Crystallography Open Database

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Searching journal of publication like 'Crystals'

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3000105 CIFB2 Ba O4R 3 c :H12.5761; 12.5761; 12.6453
90; 90; 120
1732.02Bubnova, Rimma; Volkov, Sergey; Barbara Albert; Filatov, Stanislav
Borates‒Crystal Structures of Prospective Nonlinear Optical Materials: High Anisotropy of the Thermal Expansion Caused by Anharmonic Atomic Vibrations
Crystals, 2017, 7, 93
3000106 CIFB2 Ba O4R -3 c :H7.242; 7.242; 39.25
90; 90; 120
1783Bubnova, Rimma; Volkov, Sergey; Barbara Albert; Filatov, Stanislav
Borates‒Crystal Structures of Prospective Nonlinear Optical Materials: High Anisotropy of the Thermal Expansion Caused by Anharmonic Atomic Vibrations
Crystals, 2017, 7, 93
3000107 CIFB2 Ba O4R -3 c :H7.227; 7.227; 39.031
90; 90; 120
1765Bubnova, Rimma; Volkov, Sergey; Barbara Albert; Filatov, Stanislav
Borates‒Crystal Structures of Prospective Nonlinear Optical Materials: High Anisotropy of the Thermal Expansion Caused by Anharmonic Atomic Vibrations
Crystals, 2017, 7, 93
3000108 CIFAl2 B2 K2 O7P 3 2 18.555; 8.555; 8.443
90; 90; 120
535.14Bubnova, Rimma; Volkov, Sergey; Barbara Albert; Filatov, Stanislav
Borates‒Crystal Structures of Prospective Nonlinear Optical Materials: High Anisotropy of the Thermal Expansion Caused by Anharmonic Atomic Vibrations
Crystals, 2017, 7, 93
3000109 CIFAl2 B2 K2 O7P 3 2 18.5592; 8.5592; 8.4485
90; 90; 120
536.01Bubnova, Rimma; Volkov, Sergey; Barbara Albert; Filatov, Stanislav
Borates‒Crystal Structures of Prospective Nonlinear Optical Materials: High Anisotropy of the Thermal Expansion Caused by Anharmonic Atomic Vibrations
Crystals, 2017, 7, 93
3000110 CIFAl2 B2 K2 O7P 3 2 18.5852; 8.5852; 8.4855
90; 90; 120
541.64Bubnova, Rimma; Volkov, Sergey; Barbara Albert; Filatov, Stanislav
Borates‒Crystal Structures of Prospective Nonlinear Optical Materials: High Anisotropy of the Thermal Expansion Caused by Anharmonic Atomic Vibrations
Crystals, 2017, 7, 93
3000111 CIFAl2 B2 K2 O7P 3 2 18.5683; 8.5683; 8.4633
90; 90; 120
538.1Bubnova, Rimma; Volkov, Sergey; Barbara Albert; Filatov, Stanislav
Borates‒Crystal Structures of Prospective Nonlinear Optical Materials: High Anisotropy of the Thermal Expansion Caused by Anharmonic Atomic Vibrations
Crystals, 2017, 7, 93
3000112 CIFAl2 B2 K2 O7P 3 2 18.5843; 8.5843; 8.486
90; 90; 120
541.56Bubnova, Rimma; Volkov, Sergey; Barbara Albert; Filatov, Stanislav
Borates‒Crystal Structures of Prospective Nonlinear Optical Materials: High Anisotropy of the Thermal Expansion Caused by Anharmonic Atomic Vibrations
Crystals, 2017, 7, 93
3000113 CIFAl2 B2 K2 O7P 3 2 18.5987; 8.5987; 8.5052
90; 90; 120
544.6Bubnova, Rimma; Volkov, Sergey; Barbara Albert; Filatov, Stanislav
Borates‒Crystal Structures of Prospective Nonlinear Optical Materials: High Anisotropy of the Thermal Expansion Caused by Anharmonic Atomic Vibrations
Crystals, 2017, 7, 93
3000114 CIFB3 Li O5P n a 218.478; 7.398; 5.22
90; 90; 90
327.4Bubnova, Rimma; Volkov, Sergey; Barbara Albert; Filatov, Stanislav
Borates‒Crystal Structures of Prospective Nonlinear Optical Materials: High Anisotropy of the Thermal Expansion Caused by Anharmonic Atomic Vibrations
Crystals, 2017, 7, 93
3000115 CIFB3 Li O5P n a 218.4386; 7.3725; 5.1954
90; 90; 90
323.22Bubnova, Rimma; Volkov, Sergey; Barbara Albert; Filatov, Stanislav
Borates‒Crystal Structures of Prospective Nonlinear Optical Materials: High Anisotropy of the Thermal Expansion Caused by Anharmonic Atomic Vibrations
Crystals, 2017, 7, 93
3000116 CIFB3 Li O5P n a 218.4524; 7.3868; 5.202
90; 90; 90
324.79Bubnova, Rimma; Volkov, Sergey; Barbara Albert; Filatov, Stanislav
Borates‒Crystal Structures of Prospective Nonlinear Optical Materials: High Anisotropy of the Thermal Expansion Caused by Anharmonic Atomic Vibrations
Crystals, 2017, 7, 93
3000117 CIFB3 Li O5P n a 218.4437; 7.377; 5.189
90; 90; 90
323.22Bubnova, Rimma; Volkov, Sergey; Barbara Albert; Filatov, Stanislav
Borates‒Crystal Structures of Prospective Nonlinear Optical Materials: High Anisotropy of the Thermal Expansion Caused by Anharmonic Atomic Vibrations
Crystals, 2017, 7, 93
3000118 CIFB3 Li O5P n a 218.501; 7.4043; 5.211
90; 90; 90
328Bubnova, Rimma; Volkov, Sergey; Barbara Albert; Filatov, Stanislav
Borates‒Crystal Structures of Prospective Nonlinear Optical Materials: High Anisotropy of the Thermal Expansion Caused by Anharmonic Atomic Vibrations
Crystals, 2017, 7, 93
3000119 CIFB3 Li O5P n a 218.446; 7.3749; 5.175
90; 90; 90
322.34Bubnova, Rimma; Volkov, Sergey; Barbara Albert; Filatov, Stanislav
Borates‒Crystal Structures of Prospective Nonlinear Optical Materials: High Anisotropy of the Thermal Expansion Caused by Anharmonic Atomic Vibrations
Crystals, 2017, 7, 93
3000120 CIFB3 Li O5P n a 218.4605; 7.3809; 5.1703
90; 90; 90
322.87Bubnova, Rimma; Volkov, Sergey; Barbara Albert; Filatov, Stanislav
Borates‒Crystal Structures of Prospective Nonlinear Optical Materials: High Anisotropy of the Thermal Expansion Caused by Anharmonic Atomic Vibrations
Crystals, 2017, 7, 93
3000121 CIFB3 Li O5P n a 218.4453; 7.3653; 5.1564
90; 90; 90
320.74Bubnova, Rimma; Volkov, Sergey; Barbara Albert; Filatov, Stanislav
Borates‒Crystal Structures of Prospective Nonlinear Optical Materials: High Anisotropy of the Thermal Expansion Caused by Anharmonic Atomic Vibrations
Crystals, 2017, 7, 93
3000122 CIFB3 Li O5P n a 218.5109; 7.4112; 5.173
90; 90; 90
326.29Bubnova, Rimma; Volkov, Sergey; Barbara Albert; Filatov, Stanislav
Borates‒Crystal Structures of Prospective Nonlinear Optical Materials: High Anisotropy of the Thermal Expansion Caused by Anharmonic Atomic Vibrations
Crystals, 2017, 7, 93
3000167 CIFAl D5 SrP b c m4.6226; 12.6213; 5.0321
90; 90; 90
293.59Sato, Toyoto; Takagi, Shigeyuki; Sorby, Magnus H.; Deledda, Stefano; Hauback, Bjorn C.; Orimo, Shin-ichi
Crystal Structural Determination of SrAlD5 with Corner-sharing AlD6 Octahedron Chains by X-ray and Neutron Diffraction
Crystals, 2018, 8, 89
3000245 CIFC18 H18 Ag2 Fe N6P 1 21/c 110.0093; 15.0039; 14.8435
90; 91.439; 90
2228.5Rodriguez Velamazan
Structural Insights into the Two-Step Spin-Crossover Compound Fe(3,4-dimethyl-pyridine)2[Ag(CN)2]2
Crystals, 2019, 316

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