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               REFERENCES
               1.      Guillaume C. Recherches sur les aciers au nickel. J Phys Theor Appl 1898;7:262-74.  DOI
               2.      Honda K. A new alloy, 'stainless-invar'. Nature 1933;131:587-587.  DOI
               3.       Huang Q, Santoro A, Lynn JW, et al. Structure and magnetic order in La Ca MnO  (0 < x < ~0.33). Phys Rev B 1998;58:2684-91.
                                                                   1-x
                                                                      x
                                                                          3
                   DOI
               4.      Li Q, Lin K, Liu Z, et al. Chemical diversity for tailoring negative thermal expansion. Chem Rev 2022;122:8438-86.  DOI
               5.       Chippindale AM, Hibble SJ, Bilbé EJ, et al. Mixed copper, silver, and gold cyanides, (M M' )CN: tailoring chain structures to
                                                                                x
                                                                                  1-x
                   influence physical properties. J Am Chem Soc 2012;134:16387-400.  DOI
               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.  DOI
               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.
                   DOI
               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.  DOI
               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.  DOI
               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)Fe . J Phys Chem Lett 2020;11:1954-61.  DOI
                           2
               11.      Shiga M, Nakamura Y. Magnetovolume effects and invar characters of (Zr Nb )Fe . J Phys Soc Jpn 1979;47:1446-51.  DOI
                                                                   1-x  x  2
               12.      Wada H, Shimamura N, Shiga M. Thermal and transport properties of Sc Ti Fe . J Phys Soc Jpn 1994;63:283-8.  DOI
                                                                  1-x  x  2
               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.  DOI
               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.  DOI
               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 LaFe 11.4 Si . Appl Phys Lett 2001;78:3675-7.  DOI
                                               1.6
               16.      Fujita A, Fukamichi K, Wang J, Kawazoe Y. Large magnetovolume effects and band structure of itinerant-electron metamagnetic
                   La(Fe Si )  compounds. Phys Rev B 2003;68:104431.  DOI
                       x  1-x 13
               17.      Khmelevskyi S, Mohn P. Theory of invar anomalies in the laves phase RCo (R = Ho, Dy) intermetallic compounds. J Magn Magn
                                                                     2
                   Mater 2004;272-276:525-6.  DOI
               18.      Hu J, Lin K, Cao Y, et al. Adjustable magnetic phase transition inducing unusual zero thermal expansion in Cubic RCo -based
                                                                                                     2
                   intermetallic compounds (R = Rare earth). Inorg Chem 2019;58:5401-5.  DOI
               19.      Yang N, Dennis K, Mccallum R, Kramer M, Zhang Y, Lee P. Spontaneous magnetostriction in R Fe B (R=Y, Nd, Gd, Tb, Er). J
                                                                                    2  14
                   Magn Magn Mater 2005;295:65-76.  DOI
               20.      Kuchin A, Medvedeva I, Gaviko V, Kazantsev V. Magnetovolume properties of Y Fe 17-x M  alloys (M = Si or Al). J Alloys Compd
                                                                               x
                                                                          2
                   1999;289:18-23.  DOI
               21.      Cao Y, Lin K, Khmelevskyi S, et al. Ultrawide temperature range super-invar behavior of R (Fe,Co)  materials (R = Rare Earth). Phys
                                                                              2     17
                   Rev Lett 2021;127:055501.  DOI
               22.      Weiss RJ. The origin of the ‘invar’ effect. Proc Phys Soc 1963;82:281-8.  DOI
               23.      Fang C, Wang J, Hong F, et al. Tuning the magnetic and structural transitions in TbCo Mn  compounds. Phys Rev B 2017;96:064425.
                                                                           2  x
                   DOI
               24.      Bloch D, Lemaire R. Metallic alloys and exchange-enhanced paramagnetism. application to rare-earth-cobalt alloys. Phys Rev B
                   1970;2:2648-50.  DOI
               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 TbCo Mn  compounds. Phys Met Metallogr 2018;119:1036-42.  DOI
                                   2
                                     x
               27.      Gerasimov E, Inishev A, Mushnikov N, Terentev P, Gaviko V, Anikin M. Magnetocaloric effect, heat capacity and exchange
                   interactions in nonstoichiometric Er  Gd  Co Mn compounds. Intermetallics 2022;140:107386.  DOI
                                          0.65  0.35  2
               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 TbX  (X = Co and Fe). J Alloys Compd 2016;689:885-93.  DOI
                                                        2
               29.      Gerasimov E, Inishev A, Terentev P, Kazantsev V, Mushnikov N. Magnetostriction and thermal expansion of nonstoichiometric
                   TbCo Mn  compounds. J Magn Magn Mater 2021;523:167628.  DOI
                       2  x
               30.      Koley B, Ghanta S, Misra S, Jana PP. Rh Cd : a rhombohedral variant of a cubic giant cell structure. J Alloy Compd 2017;695:3760-6.
                                              8  43
                   DOI
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