Crystallography Open Database
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Result: there are 136 entries in the selection
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Searching space group like 'P m n a'
COD ID | Links | Formula | Space group | Cell parameters | Cell volume | Bibliography |
---|---|---|---|---|---|---|
1560917 | CIF HKL | Gd O14 P5 | P m n a | 12.86; 8.788; 8.907 90; 90; 90 | 1006.6 | Cramer, Alisha J.; Cole, Jacqueline M. Host-guest prospects of neodymium and gadolinium ultraphosphate frameworks for nuclear waste storage: Multi-temperature topological analysis of nanoporous cages in RP5O14 Journal of Solid State Chemistry, 2018, 266, 250-257 |
1560918 | CIF HKL | Gd O14 P5 | P m n a | 13; 8.708; 8.959 90; 90; 90 | 1014.2 | Cramer, Alisha J.; Cole, Jacqueline M. Host-guest prospects of neodymium and gadolinium ultraphosphate frameworks for nuclear waste storage: Multi-temperature topological analysis of nanoporous cages in RP5O14 Journal of Solid State Chemistry, 2018, 266, 250-257 |
1560921 | CIF HKL | Gd O14 P5 | P m n a | 13; 8.704; 8.956 90; 90; 90 | 1013.4 | Cramer, Alisha J.; Cole, Jacqueline M. Host-guest prospects of neodymium and gadolinium ultraphosphate frameworks for nuclear waste storage: Multi-temperature topological analysis of nanoporous cages in RP5O14 Journal of Solid State Chemistry, 2018, 266, 250-257 |
1560922 | CIF HKL | Gd O14 P5 | P m n a | 12.98; 8.698; 8.948 90; 90; 90 | 1010.2 | Cramer, Alisha J.; Cole, Jacqueline M. Host-guest prospects of neodymium and gadolinium ultraphosphate frameworks for nuclear waste storage: Multi-temperature topological analysis of nanoporous cages in RP5O14 Journal of Solid State Chemistry, 2018, 266, 250-257 |
1560924 | CIF HKL | Gd O14 P5 | P m n a | 13.01; 8.703; 8.96 90; 90; 90 | 1014.5 | Cramer, Alisha J.; Cole, Jacqueline M. Host-guest prospects of neodymium and gadolinium ultraphosphate frameworks for nuclear waste storage: Multi-temperature topological analysis of nanoporous cages in RP5O14 Journal of Solid State Chemistry, 2018, 266, 250-257 |
1560926 | CIF HKL | Gd O14 P5 | P m n a | 12.85; 8.784; 8.904 90; 90; 90 | 1005 | Cramer, Alisha J.; Cole, Jacqueline M. Host-guest prospects of neodymium and gadolinium ultraphosphate frameworks for nuclear waste storage: Multi-temperature topological analysis of nanoporous cages in RP5O14 Journal of Solid State Chemistry, 2018, 266, 250-257 |
1560928 | CIF HKL | Gd O14 P5 | P m n a | 13; 8.708; 8.956 90; 90; 90 | 1013.9 | Cramer, Alisha J.; Cole, Jacqueline M. Host-guest prospects of neodymium and gadolinium ultraphosphate frameworks for nuclear waste storage: Multi-temperature topological analysis of nanoporous cages in RP5O14 Journal of Solid State Chemistry, 2018, 266, 250-257 |
1560931 | CIF HKL | Gd O14 P5 | P m n a | 12.878; 8.778; 8.925 90; 90; 90 | 1008.9 | Cramer, Alisha J.; Cole, Jacqueline M. Host-guest prospects of neodymium and gadolinium ultraphosphate frameworks for nuclear waste storage: Multi-temperature topological analysis of nanoporous cages in RP5O14 Journal of Solid State Chemistry, 2018, 266, 250-257 |
1560966 | CIF HKL | Nd O14 P5 | P m n a | 13.14; 8.84; 9.01 90; 90; 90 | 1047 | Cramer, Alisha J.; Cole, Jacqueline M. Host-guest prospects of neodymium and gadolinium ultraphosphate frameworks for nuclear waste storage: Multi-temperature topological analysis of nanoporous cages in RP5O14 Journal of Solid State Chemistry, 2018, 266, 250-257 |
1560968 | CIF HKL | Nd O14 P5 | P m n a | 12.95; 8.806; 8.95 90; 90; 90 | 1021 | Cramer, Alisha J.; Cole, Jacqueline M. Host-guest prospects of neodymium and gadolinium ultraphosphate frameworks for nuclear waste storage: Multi-temperature topological analysis of nanoporous cages in RP5O14 Journal of Solid State Chemistry, 2018, 266, 250-257 |
1560971 | CIF HKL | Nd O14 P5 | P m n a | 12.95; 8.756; 8.99 90; 90; 90 | 1019 | Cramer, Alisha J.; Cole, Jacqueline M. Host-guest prospects of neodymium and gadolinium ultraphosphate frameworks for nuclear waste storage: Multi-temperature topological analysis of nanoporous cages in RP5O14 Journal of Solid State Chemistry, 2018, 266, 250-257 |
1560972 | CIF HKL | Nd O14 P5 | P m n a | 12.944; 8.742; 8.987 90; 90; 90 | 1017 | Cramer, Alisha J.; Cole, Jacqueline M. Host-guest prospects of neodymium and gadolinium ultraphosphate frameworks for nuclear waste storage: Multi-temperature topological analysis of nanoporous cages in RP5O14 Journal of Solid State Chemistry, 2018, 266, 250-257 |
1560974 | CIF HKL | Nd O14 P5 | P m n a | 12.97; 8.83; 8.88 90; 90; 90 | 1017 | Cramer, Alisha J.; Cole, Jacqueline M. Host-guest prospects of neodymium and gadolinium ultraphosphate frameworks for nuclear waste storage: Multi-temperature topological analysis of nanoporous cages in RP5O14 Journal of Solid State Chemistry, 2018, 266, 250-257 |
1560976 | CIF HKL | Nd O14 P5 | P m n a | 13.107; 8.83; 9.038 90; 90; 90 | 1046 | Cramer, Alisha J.; Cole, Jacqueline M. Host-guest prospects of neodymium and gadolinium ultraphosphate frameworks for nuclear waste storage: Multi-temperature topological analysis of nanoporous cages in RP5O14 Journal of Solid State Chemistry, 2018, 266, 250-257 |
1560978 | CIF HKL | Nd O14 P5 | P m n a | 13.08; 8.759; 9.002 90; 90; 90 | 1031 | Cramer, Alisha J.; Cole, Jacqueline M. Host-guest prospects of neodymium and gadolinium ultraphosphate frameworks for nuclear waste storage: Multi-temperature topological analysis of nanoporous cages in RP5O14 Journal of Solid State Chemistry, 2018, 266, 250-257 |
1560980 | CIF HKL | Nd O14 P5 | P m n a | 12.98; 8.758; 8.976 90; 90; 90 | 1020 | Cramer, Alisha J.; Cole, Jacqueline M. Host-guest prospects of neodymium and gadolinium ultraphosphate frameworks for nuclear waste storage: Multi-temperature topological analysis of nanoporous cages in RP5O14 Journal of Solid State Chemistry, 2018, 266, 250-257 |
1560982 | CIF HKL | Nd O14 P5 | P m n a | 13.028; 8.778; 9.009 90; 90; 90 | 1030.3 | Cramer, Alisha J.; Cole, Jacqueline M. Host-guest prospects of neodymium and gadolinium ultraphosphate frameworks for nuclear waste storage: Multi-temperature topological analysis of nanoporous cages in RP5O14 Journal of Solid State Chemistry, 2018, 266, 250-257 |
1561170 | CIF | C2 Mn O4 | P m n a | 7.1333; 5.8787; 9.0186 90; 90; 90 | 378.191 | Puzan, Anna N.; Baumer, Vyacheslav N.; Lisovytskiy, Dmytro V.; Mateychenko, Pavel V. Structure disordering and thermal decomposition of manganese oxalate dihydrate, MnC2O4·2H2O Journal of Solid State Chemistry, 2018, 260, 87-94 |
1568587 | CIF | Cl2 Cu H4 O2 | P m n a | 8.0553; 3.7295; 7.3674 90; 90; 90 | 221.333 | Boeré, René T. Crystal Structures of CuCl2·2H2O (Eriochalcite) and NiCl2∙6H2O (Nickelbischofite) at Low Temperature: Full Refinement of Hydrogen Atoms Using Non-Spherical Atomic Scattering Factors Crystals, 2023, 13, 293 |
1568588 | CIF | Cl2 Cu H4 O2 | P m n a | 8.0405; 3.7238; 7.3585 90; 90; 90 | 220.32 | Boeré, René T. Crystal Structures of CuCl2·2H2O (Eriochalcite) and NiCl2∙6H2O (Nickelbischofite) at Low Temperature: Full Refinement of Hydrogen Atoms Using Non-Spherical Atomic Scattering Factors Crystals, 2023, 13, 293 |
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