LIU H F, ZHANG W, ZHANG Z P, et al. Synthesis and negative thermal expansion properties of solid solutions Yb2-xLaxW3O12 (0≤x≤ 2) [J]. Ceram Int, 2012, 38: 2951-2956.
[2]
WU M M, HU Z B, LIU Y T, et al. Thermal expansion properties of Ln2-xCrxMo3O12 (Ln=Er and Y) [J]. Mater Res Bull, 2009, 44: 1943-1947.
[3]
WU M M, PENG J, CHENG Y Z, et al. Structure and thermal expansion properties of solid solution Nd2-xErxW3O12 (0.0≤x≤0.6 and 1.5≤x≤2.0) [J]. Solid State Sci, 2006, 8: 665-670.
[4]
LIU H F, WANG X C, ZHANG Z P, et al. Synthesis and thermal expansion properties of Y2-xLaxMo3O12 (x=0, 0.5, 2) [J]. Ceram Int, 2012, 38: 6349-6352.
[5]
LIU H F, ZHANG Z P, ZHANG W, et al. Synthesis and negative thermal expansion property of Y2-xLaxW3O12 (0≤x≤2) [J]. Ceram Int, 2013, 39: 2781-2786.
[6]
EVANS J S O, MARY T A, SLEIGHT A W. Negative thermal expansion in Sc2(WO4)3 [J]. J Solid State Chem, 1998, 137:148-160.
[7]
LIU Q Q, YANG J, CHENG X N, et al. Preparation and characterization of negative thermal expansion Sc2W3O12/Cu core-shell composite [J]. Ceram Int, 2012, 38: 541-545.
[8]
EVANS J S O, MARY T A. Structural phase transitions and negative thermal expansion in Sc2(MoO4)3 [J]. Int J Inorg Mater, 2000, 2: 143-151.
[9]
BAIZ T I, HEINRICH C P, BANEK N A, et al. In-situ non-ambient X-ray diffraction studies of indium tungstate [J]. J Solid State Chem 2012, 187: 195-9.
[10]
SIVASUBRAMANIAN V, RAVINDRAN T R, NITHYA R, et al. Structural phase transition in indium tungstate [J]. J Appl Phys 2004, 96: 387-92.
[11]
MARINKOVIC B A, ARI M, JARDIM P M, et al. In2Mo3O12: A low negative thermal expansion compound [J], Thermochim Acta, 2010, 499: 48-53.
[12]
YANG J, LIU Q Q, SUN X J, et al. Synthesis of negative thermal expansion materials ZrW2-xMoxO8 (0≤x≤2) using hydrothermal method [J]. Ceram Int, 2009, 35 : 441-445.
[13]
XIAO Z J, YAN X H, CHENG X N. Fabrication of ZrW2O8 thin films by radio frequency magnetron sputtering [J]. J Chin Ceram Soc, 2006, 34(3): 314-317.
[14]
LIU H F,CHENG X N,ZHANG Z P. Growth of ZrW2O8 thin films by plused laser deposition [J]. J Chin Ceram Soc, 2009, 37(5): 755-759.
[15]
?
[16]
SUMITHR A S, UMARJI A M. Role of crystal structure on the thermal expansion of Ln2W3O12 (Ln=La, Nd, Dy, Y, Er and Yb) [J]. Solid State Sci, 2004(6): 1313-1319.
[17]
SUMITHR A S, UMARJI A M. Negative thermal expansion in rare earth molybdates [J]. Solid State Sci, 2006(8): 1453-1458.
[18]
EVANS J S O, MARY T A, SLEIGHT A W. Negative thermal expansion in a large molybdate and tungstate family [J]. J Solid State Chem, 1997, 133: 580-583.
[19]
SUMITHRA S, TYAGI A K, UMARJI A M. Negative thermal expansion in Er2W3O12 and Yb2W3O12 by high temperature X-ray diffraction [J]. Mater Sci Eng B, 2005, 116: 14-18.
[20]
SUMITHR A S, UMARJI A M. Hygroscopicity and bulk thermal expansion in Y2W3O12 [J]. Mater Res Bull, 2005, 40: 167-176.
[21]
FORSTER P M, SLEIGHT A W. Negative thermal expansion in Y2W3O12 [J]. Int J Inorg Mater, 1999, 1: 123-127.
[22]
MARINKOVIC B A, JARDIM P M, DE AVILLEZ R R, et al. Negative thermal expansion in Y2Mo3O12[J]. Solid State Sci, 2005(7): 1377-1383.