Encyclopedia of Crystallographic Prototypes

AFLOW Prototype: A7B2C3_tI24_139_aeg_e_be-001

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Rb$_{3}$Mn$_{2}$Cl$_{7}$ Structure: A7B2C3_tI24_139_aeg_e_be-001

Picture of Structure; Click for Big Picture
Prototype Cl$_{7}$Mn$_{2}$Rb$_{3}$
AFLOW prototype label A7B2C3_tI24_139_aeg_e_be-001
ICSD 9491
CCDC 1594478
Pearson symbol tI24
Space group number 139
Space group symbol $I4/mmm$
AFLOW prototype command aflow --proto=A7B2C3_tI24_139_aeg_e_be-001
--params=$a, \allowbreak c/a, \allowbreak z_{3}, \allowbreak z_{4}, \allowbreak z_{5}, \allowbreak z_{6}$

Other compounds with this structure

Cs$_{3}$Ca$_{2}$Cl$_{7}$,  Cs$_{3}$Mg$_{2}$Cl$_{7}$,  K$_{3}$Mn$_{2}$Cl$_{7}$,  Rb$_{3}$Mn$_{2}$Br$_{7}$


  • Quaternary compounds with this structure are listed under the Sr$_{3}$Sc$_{2}$O$_{5}$Cl$_{2}$ prototype. The ICSD list some, but not all, of those structures under the Rb$_{3}$Mn$_{2}$Cl$_{7}$ structure type.

\[ \begin{array}{ccc} \mathbf{a_{1}}&=&- \frac{1}{2}a \,\mathbf{\hat{x}}+\frac{1}{2}a \,\mathbf{\hat{y}}+\frac{1}{2}c \,\mathbf{\hat{z}}\\\mathbf{a_{2}}&=&\frac{1}{2}a \,\mathbf{\hat{x}}- \frac{1}{2}a \,\mathbf{\hat{y}}+\frac{1}{2}c \,\mathbf{\hat{z}}\\\mathbf{a_{3}}&=&\frac{1}{2}a \,\mathbf{\hat{x}}+\frac{1}{2}a \,\mathbf{\hat{y}}- \frac{1}{2}c \,\mathbf{\hat{z}} \end{array}\]

Basis vectors

Lattice coordinates Cartesian coordinates Wyckoff position Atom type
$\mathbf{B_{1}}$ = $0$ = $0$ (2a) Cl I
$\mathbf{B_{2}}$ = $\frac{1}{2} \, \mathbf{a}_{1}+\frac{1}{2} \, \mathbf{a}_{2}$ = $\frac{1}{2}c \,\mathbf{\hat{z}}$ (2b) Rb I
$\mathbf{B_{3}}$ = $z_{3} \, \mathbf{a}_{1}+z_{3} \, \mathbf{a}_{2}$ = $c z_{3} \,\mathbf{\hat{z}}$ (4e) Cl II
$\mathbf{B_{4}}$ = $- z_{3} \, \mathbf{a}_{1}- z_{3} \, \mathbf{a}_{2}$ = $- c z_{3} \,\mathbf{\hat{z}}$ (4e) Cl II
$\mathbf{B_{5}}$ = $z_{4} \, \mathbf{a}_{1}+z_{4} \, \mathbf{a}_{2}$ = $c z_{4} \,\mathbf{\hat{z}}$ (4e) Mn I
$\mathbf{B_{6}}$ = $- z_{4} \, \mathbf{a}_{1}- z_{4} \, \mathbf{a}_{2}$ = $- c z_{4} \,\mathbf{\hat{z}}$ (4e) Mn I
$\mathbf{B_{7}}$ = $z_{5} \, \mathbf{a}_{1}+z_{5} \, \mathbf{a}_{2}$ = $c z_{5} \,\mathbf{\hat{z}}$ (4e) Rb II
$\mathbf{B_{8}}$ = $- z_{5} \, \mathbf{a}_{1}- z_{5} \, \mathbf{a}_{2}$ = $- c z_{5} \,\mathbf{\hat{z}}$ (4e) Rb II
$\mathbf{B_{9}}$ = $\left(z_{6} + \frac{1}{2}\right) \, \mathbf{a}_{1}+z_{6} \, \mathbf{a}_{2}+\frac{1}{2} \, \mathbf{a}_{3}$ = $\frac{1}{2}a \,\mathbf{\hat{y}}+c z_{6} \,\mathbf{\hat{z}}$ (8g) Cl III
$\mathbf{B_{10}}$ = $z_{6} \, \mathbf{a}_{1}+\left(z_{6} + \frac{1}{2}\right) \, \mathbf{a}_{2}+\frac{1}{2} \, \mathbf{a}_{3}$ = $\frac{1}{2}a \,\mathbf{\hat{x}}+c z_{6} \,\mathbf{\hat{z}}$ (8g) Cl III
$\mathbf{B_{11}}$ = $- \left(z_{6} - \frac{1}{2}\right) \, \mathbf{a}_{1}- z_{6} \, \mathbf{a}_{2}+\frac{1}{2} \, \mathbf{a}_{3}$ = $\frac{1}{2}a \,\mathbf{\hat{y}}- c z_{6} \,\mathbf{\hat{z}}$ (8g) Cl III
$\mathbf{B_{12}}$ = $- z_{6} \, \mathbf{a}_{1}- \left(z_{6} - \frac{1}{2}\right) \, \mathbf{a}_{2}+\frac{1}{2} \, \mathbf{a}_{3}$ = $\frac{1}{2}a \,\mathbf{\hat{x}}- c z_{6} \,\mathbf{\hat{z}}$ (8g) Cl III

References

  • M. Amit, A. Horowitz, and J. Makovsky, Crystal Structure of Rb$_{2}$CoCl$_{4}$ and Rb$_{3}$Mn$_{2}$Cl$_{7}$, Israel J. Chem. 10, 715–719 (1972), doi:10.1002/ijch.197200070.

First cited in

  • N. Anderson, M. J. Mehl, H. Eckert, S. Divilov, X. Campilongo, S. Curtarolo, The AFLOW Library of Crystallographic Prototypes: Part 5. Submitted to Computational Materials Science (2026).

Geometry files


Prototype Generator

aflow --proto=A7B2C3_tI24_139_aeg_e_be --params=$a,c/a,z_{3},z_{4},z_{5},z_{6}$

Species:

Running:

Output: