt alloys. Phys Rev B 1970;2:2648-50.

25. Duc NH, Goto T. Handbook on the physics and chemistry of rare earths. Amsterdam: Elsevier B.V.; 1999. pp. 1-413.

26. Inishev AA, Gerasimov EG, Mushnikov NV, Terent’ev PB, Gaviko VS. Structure, magnetic and magnetocaloric properties of nonstoichiometric TbCo2Mnx compounds. Phys Met Metallogr 2018;119:1036-42.

27. Gerasimov E, Inishev A, Mushnikov N, Terentev P, Gaviko V, Anikin M. Magnetocaloric effect, heat capacity and exchange interactions in nonstoichiometric Er0.65Gd0.35Co2Mn compounds. Intermetallics 2022;140:107386.

28. Bentouaf A, Mebsout R, Rached H, Amari S, Reshak A, Aïssa B. Theoretical investigation of the structural, electronic, magnetic and elastic properties of binary cubic C15-Laves phases TbX2 (X = Co and Fe). J Alloys Compd 2016;689:885-93.

29. Gerasimov E, Inishev A, Terentev P, Kazantsev V, Mushnikov N. Magnetostriction and thermal expansion of nonstoichiometric TbCo2Mnx compounds. J Magn Magn Mater 2021;523:167628.

30. Koley B, Ghanta S, Misra S, Jana PP. Rh8Cd43: a rhombohedral variant of a cubic giant cell structure. J Alloy Compd 2017;695:3760-6.

Microstructures
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