Crystallography Open Database

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1000029 CIFAl2.7 N15.1 O0.9 Si9.3 Y0.5P 3 1 c7.82927; 7.82927; 5.70757
90; 90; 120
303Izumi, F.; Mitomo, M.; Bando, Y.
Rietveld refinements for calcium and yttrium containing α-sialons
Journal of Materials Science, 1984, 19, 3115-3120
1509119 CIFAg0.4 Pd3.6F m -3 m3.911; 3.911; 3.911
90; 90; 90
59.822Sakamoto, Y.; Flanagan, T.B.; Baba, K.; Miyagawa, U.; Watanabe, K.
Electrical resistivity changes due to interstitial hydrogen in palladium-rich substitutional alloys
Journal of Materials Science, 1990, 25, 3910-3916
1509130 CIFAg0.5 Cu1.5 In2 Te4I -4 2 d6.271; 6.271; 12.5024
90; 90; 90
491.662Krishna Rao, D.; Kasiviswanathan, S.; Gopalam, B.S.V.
Preparation and characterization of the pseudobinary system Cu1-x Agx In Te2
Journal of Materials Science, 1986, 5, 912-914
1509239 CIFAg Bi S SeF m -3 m5.74; 5.74; 5.74
90; 90; 90
189.119Glatz, A.C.; Pinella, A.
X-ray and neutron diffraction studies of the high-temperature beta-phase of the Ag Bi Se2 / Ag Bi S2 system
Journal of Materials Science, 1968, 3, 498-501
1509240 CIFAg Bi S1.5 Se0.5F m -3 m5.695; 5.695; 5.695
90; 90; 90
184.706Glatz, A.C.; Pinella, A.
X-ray and neutron-diffraction studies of the high-temperature beta-phase of the Ag Bi Se2 / Ag Bi S2 system
Journal of Materials Science, 1968, 3, 498-501
1509597 CIFAg1.5 Cu0.5 In2 Te4I -4 2 d6.3879; 6.3879; 12.5969
90; 90; 90
514.02Gopalam, B.S.V.; Krishna Rao, D.; Kasiviswanathan, S.
Preparation and characterization of the pseudobinary system Cu1-x Agx In Te2
Journal of Materials Science, 1986, 5, 912-914
1510193 CIFAu0.4 Pd3.6F m -3 m3.911; 3.911; 3.911
90; 90; 90
59.822Sakamoto, Y.; Baba, K.; Watanabe, K.; Flanagan, T.B.; Miyagawa, U.
Electrical resistivity changes due to interstitial hydrogen in palladium-rich substitutional alloys
Journal of Materials Science, 1990, 25, 3910-3916
1510524 CIFAu3.248 Mn0.752F m -3 m4.0636; 4.0636; 4.0636
90; 90; 90
67.102Preston, R.R.
Quantitatie siize-factors for gold-manganese solid solutions
Journal of Materials Science, 1966, 1, 309-310
1513334 CIFO3 Pb Ti0.9 Zr0.1P 4 m m3.9272; 3.9272; 4.1319
90; 90; 90
63.726Joseph, J.; Vimala, T.M.; Sivasubramanian, V.
Structural investigations on Pb (Zrx Ti1-x) O3 solid solutions using the X-ray Rietveld method
Journal of Materials Science, 2000, 35, 1571-1575
1514051 CIFLi1.264 Mn1.736 O4F d -3 m :28.1548; 8.1548; 8.1548
90; 90; 90
542.3Ivanova, S.; Zhecheva, E.; Nihtianova, D.; Stoyanova, R.
Nano-domain structure of Li4 Mn5 O12 spinel
Journal of Materials Science, 2011, 46, 7098-7105
1514052 CIFLi1.26 Mn1.74 O4F d -3 m :28.1643; 8.1643; 8.1643
90; 90; 90
544.2Ivanova, S.; Zhecheva, E.; Nihtianova, D.; Stoyanova, R.
Nano-domain structure of Li4 Mn5 O12 spinel
Journal of Materials Science, 2011, 46, 7098-7105
1514053 CIFLi1.252 Mn1.748 O4F d -3 m :28.1771; 8.1771; 8.1771
90; 90; 90
546.76Ivanova, S.; Zhecheva, E.; Nihtianova, D.; Stoyanova, R.
Nano-domain structure of Li4 Mn5 O12 spinel
Journal of Materials Science, 2011, 46, 7098-7105
1520922 CIFLa0.303 Nb O3C m m m7.82; 7.83; 7.9
90; 90; 90
483.722Carrillo, L.; Villafuerte-Castrejon, M.E.; Pomes, R.; Gonzalez, G.; Sansores, L.E.; Duque, J.; Bucio, L.
Superstructure determination of the perovskite beta-(La0.33 Nb O3)
Journal of Materials Science, 2000, 35, 3047-3052
1521255 CIFO3 Pb TiP 4 m m3.9039; 3.9039; 4.1348
90; 90; 90
63.016Joseph, J.; Vimala, T.M.; Sivasubramanian, V.; Murthy, V.R.K.
Structural investigations on Pb (Zrx Ti1-x) O3 solid solutions using the X-ray Rietveld method
Journal of Materials Science, 2000, 35, 1571-1575
1521257 CIFO3 Pb Ti0.8 Zr0.2P 4 m m3.9539; 3.9539; 4.1319
90; 90; 90
64.595Joseph, J.; Vimala, T.M.; Murthy, V.R.K.; Sivasubramanian, V.
Structural investigations on Pb (Zrx Ti1-x) O3 solid solutions using the X-ray Rietveld method
Journal of Materials Science, 2000, 35, 1571-1575
1521259 CIFO3 Pb Ti0.7 Zr0.3P 4 m m3.9862; 3.9862; 4.1331
90; 90; 90
65.674Joseph, J.; Vimala, T.M.; Sivasubramanian, V.; Murthy, V.R.K.
Structural investigations on Pb (Zrx Ti1-x) O3 solid solutions using the X-ray Rietveld method
Journal of Materials Science, 2000, 35, 1571-1575
1521261 CIFO3 Pb Ti0.6 Zr0.4P 4 m m4.0081; 4.0081; 4.1341
90; 90; 90
66.414Joseph, J.; Vimala, T.M.; Sivasubramanian, V.; Murthy, V.R.K.
Structural investigations on Pb (Zrx Ti1-x) O3 solid solutions using the X-ray Rietveld method
Journal of Materials Science, 2000, 35, 1571-1575
1521263 CIFO3 Pb Ti0.6 Zr0.4R 3 m :H5.739; 5.739; 14.1339
90; 90; 120
403.149Joseph, J.; Sivasubramanian, V.; Vimala, T.M.; Murthy, V.R.K.
Structural investigations on Pb (Zrx Ti1-x) O3 solid solutions using the X-ray Rietveld method
Journal of Materials Science, 2000, 35, 1571-1575
1521265 CIFO3 Pb Ti0.47 Zr0.53P 4 m m4.0353; 4.0353; 4.1312
90; 90; 90
67.271Joseph, J.; Murthy, V.R.K.; Sivasubramanian, V.; Vimala, T.M.
Structural investigations on Pb (Zrx Ti1-x) O3 solid solutions using the X-ray Rietveld method
Journal of Materials Science, 2000, 35, 1571-1575
1521266 CIFO3 Pb Ti0.47 Zr0.53R 3 m :H5.7651; 5.7651; 14.184
90; 90; 120
408.266Joseph, J.; Vimala, T.M.; Sivasubramanian, V.; Murthy, V.R.K.
Structural investigations on Pb (Zrx Ti1-x) O3 solid solutions using the X-ray Rietveld method
Journal of Materials Science, 2000, 35, 1571-1575
1521400 CIFBa0.998 La2.235 O13.5 Ti4.5P n a m22.41229; 12.2777; 7.7526
90; 90; 90
2133.29Kim, J.S.; Cheon, C.I.; Park, T.-R.; Shim, H.-S.
Dielectric properties and crystal structure of Ba6-3x (Nd, M)8+2x Ti18 O54 (M = La, Bi, y) microwave ceramics
Journal of Materials Science, 2000, 35, 1487-1494
1521474 CIFO1.9516 Y0.0952 Zr0.9044P 42/n m c :13.6162; 3.6162; 5.1576
90; 90; 90
67.445Lamas, D.G.; Walsoe de Reca, N.E.
X-ray diffraction study of compositionally homogeneous, nanocrystalline yttria-doped zirconia powders
Journal of Materials Science, 2000, 35, 5563-5567
1521475 CIFO1.93545 Y0.1309 Zr0.86955P 42/n m c :13.6251; 3.6251; 5.1401
90; 90; 90
67.548Lamas, D.G.; Walsoe de Reca, N.E.
X-ray diffraction study of compositionally homogeneous, nanocrystalline yttria-doped zirconia powders
Journal of Materials Science, 2000, 35, 5563-5567
1521476 CIFO1.90111 Y0.19822 Zr0.80189P 42/n m c :13.6297; 3.6297; 5.1394
90; 90; 90
67.71Lamas, D.G.; Walsoe de Reca, N.E.
X-ray diffraction study of compositionally homogeneous, nanocrystalline yttria-doped zirconia powders
Journal of Materials Science, 2000, 35, 5563-5567
1521477 CIFO1.89316 Y0.21432 Zr0.78584P 42/n m c :13.6325; 3.6325; 5.1426
90; 90; 90
67.857Lamas, D.G.; Walsoe de Reca, N.E.
X-ray diffraction study of compositionally homogeneous, nanocrystalline yttria-doped zirconia powders
Journal of Materials Science, 2000, 35, 5563-5567
1521478 CIFO1.89316 Y0.21432 Zr0.78584F m -3 m5.1378; 5.1378; 5.1378
90; 90; 90
135.622Lamas, D.G.; Walsoe de Reca, N.E.
X-ray diffraction study of compositionally homogeneous, nanocrystalline yttria-doped zirconia powders
Journal of Materials Science, 2000, 35, 5563-5567
1521708 CIFCr1.4 O3 V0.6R -3 c :H4.97342; 4.97342; 13.6895
90; 90; 120
293.244Oyama, T.; Ishii, T.; Takeuchi, K.; Iimura, Y.
Synthesis of (Crx V1-x)2 O3 fine particles by a laser-induced vapor-phase reaction and their crystal structure
Journal of Materials Science, 1999, 34, 439-444
1521709 CIFCr0.3 O3 V1.7R -3 c :H4.99532; 4.99532; 13.8748
90; 90; 120
299.836Oyama, T.; Takeuchi, K.; Iimura, Y.; Ishii, T.
Synthesis of (Crx V1-x)2 O3 fine particles by a laser-induced vapor-phase reaction and their crystal structure
Journal of Materials Science, 1999, 34, 439-444
1521886 CIFLa2 Mg O6 RhP 1 21/n 15.579; 5.615; 7.898
90; 90.01; 90
247.413Schinzer, C.; Demazeau, G.
Structure and properties of new perovskites La2 M Rh O6 (M = Mg,Zn)
Journal of Materials Science, 1999, 34, 251-256
1521887 CIFLa2 O6 Rh ZnP 1 21/n 15.584; 5.659; 7.914
90; 90; 90
250.081Schinzer, C.; Demazeau, G.
Structure and properties of new perovskites La2 M Rh O6 (M = Mg,Zn)
Journal of Materials Science, 1999, 34, 251-256
1521932 CIFBa2 La0.667 O8 V2R -3 m :H5.75271; 5.75271; 21.04729
90; 90; 120
603.215Skakle, J.M.S.; Coats, A.M.; Marr, J.
The crystal structures of Ba2 R2/3 V2 O8 (R = La, Nd) and Sr2 La2/3 V2 O8; palmierite derivatives
Journal of Materials Science, 2000, 35, 3251-3256
1521933 CIFLa0.667 O8 Sr2 V2R -3 m :H5.6295; 5.6295; 19.9534
90; 90; 120
547.63Skakle, J.M.S.; Coats, A.M.; Marr, J.
The crystal structures of Ba2 R2/3 V2 O8 (R = La, Nd) and Sr2 La2/3 V2 O8; palmierite derivatives
Journal of Materials Science, 2000, 35, 3251-3256
1521934 CIFBa2 Nd0.667 O8 V2R -3 m :H5.6336; 5.6336; 20.08749
90; 90; 120
552.113Skakle, J.M.S.; Coats, A.M.; Marr, J.
The crystal structures of Ba2 R2/3 V2 O8 (R = La, Nd) and Sr2 La2/3 V2 O8; palmierite derivatives
Journal of Materials Science, 2000, 35, 3251-3256
1522128 CIFBa0.92 O2.89 Ti0.9P 4 m m4.00604; 4.00604; 4.01222
90; 90; 90
64.39Wada, S.; Yano, M.; Suzuki, T.; Noma, T.
Crystal structure of barium titanate fine particles including Mg and analysis of their lattice vibrations
Journal of Materials Science, 2000, 35, 3889-3902
1522129 CIFBa0.93 Mg0.21 O2.97 Ti0.79P m -3 m4.0074; 4.0074; 4.0074
90; 90; 90
64.356Wada, S.; Suzuki, T.; Yano, M.; Noma, T.
Crystal structure of barium titanate fine particles including Mg and analysis of their lattice vibrations
Journal of Materials Science, 2000, 35, 3889-3902
1522880 CIFFe VP m -3 m2.91; 2.91; 2.91
90; 90; 90
24.642Seki, J.I.; Hagiwara, M.; Suzuki, T.
Metastable order-disorder transition and sigma-phase formation in Fe-V binary alloys
Journal of Materials Science, 1979, 14, 2404-2410
1522951 CIFFe0.5 Ni0.5 PtP 4/m m m2.713; 2.713; 3.656
90; 90; 90
26.91Stevens, G.T.; Bowles, J.S.; Hatherly, M.
The ordered phase fields of the iron-nickel-platinum equilibrium diagram
Journal of Materials Science, 1978, 13, 499-504
1522952 CIFFe0.5 Ni0.5 Pt3P m -3 m3.839; 3.839; 3.839
90; 90; 90
56.579Stevens, G.T.; Hatherly, M.; Bowles, J.S.
The ordered phase fields of the iron-nickel-platinum equilibrium diagram
Journal of Materials Science, 1978, 13, 499-504
1522953 CIFFe1.5 Ni1.5 PtP m -3 m3.693; 3.693; 3.693
90; 90; 90
50.366Stevens, G.T.; Hatherly, M.; Bowles, J.S.
The ordered phase fields of the iron-nickel-platinum equilibrium diagram
Journal of Materials Science, 1978, 13, 499-504
1522954 CIFFe0.4 Ni0.5 Pt0.1F m -3 m3.627; 3.627; 3.627
90; 90; 90
47.714Stevens, G.T.; Hatherly, M.; Bowles, J.S.
The ordered phase fields of the iron-nickel-platinum equilibrium diagram
Journal of Materials Science, 1978, 13, 499-504
1523173 CIFGe0.125 Pb0.875F m -3 m4.9231; 4.9231; 4.9231
90; 90; 90
119.321Akhtar, D.; Goel, T.C.; Vankar, V.D.; Chopra, K.L.
Formation of metastable solid solutions in the Pb-Ge system
Journal of Materials Science, 1980, 15, 2720-2728
1523432 CIFNi2 ZrF d -3 m :16.9155; 6.9155; 6.9155
90; 90; 90
330.728Da, J.M.; Brochado Oliveira, C.; Harris, I.R.
Valency compensation in the Laves system, Ce (Co1-x Nix)2
Journal of Materials Science, 1983, 18, 3649-3660
1524242 CIFCo Ni ZrF d -3 m :16.9495; 6.9495; 6.9495
90; 90; 90
335.63Da, J.M.; Brochado Oliveira, C.; Harris, I.R.
Valency compensation in the Laves system Ce (Co1-x Nix)2
Journal of Materials Science, 1983, 18, 3649-3660
1526371 CIFH5.86 O10.93 V2 Zn3P -66.07877; 6.07877; 7.1827
90; 90; 120
229.853Hoyos, D.A.; Echavarria, A.; Saldarriaga, C.
Synthesis and structure of a porous zinc vanadate, Zn3 (V O4)2 * 3(H2 O)
Journal of Materials Science, 2001, 36, 5515-5518
1527227 CIFHg0.1 Sn0.9P 6/m m m3.2074; 3.2074; 2.9865
90; 90; 120
26.607Che Guangcan; Ellner, M.; Schubert, K.
The hP1-type phases in alloys of cadmium, mercury, and indium with tin
Journal of Materials Science, 1991, 26, 2417-2420
1528116 CIFCo Ti0.7 Zr0.3P m -3 m3.06; 3.06; 3.06
90; 90; 90
28.653Takasuki, T.; Izumi, O.; Yoshida, M.
Anomalous temperature dependence of the yield strength in IVa-VIII intermetallic compounds with B2 structure
Journal of Materials Science, 1991, 26, 2941-2948
1532590 CIFAl Li N4 Si2C m c 219.26; 5.333; 4.869
90; 90; 90
240.449Ischenko, V.; Kienle, L.; Jansen, M.
Formation and structure of (Li Si2 N3) - (Al N) solid solutions
Journal of Materials Science, 2002, 37, 5305-5317
1532921 CIFCe N O2 SiP -6 c 27.256; 7.256; 9.459
90; 90; 120
431.291Morgan, P.E.D.; Carroll, P.J.
The crystal structures of Ce Si O2 N and La Si O2 N
Journal of Materials Science, 1977, 12, 2343-2344
1532923 CIFLa N O2 SiP -6 c 27.31; 7.31; 9.55
90; 90; 120
441.946Morgan, P.E.D.; Carroll, P.J.
The cyrstal structures of Ce Si O2 N and La Si O2 N
Journal of Materials Science, 1977, 12, 2343-2344
1533938 CIFLa Mg0.6 Nb0.4 O3P 1 21/n 15.6004; 5.6414; 7.9346
90; 89.9819; 90
250.687Paik Jong Hoo; Park Hyun Min; Nahm Sahn; Byun Jae Dong; Kim Young Sik; Lee Hwack Joo
Crystal structure of (Ba1-x Lax) (Mg1/3+x/3 Nb2/3-x/3) O3 ceramics
Journal of Materials Science, 2003, 38, 621-628
1537679 CIFPt0 Ta4F m -3 m3.898; 3.898; 3.898
90; 90; 90
59.228Baba, K.; Miyagawa, U.; Flanagan, T.B.; Watanabe, K.; Sakamoto, Y.
Electrical resistivity changes due to interstitial hydrogen in palladium-rich substitutional alloys
Journal of Materials Science, 1990, 25, 3910-3916
1537682 CIFPd3.6 Ti0.4F m -3 m3.887; 3.887; 3.887
90; 90; 90
58.728Baba, K.; Miyagawa, U.; Watanabe, K.; Sakamoto, Y.; Flanagan, T.B.
Electrical resistivity changes due to interstitial hydrogen in palladium-rich substitutional alloys
Journal of Materials Science, 1990, 25, 3910-3916
1537684 CIFPd3.6 V0.4F m -3 m3.874; 3.874; 3.874
90; 90; 90
58.141Baba, K.; Miyagawa, U.; Watanabe, K.; Flanagan, T.B.; Sakamoto, Y.
Electrical resistivity changes due to interstitial hydrogen in palladium-rich substitutional alloys
Journal of Materials Science, 1990, 25, 3910-3916
1537685 CIFPd3.6 Zr0.4F m -3 m3.927; 3.927; 3.927
90; 90; 90
60.56Baba, K.; Miyagawa, U.; Watanabe, K.; Sakamoto, Y.; Flanagan, T.B.
Electrical resistivity changes due to interstitial hydrogen in palladium-rich substitutional alloys
Journal of Materials Science, 1990, 25, 3910-3916
1537688 CIFNb0.4 Pd3.6F m -3 m3.897; 3.897; 3.897
90; 90; 90
59.182Baba, K.; Miyagawa, U.; Watanabe, K.; Sakamoto, Y.; Flanagan, T.B.
Electrical resistivity changes due to interstitial hydrogen in palladium-rich substitutional alloys
Journal of Materials Science, 1990, 25, 3910-3916
1538215 CIFMn TeF m -3 m5.98; 5.98; 5.98
90; 90; 90
213.847Griffiths, C.H.
Cubic manganous telluride
Journal of Materials Science, 1978, 13, 513-518
1538747 CIFHg TeF -4 3 m6.47; 6.47; 6.47
90; 90; 90
270.84Niculescu, D.; Nistor, N.; Popa, M.; Ionescu, R.; Vantza, M.
Galvanomagnetic and thermoelectric properties of Hg Sx Te1-x solid solutions
Journal of Materials Science, 1970, 5, 385-388
1539831 CIFO2 ZrP 42/n m c :23.5916; 3.5916; 5.179
90; 90; 90
66.807Bondars, B.Ya.; Frey, F.; Heidemane, G.; Grabis, J.; Schneider, J.; Laschke, K.; Boysen, H.
Powder diffraction investigations of plasma sprayed zirconia
Journal of Materials Science, 1995, 30, 1621-1625
1540094 CIFCu12.32 In18.04 Se32P -4 3 m11.534; 11.534; 11.534
90; 90; 90
1534.4Hoenle, W.; Kuehn, G.; Boehnke, U.C.
The crystal structure of a quenched Cu-rich beta phase with the composition Cu14 In16.7 Se32
Journal of Materials Science, 1989, 24, 2483-2487
1543664 CIFC Fe2P n n m4.722; 4.271; 2.835
90; 90; 90
57.175Oila, Adrian; Lung, Chi; Bull, Steve
Elastic properties of eta carbide (η-Fe2C) from ab initio calculations: application to cryogenically treated gear steel
Journal of Materials Science, 2013, 49, 2383
1548806 CIFSe2 SnP -3 m 13.807; 3.807; 6.128
90; 90; 120
76.92Al-Alamy, F. A. S.; Balchin, A. A.; White, M.
The expansivities and the thermal degradation of some layer compounds
Journal of Materials Science, 1977, 12, 2037-2042
1557391 CIFC4 Al4 SiP 63 m c3.2771; 3.2771; 21.676
90; 90; 120
201.6Inoue, Z.; Inomata, Y.; Tanaka, H.; Kawabata, H.
X-ray crystallographic data on aluminum silicon carbide, alpha-Al4SiC4 and Al4Si2C5
Journal of Materials Science, 1980, 15, 575-580
1557392 CIFC5 Al4 Si2R -3 m :H3.2512; 3.2512; 40.1078
90; 90; 120
367.15Inoue, Z.; Inomata, Y.; Tanaka, H.; Kawabata, H.
X-ray crystallographic data on aluminum silicon carbide, alpha-Al4SiC4 and Al4Si2C5
Journal of Materials Science, 1980, 15, 575-580
1559831 CIFB4 K3 Lu3 O12P 1 21/c 110.4282; 17.3029; 13.7515
90; 110.286; 90
2327.39Chen, Pengyun; Murshed, M. Mangir; Gesing, Thorsten M.
Synthesis and crystal structures of novel alkali rare-earth orthoborates K3RE3(BO3)4 (RE = Pr, Nd, Sm‒Lu)
Journal of Materials Science, 2020, 56, 3639-3652
1559832 CIFB4 K3 O12 Yb3P 1 21/c 110.4601; 17.355; 13.7625
90; 110.336; 90
2342.65Chen, Pengyun; Murshed, M. Mangir; Gesing, Thorsten M.
Synthesis and crystal structures of novel alkali rare-earth orthoborates K3RE3(BO3)4 (RE = Pr, Nd, Sm‒Lu)
Journal of Materials Science, 2020, 56, 3639-3652
1559833 CIFB4 K3 O12 Tm3P 1 21/c 110.49; 17.3785; 13.7941
90; 110.495; 90
2355.5Chen, Pengyun; Murshed, M. Mangir; Gesing, Thorsten M.
Synthesis and crystal structures of novel alkali rare-earth orthoborates K3RE3(BO3)4 (RE = Pr, Nd, Sm‒Lu)
Journal of Materials Science, 2021, 56, 3639-3652
1559834 CIFB4 Er3 K3 O12P 1 21/c 110.5189; 17.4322; 13.8305
90; 110.521; 90
2375.14Chen, Pengyun; Murshed, M. Mangir; Gesing, Thorsten M.
Synthesis and crystal structures of novel alkali rare-earth orthoborates K3RE3(BO3)4 (RE = Pr, Nd, Sm‒Lu)
Journal of Materials Science, 2021, 56, 3639-3652
1559835 CIFB4 K3 O12 Pr3P -110.8167; 9.0776; 14.1014
90.051; 110.257; 89.901
1299Chen, Pengyun; Murshed, M. Mangir; Gesing, Thorsten M.
Synthesis and crystal structures of novel alkali rare-earth orthoborates K3RE3(BO3)4 (RE = Pr, Nd, Sm‒Lu)
Journal of Materials Science, 2021, 56, 3639-3652
6000111 CIFBa2 La0.66 O8 V2R -3 m5.7527; 5.7527; 21.0473
90; 90; 120
603.22Skakle, J. M. S.; Coats, A. M.; Marr, J.
The crystal structures of Ba2R2/3V2O8 (R = La, Nd) and Sr2La2/3V2O8; palmierite derivatives
Journal of Materials Science, 2000, 35, 3251-3256
6000235 CIFAl14 O25 Sr4P m m a24.7451; 8.4735; 4.8808
90; 90; 90
1023.39Wang, D.; Wang, M. Q.; Lu, G. L.
Synthesis, crystal structure and X-ray powder diffraction data of the phosphor matrix 4SrO . 7Al(2)O(3)
Journal of Materials Science, 1999, 34, 4959-4964
9013008 CIFSbP m -3 m3.16; 3.16; 3.16
90; 90; 90
31.554Akhtar, D.; Vankar, V. D.; Goel, T. C.; Chopra, K. L.
Metastable structures of liquid-quenched and vapour-quenched antimony films Note: liquid-quenched specimen
Journal of Materials Science, 1979, 14, 988-994
9013009 CIFSbF m -3 m4.61; 4.61; 4.61
90; 90; 90
97.972Akhtar, D.; Vankar, V. D.; Goel, T. C.; Chopra, K. L.
Metastable structures of liquid-quenched and vapour-quenched antimony films Locality: synthetic Note: liquid-quenched specimen
Journal of Materials Science, 1979, 14, 988-994
9013010 CIFSbI 4/m m m3.01; 3.01; 4.96
90; 90; 90
44.938Akhtar, D.; Vankar, V. D.; Goel, T. C.; Chopra, K. L.
Metastable structures of liquid-quenched and vapour-quenched antimony films Note: liquid-quenched specimen
Journal of Materials Science, 1979, 14, 988-994
9013011 CIFSbP 63/m m c3.33; 3.33; 5.23
90; 90; 120
50.225Akhtar, D.; Vankar, V. D.; Goel, T. C.; Chopra, K. L.
Metastable structures of liquid-quenched and vapour-quenched antimony films Locality: synthetic Note: liquid-quenched specimen Note: HCP structure resulted from electron beam heating of the tetragonal, FCC and SC structures
Journal of Materials Science, 1979, 14, 988-994
9013014 CIFCuF m -3 m3.613; 3.613; 3.613
90; 90; 90
47.163Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 293 K
Journal of Materials Science, 1988, 23, 757-760
9013015 CIFCuF m -3 m3.63; 3.63; 3.63
90; 90; 90
47.832Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 577 K
Journal of Materials Science, 1988, 23, 757-760
9013016 CIFCuF m -3 m3.636; 3.636; 3.636
90; 90; 90
48.07Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 680 K
Journal of Materials Science, 1988, 23, 757-760
9013017 CIFCuF m -3 m3.644; 3.644; 3.644
90; 90; 90
48.388Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 777 K
Journal of Materials Science, 1988, 23, 757-760
9013018 CIFCuF m -3 m3.65; 3.65; 3.65
90; 90; 90
48.627Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 874 K
Journal of Materials Science, 1988, 23, 757-760
9013019 CIFCuF m -3 m3.658; 3.658; 3.658
90; 90; 90
48.948Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 979 K
Journal of Materials Science, 1988, 23, 757-760
9013020 CIFCuF m -3 m3.667; 3.667; 3.667
90; 90; 90
49.31Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 1076 K
Journal of Materials Science, 1988, 23, 757-760
9013021 CIFCuF m -3 m3.672; 3.672; 3.672
90; 90; 90
49.512Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 1179 K
Journal of Materials Science, 1988, 23, 757-760
9013022 CIFCuF m -3 m3.684; 3.684; 3.684
90; 90; 90
49.999Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 1275 K
Journal of Materials Science, 1988, 23, 757-760
9013023 CIFCuF m -3 m3.692; 3.692; 3.692
90; 90; 90
50.325Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 1343 K
Journal of Materials Science, 1988, 23, 757-760
9013024 CIFNiF m -3 m3.524; 3.524; 3.524
90; 90; 90
43.763Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 293 K
Journal of Materials Science, 1988, 23, 757-760
9013025 CIFNiF m -3 m3.538; 3.538; 3.538
90; 90; 90
44.287Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 578 K
Journal of Materials Science, 1988, 23, 757-760
9013026 CIFNiF m -3 m3.544; 3.544; 3.544
90; 90; 90
44.512Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 676 K
Journal of Materials Science, 1988, 23, 757-760
9013027 CIFNiF m -3 m3.552; 3.552; 3.552
90; 90; 90
44.815Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 825 K
Journal of Materials Science, 1988, 23, 757-760
9013028 CIFNiF m -3 m3.563; 3.563; 3.563
90; 90; 90
45.232Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 1007 K
Journal of Materials Science, 1988, 23, 757-760
9013029 CIFNiF m -3 m3.571; 3.571; 3.571
90; 90; 90
45.538Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 1123 K
Journal of Materials Science, 1988, 23, 757-760
9013030 CIFNiF m -3 m3.581; 3.581; 3.581
90; 90; 90
45.921Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 1256 K
Journal of Materials Science, 1988, 23, 757-760
9013031 CIFNiF m -3 m3.587; 3.587; 3.587
90; 90; 90
46.152Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 1345 K
Journal of Materials Science, 1988, 23, 757-760
9013032 CIFNiF m -3 m3.595; 3.595; 3.595
90; 90; 90
46.462Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 1433 K
Journal of Materials Science, 1988, 23, 757-760
9013033 CIFNiF m -3 m3.603; 3.603; 3.603
90; 90; 90
46.773Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 1553 K
Journal of Materials Science, 1988, 23, 757-760
9013034 CIFNiF m -3 m3.615; 3.615; 3.615
90; 90; 90
47.242Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 1676 K
Journal of Materials Science, 1988, 23, 757-760
9013035 CIFAuF m -3 m4.072; 4.072; 4.072
90; 90; 90
67.519Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 293 K
Journal of Materials Science, 1988, 23, 757-760
9013036 CIFAuF m -3 m4.091; 4.091; 4.091
90; 90; 90
68.468Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 574 K
Journal of Materials Science, 1988, 23, 757-760
9013037 CIFAuF m -3 m4.097; 4.097; 4.097
90; 90; 90
68.77Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 676 K
Journal of Materials Science, 1988, 23, 757-760
9013038 CIFAuF m -3 m4.103; 4.103; 4.103
90; 90; 90
69.072Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 777 K
Journal of Materials Science, 1988, 23, 757-760
9013039 CIFAuF m -3 m4.11; 4.11; 4.11
90; 90; 90
69.427Suh, I.-K.; Ohta, H.; Waseda, Y.
High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction Sample: at T = 875 K
Journal of Materials Science, 1988, 23, 757-760

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