#------------------------------------------------------------------------------ #$Date: 2013-12-29 11:49:26 +0000 (Sun, 29 Dec 2013) $ #$Revision: 91935 $ #$URL: svn://www.crystallography.net/cod/cif/4/00/07/4000720.cif $ #------------------------------------------------------------------------------ # # This file is available in the Crystallography Open Database (COD), # http://www.crystallography.net/ # # All data on this site have been placed in the public domain by the # contributors. # data_4000720 loop_ _publ_author_name 'Zaikina, Julia V.' 'Schellenberg, Inga' 'Benbow, Evan M.' 'P\"ottgen, Rainer' 'Latturner, Susan E.' _publ_section_title ; Influence of the La/M Network on Magnetic Properties of Mn4Tetrahedra in Intermetallic Compounds La21−\dMn8M7C12(M = Ge, Sn, Sb, Te, Bi) ; _journal_issue 7 _journal_name_full 'Chemistry of Materials' _journal_page_first 1768 _journal_volume 23 _journal_year 2011 _chemical_formula_moiety 'La21 Mn8 Al0.83 Ge6.17 C12' _chemical_formula_sum 'C12 Al0.83 Ge6.17 La21 Mn8' _chemical_formula_weight 3971.25 _chemical_name_common 'lanthanum-germanium-aluminium-manganese carbide' _space_group_IT_number 225 _symmetry_cell_setting cubic _symmetry_space_group_name_Hall '-F 4 2 3' _symmetry_space_group_name_H-M 'F m -3 m' _atom_sites_solution_hydrogens none _atom_sites_solution_primary direct _atom_sites_solution_secondary difmap _audit_creation_date 2010-02-22 _audit_creation_method SHELXL-97 _cell_angle_alpha 90.00 _cell_angle_beta 90.00 _cell_angle_gamma 90.00 _cell_formula_units_Z 4 _cell_length_a 16.2259(3) _cell_length_b 16.2259(3) _cell_length_c 16.2259(3) _cell_measurement_reflns_used 2291 _cell_measurement_temperature 295(2) _cell_measurement_theta_max 62.619 _cell_measurement_theta_min 4.348 _cell_volume 4271.95(14) _computing_cell_refinement 'Saint (Bruker, 2008)' _computing_data_collection 'APEX2 (Bruker, 2008)' _computing_data_reduction 'Saint (Bruker, 2008)' _computing_publication_material 'SHELXL-97 (Sheldrick, 1997)' _computing_structure_refinement 'SHELXL-97 (Sheldrick, 1997)' _computing_structure_solution 'SHELXS-97 (Sheldrick, 1990)' _diffrn_ambient_temperature 295(2) _diffrn_measured_fraction_theta_full 1.000 _diffrn_measured_fraction_theta_max 1.000 _diffrn_measurement_device_type 'Bruker APEX-II CCD area-detector' _diffrn_measurement_method '\f and \w scans' _diffrn_radiation_monochromator graphite _diffrn_radiation_source 'fine-focus sealed tube' _diffrn_radiation_type MoK\a _diffrn_radiation_wavelength 0.71073 _diffrn_reflns_av_R_equivalents 0.0469 _diffrn_reflns_av_sigmaI/netI 0.0133 _diffrn_reflns_limit_h_max 21 _diffrn_reflns_limit_h_min -23 _diffrn_reflns_limit_k_max 23 _diffrn_reflns_limit_k_min -23 _diffrn_reflns_limit_l_max 22 _diffrn_reflns_limit_l_min -22 _diffrn_reflns_number 9045 _diffrn_reflns_theta_full 31.46 _diffrn_reflns_theta_max 31.46 _diffrn_reflns_theta_min 2.17 _exptl_absorpt_coefficient_mu 27.010 _exptl_absorpt_correction_T_max 0.2648 _exptl_absorpt_correction_T_min 0.1551 _exptl_absorpt_correction_type multi-scan _exptl_absorpt_process_details 'SADABS (Bruker, 2008)' _exptl_crystal_colour bronze _exptl_crystal_density_diffrn 6.175 _exptl_crystal_density_method 'not measured' _exptl_crystal_description cuboid _exptl_crystal_F_000 6709.3 _exptl_crystal_size_max 0.11 _exptl_crystal_size_mid 0.08 _exptl_crystal_size_min 0.07 _refine_diff_density_max 1.253 _refine_diff_density_min -1.333 _refine_diff_density_rms 0.186 _refine_ls_extinction_coef 0.000014(2) _refine_ls_extinction_expression Fc^*^=kFc[1+0.001xFc^2^\l^3^/sin(2\q)]^-1/4^ _refine_ls_extinction_method SHELXL _refine_ls_goodness_of_fit_ref 1.186 _refine_ls_hydrogen_treatment none _refine_ls_matrix_type full _refine_ls_number_parameters 22 _refine_ls_number_reflns 412 _refine_ls_number_restraints 0 _refine_ls_restrained_S_all 1.186 _refine_ls_R_factor_all 0.0215 _refine_ls_R_factor_gt 0.0200 _refine_ls_shift/su_max 0.000 _refine_ls_shift/su_mean 0.000 _refine_ls_structure_factor_coef Fsqd _refine_ls_weighting_details 'calc w=1/[\s^2^(Fo^2^)+(0.0118P)^2^+153.3339P] where P=(Fo^2^+2Fc^2^)/3' _refine_ls_weighting_scheme calc _refine_ls_wR_factor_gt 0.0420 _refine_ls_wR_factor_ref 0.0425 _reflns_number_gt 398 _reflns_number_total 412 _reflns_threshold_expression >2sigma(I) _[local]_cod_data_source_file cm1028595_si_002.cif _[local]_cod_data_source_block LA21Mn8Ge6.2Al0.8C12_CSD_422155 _cod_database_code 4000720 loop_ _symmetry_equiv_pos_as_xyz 'x, y, z' '-x, -y, z' '-x, y, -z' 'x, -y, -z' 'z, x, y' 'z, -x, -y' '-z, -x, y' '-z, x, -y' 'y, z, x' '-y, z, -x' 'y, -z, -x' '-y, -z, x' 'y, x, -z' '-y, -x, -z' 'y, -x, z' '-y, x, z' 'x, z, -y' '-x, z, y' '-x, -z, -y' 'x, -z, y' 'z, y, -x' 'z, -y, x' '-z, y, x' '-z, -y, -x' 'x, y+1/2, z+1/2' '-x, -y+1/2, z+1/2' '-x, y+1/2, -z+1/2' 'x, -y+1/2, -z+1/2' 'z, x+1/2, y+1/2' 'z, -x+1/2, -y+1/2' '-z, -x+1/2, y+1/2' '-z, x+1/2, -y+1/2' 'y, z+1/2, x+1/2' '-y, z+1/2, -x+1/2' 'y, -z+1/2, -x+1/2' '-y, -z+1/2, x+1/2' 'y, x+1/2, -z+1/2' '-y, -x+1/2, -z+1/2' 'y, -x+1/2, z+1/2' '-y, x+1/2, z+1/2' 'x, z+1/2, -y+1/2' '-x, z+1/2, y+1/2' '-x, -z+1/2, -y+1/2' 'x, -z+1/2, y+1/2' 'z, y+1/2, -x+1/2' 'z, -y+1/2, x+1/2' '-z, y+1/2, x+1/2' '-z, -y+1/2, -x+1/2' 'x+1/2, y, z+1/2' '-x+1/2, -y, z+1/2' '-x+1/2, y, -z+1/2' 'x+1/2, -y, -z+1/2' 'z+1/2, x, y+1/2' 'z+1/2, -x, -y+1/2' '-z+1/2, -x, y+1/2' '-z+1/2, x, -y+1/2' 'y+1/2, z, x+1/2' '-y+1/2, z, -x+1/2' 'y+1/2, -z, -x+1/2' '-y+1/2, -z, x+1/2' 'y+1/2, x, -z+1/2' '-y+1/2, -x, -z+1/2' 'y+1/2, -x, z+1/2' '-y+1/2, x, z+1/2' 'x+1/2, z, -y+1/2' '-x+1/2, z, y+1/2' '-x+1/2, -z, -y+1/2' 'x+1/2, -z, y+1/2' 'z+1/2, y, -x+1/2' 'z+1/2, -y, x+1/2' '-z+1/2, y, x+1/2' '-z+1/2, -y, -x+1/2' 'x+1/2, y+1/2, z' '-x+1/2, -y+1/2, z' '-x+1/2, y+1/2, -z' 'x+1/2, -y+1/2, -z' 'z+1/2, x+1/2, y' 'z+1/2, -x+1/2, -y' '-z+1/2, -x+1/2, y' '-z+1/2, x+1/2, -y' 'y+1/2, z+1/2, x' '-y+1/2, z+1/2, -x' 'y+1/2, -z+1/2, -x' '-y+1/2, -z+1/2, x' 'y+1/2, x+1/2, -z' '-y+1/2, -x+1/2, -z' 'y+1/2, -x+1/2, z' '-y+1/2, x+1/2, z' 'x+1/2, z+1/2, -y' '-x+1/2, z+1/2, y' '-x+1/2, -z+1/2, -y' 'x+1/2, -z+1/2, y' 'z+1/2, y+1/2, -x' 'z+1/2, -y+1/2, x' '-z+1/2, y+1/2, x' '-z+1/2, -y+1/2, -x' '-x, -y, -z' 'x, y, -z' 'x, -y, z' '-x, y, z' '-z, -x, -y' '-z, x, y' 'z, x, -y' 'z, -x, y' '-y, -z, -x' 'y, -z, x' '-y, z, x' 'y, z, -x' '-y, -x, z' 'y, x, z' '-y, x, -z' 'y, -x, -z' '-x, -z, y' 'x, -z, -y' 'x, z, y' '-x, z, -y' '-z, -y, x' '-z, y, -x' 'z, -y, -x' 'z, y, x' '-x, -y+1/2, -z+1/2' 'x, y+1/2, -z+1/2' 'x, -y+1/2, z+1/2' '-x, y+1/2, z+1/2' '-z, -x+1/2, -y+1/2' '-z, x+1/2, y+1/2' 'z, x+1/2, -y+1/2' 'z, -x+1/2, y+1/2' '-y, -z+1/2, -x+1/2' 'y, -z+1/2, x+1/2' '-y, z+1/2, x+1/2' 'y, z+1/2, -x+1/2' '-y, -x+1/2, z+1/2' 'y, x+1/2, z+1/2' '-y, x+1/2, -z+1/2' 'y, -x+1/2, -z+1/2' '-x, -z+1/2, y+1/2' 'x, -z+1/2, -y+1/2' 'x, z+1/2, y+1/2' '-x, z+1/2, -y+1/2' '-z, -y+1/2, x+1/2' '-z, y+1/2, -x+1/2' 'z, -y+1/2, -x+1/2' 'z, y+1/2, x+1/2' '-x+1/2, -y, -z+1/2' 'x+1/2, y, -z+1/2' 'x+1/2, -y, z+1/2' '-x+1/2, y, z+1/2' '-z+1/2, -x, -y+1/2' '-z+1/2, x, y+1/2' 'z+1/2, x, -y+1/2' 'z+1/2, -x, y+1/2' '-y+1/2, -z, -x+1/2' 'y+1/2, -z, x+1/2' '-y+1/2, z, x+1/2' 'y+1/2, z, -x+1/2' '-y+1/2, -x, z+1/2' 'y+1/2, x, z+1/2' '-y+1/2, x, -z+1/2' 'y+1/2, -x, -z+1/2' '-x+1/2, -z, y+1/2' 'x+1/2, -z, -y+1/2' 'x+1/2, z, y+1/2' '-x+1/2, z, -y+1/2' '-z+1/2, -y, x+1/2' '-z+1/2, y, -x+1/2' 'z+1/2, -y, -x+1/2' 'z+1/2, y, x+1/2' '-x+1/2, -y+1/2, -z' 'x+1/2, y+1/2, -z' 'x+1/2, -y+1/2, z' '-x+1/2, y+1/2, z' '-z+1/2, -x+1/2, -y' '-z+1/2, x+1/2, y' 'z+1/2, x+1/2, -y' 'z+1/2, -x+1/2, y' '-y+1/2, -z+1/2, -x' 'y+1/2, -z+1/2, x' '-y+1/2, z+1/2, x' 'y+1/2, z+1/2, -x' '-y+1/2, -x+1/2, z' 'y+1/2, x+1/2, z' '-y+1/2, x+1/2, -z' 'y+1/2, -x+1/2, -z' '-x+1/2, -z+1/2, y' 'x+1/2, -z+1/2, -y' 'x+1/2, z+1/2, y' '-x+1/2, z+1/2, -y' '-z+1/2, -y+1/2, x' '-z+1/2, y+1/2, -x' 'z+1/2, -y+1/2, -x' 'z+1/2, y+1/2, x' loop_ _atom_site_label _atom_site_type_symbol _atom_site_fract_x _atom_site_fract_y _atom_site_fract_z _atom_site_U_iso_or_equiv _atom_site_adp_type _atom_site_occupancy _atom_site_symmetry_multiplicity _atom_site_calc_flag _atom_site_refinement_flags La1 La 0.0000 0.165650(19) 0.165650(19) 0.01298(12) Uani 1 4 d S La2 La 0.369051(18) 0.369051(18) 0.369051(18) 0.01128(13) Uani 1 6 d S La3 La 0.5000 0.5000 0.5000 0.0379(5) Uani 1 48 d S Ge1 Ge 0.29102(7) 0.0000 0.0000 0.0129(2) Uani 1 8 d S Ge2 Ge 0.0000 0.0000 0.0000 0.018(2) Uani 0.17(2) 48 d SP Al2 Al 0.0000 0.0000 0.0000 0.018(2) Uani 0.83(2) 48 d SP Mn Mn 0.19522(5) 0.19522(5) 0.19522(5) 0.0123(3) Uani 1 6 d S C C 0.1047(5) 0.2500 0.2500 0.0205(16) Uani 1 4 d S loop_ _atom_site_aniso_label _atom_site_aniso_U_11 _atom_site_aniso_U_22 _atom_site_aniso_U_33 _atom_site_aniso_U_23 _atom_site_aniso_U_13 _atom_site_aniso_U_12 La1 0.0108(2) 0.01406(15) 0.01406(15) 0.00120(15) 0.000 0.000 La2 0.01128(13) 0.01128(13) 0.01128(13) -0.00045(10) -0.00045(10) -0.00045(10) La3 0.0379(5) 0.0379(5) 0.0379(5) 0.000 0.000 0.000 Ge1 0.0135(5) 0.0127(3) 0.0127(3) 0.000 0.000 0.000 Ge2 0.018(2) 0.018(2) 0.018(2) 0.000 0.000 0.000 Al2 0.018(2) 0.018(2) 0.018(2) 0.000 0.000 0.000 Mn 0.0123(3) 0.0123(3) 0.0123(3) 0.0003(3) 0.0003(3) 0.0003(3) C 0.019(4) 0.021(2) 0.021(2) -0.001(3) 0.000 0.000 loop_ _atom_type_symbol _atom_type_description _atom_type_scat_dispersion_real _atom_type_scat_dispersion_imag _atom_type_scat_source C C 0.0033 0.0016 'International Tables Vol C Tables 4.2.6.8 and 6.1.1.4' Mn Mn 0.3368 0.7283 'International Tables Vol C Tables 4.2.6.8 and 6.1.1.4' Ge Ge 0.1547 1.8001 'International Tables Vol C Tables 4.2.6.8 and 6.1.1.4' La La -0.2871 2.4523 'International Tables Vol C Tables 4.2.6.8 and 6.1.1.4' Al Al 0.0645 0.0514 'International Tables Vol C Tables 4.2.6.8 and 6.1.1.4' loop_ _geom_angle_atom_site_label_1 _geom_angle_atom_site_label_2 _geom_angle_atom_site_label_3 _geom_angle _geom_angle_site_symmetry_1 _geom_angle_site_symmetry_3 C La1 C 82.5(3) . 121 C La1 Mn 36.65(14) . . C La1 Mn 119.17(15) 121 . C La1 Mn 119.17(15) . 100 C La1 Mn 36.65(14) 121 100 Mn La1 Mn 155.82(4) . 100 C La1 Ge1 95.915(18) . 9 C La1 Ge1 95.915(18) 121 9 Mn La1 Ge1 91.646(4) . 9 Mn La1 Ge1 91.646(4) 100 9 C La1 Ge1 95.915(18) . 5 C La1 Ge1 95.915(18) 121 5 Mn La1 Ge1 91.646(4) . 5 Mn La1 Ge1 91.646(4) 100 5 Ge1 La1 Ge1 164.24(3) 9 5 C La1 La1 147.37(5) . 10 C La1 La1 84.81(12) 121 10 Mn La1 La1 142.765(11) . 10 Mn La1 La1 54.079(15) 100 10 Ge1 La1 La1 115.261(11) 9 10 Ge1 La1 La1 55.679(9) 5 10 C La1 La1 147.37(5) . 102 C La1 La1 84.81(12) 121 102 Mn La1 La1 142.765(11) . 102 Mn La1 La1 54.079(15) 100 102 Ge1 La1 La1 55.679(9) 9 102 Ge1 La1 La1 115.261(11) 5 102 La1 La1 La1 60.0 10 102 C La1 Ge2 138.74(14) . . C La1 Ge2 138.74(14) 121 . Mn La1 Ge2 102.092(19) . . Mn La1 Ge2 102.092(19) 100 . Ge1 La1 Ge2 82.121(17) 9 . Ge1 La1 Ge2 82.121(17) 5 . La1 La1 Ge2 60.0 10 . La1 La1 Ge2 60.0 102 . C La1 La1 84.81(12) . 5 C La1 La1 147.37(5) 121 5 Mn La1 La1 54.079(15) . 5 Mn La1 La1 142.765(11) 100 5 Ge1 La1 La1 55.679(9) 9 5 Ge1 La1 La1 115.261(11) 5 5 La1 La1 La1 120.0 10 5 La1 La1 La1 90.0 102 5 Ge2 La1 La1 60.0 . 5 C La1 La1 84.81(12) . 9 C La1 La1 147.37(5) 121 9 Mn La1 La1 54.079(15) . 9 Mn La1 La1 142.765(11) 100 9 Ge1 La1 La1 115.261(11) 9 9 Ge1 La1 La1 55.679(9) 5 9 La1 La1 La1 90.0 10 9 La1 La1 La1 120.0 102 9 Ge2 La1 La1 60.0 . 9 La1 La1 La1 60.0 5 9 C La1 La1 41.26(14) . 121 C La1 La1 41.26(14) 121 121 Mn La1 La1 77.908(19) . 121 Mn La1 La1 77.908(19) 100 121 Ge1 La1 La1 97.879(17) 9 121 Ge1 La1 La1 97.879(17) 5 121 La1 La1 La1 120.0 10 121 La1 La1 La1 120.0 102 121 Ge2 La1 La1 180.000(13) . 121 La1 La1 La1 120.0 5 121 La1 La1 La1 120.0 9 121 C La1 La2 43.921(18) . 51 C La1 La2 89.22(10) 121 51 Mn La1 La2 51.230(11) . 51 Mn La1 La2 114.941(15) 100 51 Ge1 La1 La2 138.533(13) 9 51 Ge1 La1 La2 52.011(13) 5 51 La1 La1 La2 106.170(7) 10 51 La1 La1 La2 165.333(7) 102 51 Ge2 La1 La2 119.217(6) . 51 La1 La1 La2 102.101(6) 5 51 La1 La1 La2 61.361(5) 9 51 La1 La1 La2 60.783(6) 121 51 C La1 La2 43.921(18) . 74 C La1 La2 89.22(10) 121 74 Mn La1 La2 51.230(11) . 74 Mn La1 La2 114.941(15) 100 74 Ge1 La1 La2 52.011(13) 9 74 Ge1 La1 La2 138.533(13) 5 74 La1 La1 La2 165.333(7) 10 74 La1 La1 La2 106.170(7) 102 74 Ge2 La1 La2 119.217(6) . 74 La1 La1 La2 61.361(5) 5 74 La1 La1 La2 102.101(6) 9 74 La1 La1 La2 60.783(6) 121 74 La2 La1 La2 87.091(14) 51 74 C La1 La2 89.22(10) . 171_455 C La1 La2 43.921(18) 121 171_455 Mn La1 La2 114.941(15) . 171_455 Mn La1 La2 51.230(11) 100 171_455 Ge1 La1 La2 52.011(13) 9 171_455 Ge1 La1 La2 138.533(13) 5 171_455 La1 La1 La2 102.101(6) 10 171_455 La1 La1 La2 61.361(5) 102 171_455 Ge2 La1 La2 119.217(6) . 171_455 La1 La1 La2 106.170(7) 5 171_455 La1 La1 La2 165.333(7) 9 171_455 La1 La1 La2 60.783(6) 121 171_455 La2 La1 La2 121.566(11) 51 171_455 La2 La1 La2 64.800(13) 74 171_455 C La1 La2 89.22(10) . 146_455 C La1 La2 43.921(18) 121 146_455 Mn La1 La2 114.941(15) . 146_455 Mn La1 La2 51.230(11) 100 146_455 Ge1 La1 La2 138.533(13) 9 146_455 Ge1 La1 La2 52.011(13) 5 146_455 La1 La1 La2 61.361(5) 10 146_455 La1 La1 La2 102.101(6) 102 146_455 Ge2 La1 La2 119.217(6) . 146_455 La1 La1 La2 165.333(7) 5 146_455 La1 La1 La2 106.170(7) 9 146_455 La1 La1 La2 60.783(6) 121 146_455 La2 La1 La2 64.800(13) 51 146_455 La2 La1 La2 121.566(11) 74 146_455 La2 La1 La2 87.091(14) 171_455 146_455 C La1 Mn 3.52(15) . 28 C La1 Mn 86.04(15) 121 28 Mn La1 Mn 33.13(4) . 28 Mn La1 Mn 122.684(12) 100 28 Ge1 La1 Mn 95.584(12) 9 28 Ge1 La1 Mn 95.584(12) 5 28 La1 La1 Mn 148.537(5) 10 28 La1 La1 Mn 148.537(5) 102 28 Ge2 La1 Mn 135.223(19) . 28 La1 La1 Mn 81.772(16) 5 28 La1 La1 Mn 81.772(16) 9 28 La1 La1 Mn 44.777(19) 121 28 La2 La1 Mn 43.622(7) 51 28 La2 La1 Mn 43.622(7) 74 28 La2 La1 Mn 91.771(16) 171_455 28 La2 La1 Mn 91.771(16) 146_455 28 C La1 Mn 86.04(14) . 121 C La1 Mn 3.52(15) 121 121 Mn La1 Mn 122.684(12) . 121 Mn La1 Mn 33.13(4) 100 121 Ge1 La1 Mn 95.584(12) 9 121 Ge1 La1 Mn 95.584(12) 5 121 La1 La1 Mn 81.772(16) 10 121 La1 La1 Mn 81.772(16) 102 121 Ge2 La1 Mn 135.223(19) . 121 La1 La1 Mn 148.537(5) 5 121 La1 La1 Mn 148.537(5) 9 121 La1 La1 Mn 44.777(19) 121 121 La2 La1 Mn 91.771(16) 51 121 La2 La1 Mn 91.771(16) 74 121 La2 La1 Mn 43.622(7) 171_455 121 La2 La1 Mn 43.622(7) 146_455 121 Mn La1 Mn 89.55(4) 28 121 C La1 La1 122.11(8) . 98 C La1 La1 122.11(8) 121 98 Mn La1 La1 98.519(13) . 98 Mn La1 La1 98.519(13) 100 98 Ge1 La1 La1 127.121(17) 9 98 Ge1 La1 La1 37.121(17) 5 98 La1 La1 La1 45.0 10 98 La1 La1 La1 90.0 102 98 Ge2 La1 La1 45.0 . 98 La1 La1 La1 90.0 5 98 La1 La1 La1 45.0 9 98 La1 La1 La1 135.0 121 98 La2 La1 La1 81.837(6) 51 98 La2 La1 La1 146.336(6) 74 98 La2 La1 La1 146.336(6) 171_455 98 La2 La1 La1 81.837(6) 146_455 98 Mn La1 La1 120.129(11) 28 98 Mn La1 La1 120.129(11) 121 98 C La2 C 74.2(3) 58 30 C La2 C 74.2(3) 58 74 C La2 C 74.2(3) 30 74 C La2 Mn 37.11(13) 58 28 C La2 Mn 37.11(13) 30 28 C La2 Mn 71.27(18) 74 28 C La2 Mn 37.11(13) 58 51 C La2 Mn 71.27(18) 30 51 C La2 Mn 37.11(13) 74 51 Mn La2 Mn 46.52(4) 28 51 C La2 Mn 71.27(18) 58 74 C La2 Mn 37.11(13) 30 74 C La2 Mn 37.11(13) 74 74 Mn La2 Mn 46.52(4) 28 74 Mn La2 Mn 46.52(4) 51 74 C La2 Ge1 94.79(12) 58 53 C La2 Ge1 166.03(18) 30 53 C La2 Ge1 94.79(12) 74 53 Mn La2 Ge1 131.585(18) 28 53 Mn La2 Ge1 94.76(3) 51 53 Mn La2 Ge1 131.585(18) 74 53 C La2 Ge1 94.79(12) 58 25 C La2 Ge1 94.79(12) 30 25 C La2 Ge1 166.03(18) 74 25 Mn La2 Ge1 94.76(3) 28 25 Mn La2 Ge1 131.585(18) 51 25 Mn La2 Ge1 131.585(18) 74 25 Ge1 La2 Ge1 94.67(3) 53 25 C La2 Ge1 166.03(18) 58 81 C La2 Ge1 94.79(12) 30 81 C La2 Ge1 94.79(12) 74 81 Mn La2 Ge1 131.585(18) 28 81 Mn La2 Ge1 131.585(18) 51 81 Mn La2 Ge1 94.76(3) 74 81 Ge1 La2 Ge1 94.67(3) 53 81 Ge1 La2 Ge1 94.67(3) 25 81 C La2 La3 135.86(18) 58 . C La2 La3 135.86(18) 30 . C La2 La3 135.86(18) 74 . Mn La2 La3 152.87(3) 28 . Mn La2 La3 152.87(3) 51 . Mn La2 La3 152.87(3) 74 . Ge1 La2 La3 58.11(2) 53 . Ge1 La2 La3 58.11(2) 25 . Ge1 La2 La3 58.11(2) 81 . C La2 La1 79.33(3) 58 30 C La2 La1 40.24(12) 30 30 C La2 La1 113.80(15) 74 30 Mn La2 La1 52.52(2) 28 30 Mn La2 La1 98.95(3) 51 30 Mn La2 La1 77.116(8) 74 30 Ge1 La2 La1 147.451(12) 53 30 Ge1 La2 La1 54.563(16) 25 30 Ge1 La2 La1 97.935(6) 81 30 La3 La2 La1 104.664(7) . 30 C La2 La1 113.80(15) 58 174 C La2 La1 40.24(12) 30 174 C La2 La1 79.33(3) 74 174 Mn La2 La1 77.116(8) 28 174 Mn La2 La1 98.95(3) 51 174 Mn La2 La1 52.52(2) 74 174 Ge1 La2 La1 147.451(12) 53 174 Ge1 La2 La1 97.935(6) 25 174 Ge1 La2 La1 54.563(16) 81 174 La3 La2 La1 104.664(7) . 174 La1 La2 La1 58.434(11) 30 174 C La2 La1 113.80(15) 58 74 C La2 La1 79.33(3) 30 74 C La2 La1 40.24(12) 74 74 Mn La2 La1 98.95(3) 28 74 Mn La2 La1 77.116(8) 51 74 Mn La2 La1 52.52(2) 74 74 Ge1 La2 La1 97.935(6) 53 74 Ge1 La2 La1 147.451(12) 25 74 Ge1 La2 La1 54.563(16) 81 74 La3 La2 La1 104.664(7) . 74 La1 La2 La1 113.821(6) 30 74 La1 La2 La1 57.278(11) 174 74 C La2 La1 79.33(3) 58 146 C La2 La1 113.80(15) 30 146 C La2 La1 40.24(12) 74 146 Mn La2 La1 98.95(3) 28 146 Mn La2 La1 52.52(2) 51 146 Mn La2 La1 77.116(8) 74 146 Ge1 La2 La1 54.563(16) 53 146 Ge1 La2 La1 147.451(12) 25 146 Ge1 La2 La1 97.935(6) 81 146 La3 La2 La1 104.664(7) . 146 La1 La2 La1 150.666(14) 30 146 La1 La2 La1 113.821(6) 174 146 La1 La2 La1 58.434(11) 74 146 C La2 La1 40.24(12) 58 130 C La2 La1 79.33(3) 30 130 C La2 La1 113.80(15) 74 130 Mn La2 La1 52.52(2) 28 130 Mn La2 La1 77.116(8) 51 130 Mn La2 La1 98.95(3) 74 130 Ge1 La2 La1 97.935(6) 53 130 Ge1 La2 La1 54.563(16) 25 130 Ge1 La2 La1 147.451(12) 81 130 La3 La2 La1 104.664(7) . 130 La1 La2 La1 57.278(11) 30 130 La1 La2 La1 113.821(6) 174 130 La1 La2 La1 150.666(14) 74 130 La1 La2 La1 113.821(6) 146 130 C La2 La1 40.24(12) 58 58 C La2 La1 113.80(15) 30 58 C La2 La1 79.33(3) 74 58 Mn La2 La1 77.116(8) 28 58 Mn La2 La1 52.52(2) 51 58 Mn La2 La1 98.95(3) 74 58 Ge1 La2 La1 54.563(16) 53 58 Ge1 La2 La1 97.935(6) 25 58 Ge1 La2 La1 147.451(12) 81 58 La3 La2 La1 104.664(7) . 58 La1 La2 La1 113.821(6) 30 58 La1 La2 La1 150.666(14) 174 58 La1 La2 La1 113.821(6) 74 58 La1 La2 La1 57.278(11) 146 58 La1 La2 La1 58.434(11) 130 58 C La2 La2 134.32(3) 58 100_655 C La2 La2 134.32(3) 30 100_655 C La2 La2 81.12(18) 74 100_655 Mn La2 La2 152.39(3) 28 100_655 Mn La2 La2 109.128(18) 51 100_655 Mn La2 La2 109.128(18) 74 100_655 Ge1 La2 La2 49.336(8) 53 100_655 Ge1 La2 La2 112.85(2) 25 100_655 Ge1 La2 La2 49.336(7) 81 100_655 La3 La2 La2 54.7 . 100_655 La1 La2 La2 146.336(6) 30 100_655 La1 La2 La2 98.163(6) 174 100_655 La1 La2 La2 57.600(7) 74 100_655 La1 La2 La2 57.600(7) 146 100_655 La1 La2 La2 146.336(6) 130 100_655 La1 La2 La2 98.163(6) 58 100_655 C La2 La2 134.32(3) 58 99_565 C La2 La2 81.12(18) 30 99_565 C La2 La2 134.32(3) 74 99_565 Mn La2 La2 109.128(17) 28 99_565 Mn La2 La2 152.39(3) 51 99_565 Mn La2 La2 109.128(17) 74 99_565 Ge1 La2 La2 112.85(2) 53 99_565 Ge1 La2 La2 49.336(8) 25 99_565 Ge1 La2 La2 49.336(7) 81 99_565 La3 La2 La2 54.7 . 99_565 La1 La2 La2 57.600(7) 30 99_565 La1 La2 La2 57.600(7) 174 99_565 La1 La2 La2 98.163(6) 74 99_565 La1 La2 La2 146.336(6) 146 99_565 La1 La2 La2 98.163(6) 130 99_565 La1 La2 La2 146.336(6) 58 99_565 La2 La2 La2 90.0 100_655 99_565 C La2 La2 81.12(18) 58 98_556 C La2 La2 134.32(3) 30 98_556 C La2 La2 134.32(3) 74 98_556 Mn La2 La2 109.128(17) 28 98_556 Mn La2 La2 109.128(17) 51 98_556 Mn La2 La2 152.39(3) 74 98_556 Ge1 La2 La2 49.336(7) 53 98_556 Ge1 La2 La2 49.336(7) 25 98_556 Ge1 La2 La2 112.85(2) 81 98_556 La3 La2 La2 54.7 . 98_556 La1 La2 La2 98.163(6) 30 98_556 La1 La2 La2 146.336(6) 174 98_556 La1 La2 La2 146.336(6) 74 98_556 La1 La2 La2 98.163(6) 146 98_556 La1 La2 La2 57.600(7) 130 98_556 La1 La2 La2 57.600(7) 58 98_556 La2 La2 La2 90.0 100_655 98_556 La2 La2 La2 90.0 99_565 98_556 C La2 La2 67.36(15) 58 28 C La2 La2 67.36(15) 30 28 C La2 La2 8.88(18) 74 28 Mn La2 La2 62.39(3) 28 28 Mn La2 La2 30.874(6) 51 28 Mn La2 La2 30.874(6) 74 28 Ge1 La2 La2 100.732(18) 53 28 Ge1 La2 La2 157.15(2) 25 28 Ge1 La2 La2 100.732(18) 81 28 La3 La2 La2 144.7 . 28 La1 La2 La2 106.170(7) 30 28 La1 La2 La2 77.899(6) 174 28 La1 La2 La2 46.455(7) 74 28 La1 La2 La2 46.455(7) 146 28 La1 La2 La2 106.170(7) 130 28 La1 La2 La2 77.899(6) 58 28 La2 La2 La2 90.0 100_655 28 La2 La2 La2 135.0 99_565 28 La2 La2 La2 135.0 98_556 28 Ge1 La3 Ge1 180.0 177_556 81 Ge1 La3 Ge1 90.0 177_556 149_565 Ge1 La3 Ge1 90.0 81 149_565 Ge1 La3 Ge1 90.0 177_556 53 Ge1 La3 Ge1 90.0 81 53 Ge1 La3 Ge1 180.0 149_565 53 Ge1 La3 Ge1 90.0 177_556 121_655 Ge1 La3 Ge1 90.0 81 121_655 Ge1 La3 Ge1 90.0 149_565 121_655 Ge1 La3 Ge1 90.0 53 121_655 Ge1 La3 Ge1 90.0 177_556 25 Ge1 La3 Ge1 90.0 81 25 Ge1 La3 Ge1 90.0 149_565 25 Ge1 La3 Ge1 90.0 53 25 Ge1 La3 Ge1 180.0 121_655 25 Ge1 La3 La2 125.3 177_556 . Ge1 La3 La2 54.7 81 . Ge1 La3 La2 125.3 149_565 . Ge1 La3 La2 54.7 53 . Ge1 La3 La2 125.3 121_655 . Ge1 La3 La2 54.7 25 . Ge1 La3 La2 54.7 177_556 97_666 Ge1 La3 La2 125.3 81 97_666 Ge1 La3 La2 54.7 149_565 97_666 Ge1 La3 La2 125.3 53 97_666 Ge1 La3 La2 54.7 121_655 97_666 Ge1 La3 La2 125.3 25 97_666 La2 La3 La2 180.000(8) . 97_666 Ge1 La3 La2 125.3 177_556 100_655 Ge1 La3 La2 54.7 81 100_655 Ge1 La3 La2 125.3 149_565 100_655 Ge1 La3 La2 54.7 53 100_655 Ge1 La3 La2 54.7 121_655 100_655 Ge1 La3 La2 125.3 25 100_655 La2 La3 La2 70.5 . 100_655 La2 La3 La2 109.5 97_666 100_655 Ge1 La3 La2 54.7 177_556 4_566 Ge1 La3 La2 125.3 81 4_566 Ge1 La3 La2 54.7 149_565 4_566 Ge1 La3 La2 125.3 53 4_566 Ge1 La3 La2 125.3 121_655 4_566 Ge1 La3 La2 54.7 25 4_566 La2 La3 La2 109.5 . 4_566 La2 La3 La2 70.5 97_666 4_566 La2 La3 La2 180.0 100_655 4_566 Ge1 La3 La2 125.3 177_556 99_565 Ge1 La3 La2 54.7 81 99_565 Ge1 La3 La2 54.7 149_565 99_565 Ge1 La3 La2 125.3 53 99_565 Ge1 La3 La2 125.3 121_655 99_565 Ge1 La3 La2 54.7 25 99_565 La2 La3 La2 70.5 . 99_565 La2 La3 La2 109.5 97_666 99_565 La2 La3 La2 109.5 100_655 99_565 La2 La3 La2 70.5 4_566 99_565 Ge1 La3 La2 54.7 177_556 3_656 Ge1 La3 La2 125.3 81 3_656 Ge1 La3 La2 125.3 149_565 3_656 Ge1 La3 La2 54.7 53 3_656 Ge1 La3 La2 54.7 121_655 3_656 Ge1 La3 La2 125.3 25 3_656 La2 La3 La2 109.5 . 3_656 La2 La3 La2 70.5 97_666 3_656 La2 La3 La2 70.5 100_655 3_656 La2 La3 La2 109.5 4_566 3_656 La2 La3 La2 180.0 99_565 3_656 Ge1 La3 La2 54.7 177_556 98_556 Ge1 La3 La2 125.3 81 98_556 Ge1 La3 La2 125.3 149_565 98_556 Ge1 La3 La2 54.7 53 98_556 Ge1 La3 La2 125.3 121_655 98_556 Ge1 La3 La2 54.7 25 98_556 La2 La3 La2 70.5 . 98_556 La2 La3 La2 109.5 97_666 98_556 La2 La3 La2 109.5 100_655 98_556 La2 La3 La2 70.5 4_566 98_556 La2 La3 La2 109.5 99_565 98_556 La2 La3 La2 70.5 3_656 98_556 Ge1 La3 La2 125.3 177_556 2_665 Ge1 La3 La2 54.7 81 2_665 Ge1 La3 La2 54.7 149_565 2_665 Ge1 La3 La2 125.3 53 2_665 Ge1 La3 La2 54.7 121_655 2_665 Ge1 La3 La2 125.3 25 2_665 La2 La3 La2 109.5 . 2_665 La2 La3 La2 70.5 97_666 2_665 La2 La3 La2 70.5 100_655 2_665 La2 La3 La2 109.5 4_566 2_665 La2 La3 La2 70.5 99_565 2_665 La2 La3 La2 109.5 3_656 2_665 La2 La3 La2 180.000(8) 98_556 2_665 Ge1 La3 La1 153.644(4) 177_556 74 Ge1 La3 La1 26.356(4) 81 74 Ge1 La3 La1 116.356(4) 149_565 74 Ge1 La3 La1 63.644(4) 53 74 Ge1 La3 La1 90.0 121_655 74 Ge1 La3 La1 90.0 25 74 La2 La3 La1 39.317(2) . 74 La2 La3 La1 140.683(2) 97_666 74 La2 La3 La1 39.317(2) 100_655 74 La2 La3 La1 140.683(2) 4_566 74 La2 La3 La1 74.869(3) 99_565 74 La2 La3 La1 105.131(3) 3_656 74 La2 La3 La1 105.131(3) 98_556 74 La2 La3 La1 74.869(3) 2_665 74 Ge1 La3 La1 116.356(4) 177_556 30 Ge1 La3 La1 63.644(4) 81 30 Ge1 La3 La1 90.0 149_565 30 Ge1 La3 La1 90.0 53 30 Ge1 La3 La1 153.644(4) 121_655 30 Ge1 La3 La1 26.356(4) 25 30 La2 La3 La1 39.317(2) . 30 La2 La3 La1 140.683(2) 97_666 30 La2 La3 La1 105.131(3) 100_655 30 La2 La3 La1 74.869(3) 4_566 30 La2 La3 La1 39.317(2) 99_565 30 La2 La3 La1 140.683(2) 3_656 30 La2 La3 La1 74.869(3) 98_556 30 La2 La3 La1 105.131(3) 2_665 30 La1 La3 La1 66.560(3) 74 30 Ge1 La3 La1 116.356(4) 177_556 146 Ge1 La3 La1 63.644(4) 81 146 Ge1 La3 La1 153.644(4) 149_565 146 Ge1 La3 La1 26.356(4) 53 146 Ge1 La3 La1 90.0 121_655 146 Ge1 La3 La1 90.0 25 146 La2 La3 La1 39.317(2) . 146 La2 La3 La1 140.683(2) 97_666 146 La2 La3 La1 39.317(2) 100_655 146 La2 La3 La1 140.683(2) 4_566 146 La2 La3 La1 105.131(3) 99_565 146 La2 La3 La1 74.869(3) 3_656 146 La2 La3 La1 74.869(3) 98_556 146 La2 La3 La1 105.131(3) 2_665 146 La1 La3 La1 37.289(8) 74 146 La1 La3 La1 78.634(3) 30 146 Ge1 La3 La1 153.644(4) 177_556 174 Ge1 La3 La1 26.356(4) 81 174 Ge1 La3 La1 90.0 149_565 174 Ge1 La3 La1 90.0 53 174 Ge1 La3 La1 116.356(4) 121_655 174 Ge1 La3 La1 63.644(4) 25 174 La2 La3 La1 39.317(2) . 174 La2 La3 La1 140.683(2) 97_666 174 La2 La3 La1 74.869(3) 100_655 174 La2 La3 La1 105.131(3) 4_566 174 La2 La3 La1 39.317(2) 99_565 174 La2 La3 La1 140.683(2) 3_656 174 La2 La3 La1 105.131(3) 98_556 174 La2 La3 La1 74.869(3) 2_665 174 La1 La3 La1 36.590(5) 74 174 La1 La3 La1 37.289(8) 30 174 La1 La3 La1 66.560(3) 146 174 Ge1 La3 La1 90.0 177_556 130 Ge1 La3 La1 90.0 81 130 Ge1 La3 La1 116.356(4) 149_565 130 Ge1 La3 La1 63.644(4) 53 130 Ge1 La3 La1 153.644(4) 121_655 130 Ge1 La3 La1 26.356(4) 25 130 La2 La3 La1 39.317(2) . 130 La2 La3 La1 140.683(2) 97_666 130 La2 La3 La1 105.131(3) 100_655 130 La2 La3 La1 74.869(3) 4_566 130 La2 La3 La1 74.869(3) 99_565 130 La2 La3 La1 105.131(3) 3_656 130 La2 La3 La1 39.317(2) 98_556 130 La2 La3 La1 140.683(2) 2_665 130 La1 La3 La1 78.634(3) 74 130 La1 La3 La1 36.590(5) 30 130 La1 La3 La1 66.560(3) 146 130 La1 La3 La1 66.560(3) 174 130 Ge1 La3 La1 90.0 177_556 58 Ge1 La3 La1 90.0 81 58 Ge1 La3 La1 153.644(4) 149_565 58 Ge1 La3 La1 26.356(4) 53 58 Ge1 La3 La1 116.356(4) 121_655 58 Ge1 La3 La1 63.644(4) 25 58 La2 La3 La1 39.317(2) . 58 La2 La3 La1 140.683(2) 97_666 58 La2 La3 La1 74.869(3) 100_655 58 La2 La3 La1 105.131(3) 4_566 58 La2 La3 La1 105.131(3) 99_565 58 La2 La3 La1 74.869(3) 3_656 58 La2 La3 La1 39.317(2) 98_556 58 La2 La3 La1 140.683(2) 2_665 58 La1 La3 La1 66.560(3) 74 58 La1 La3 La1 66.560(3) 30 58 La1 La3 La1 36.590(5) 146 58 La1 La3 La1 78.634(3) 174 58 La1 La3 La1 37.289(8) 130 58 La2 Ge1 La2 134.30(4) 28 25_544 La2 Ge1 La2 81.329(15) 28 123_554 La2 Ge1 La2 81.329(15) 25_544 123_554 La2 Ge1 La2 81.329(15) 28 122_545 La2 Ge1 La2 81.329(15) 25_544 122_545 La2 Ge1 La2 134.30(4) 123_554 122_545 La2 Ge1 La1 138.930(13) 28 106 La2 Ge1 La1 73.426(9) 25_544 106 La2 Ge1 La1 138.930(13) 123_554 106 La2 Ge1 La1 73.426(9) 122_545 106 La2 Ge1 La1 138.930(13) 28 6 La2 Ge1 La1 73.426(9) 25_544 6 La2 Ge1 La1 73.426(9) 123_554 6 La2 Ge1 La1 138.930(13) 122_545 6 La1 Ge1 La1 68.641(18) 106 6 La2 Ge1 La1 73.426(9) 28 5 La2 Ge1 La1 138.930(13) 25_544 5 La2 Ge1 La1 138.930(13) 123_554 5 La2 Ge1 La1 73.426(9) 122_545 5 La1 Ge1 La1 68.641(18) 106 5 La1 Ge1 La1 105.76(3) 6 5 La2 Ge1 La1 73.426(9) 28 9 La2 Ge1 La1 138.930(13) 25_544 9 La2 Ge1 La1 73.426(9) 123_554 9 La2 Ge1 La1 138.930(13) 122_545 9 La1 Ge1 La1 105.76(3) 106 9 La1 Ge1 La1 68.641(18) 6 9 La1 Ge1 La1 68.641(18) 5 9 La2 Ge1 La3 67.15(2) 28 25_544 La2 Ge1 La3 67.15(2) 25_544 25_544 La2 Ge1 La3 67.15(2) 123_554 25_544 La2 Ge1 La3 67.15(2) 122_545 25_544 La1 Ge1 La3 127.121(17) 106 25_544 La1 Ge1 La3 127.121(17) 6 25_544 La1 Ge1 La3 127.121(17) 5 25_544 La1 Ge1 La3 127.121(17) 9 25_544 La1 Ge2 La1 60.0 105 101 La1 Ge2 La1 60.0 105 97 La1 Ge2 La1 60.0 101 97 La1 Ge2 La1 120.0 105 . La1 Ge2 La1 120.0 101 . La1 Ge2 La1 180.000(13) 97 . La1 Ge2 La1 180.000(13) 105 9 La1 Ge2 La1 120.0 101 9 La1 Ge2 La1 120.0 97 9 La1 Ge2 La1 60.0 . 9 La1 Ge2 La1 120.0 105 5 La1 Ge2 La1 180.000(13) 101 5 La1 Ge2 La1 120.0 97 5 La1 Ge2 La1 60.0 . 5 La1 Ge2 La1 60.0 9 5 La1 Ge2 La1 90.0 105 106 La1 Ge2 La1 120.0 101 106 La1 Ge2 La1 60.0 97 106 La1 Ge2 La1 120.0 . 106 La1 Ge2 La1 90.0 9 106 La1 Ge2 La1 60.0 5 106 La1 Ge2 La1 120.0 105 6 La1 Ge2 La1 90.0 101 6 La1 Ge2 La1 60.0 97 6 La1 Ge2 La1 120.0 . 6 La1 Ge2 La1 60.0 9 6 La1 Ge2 La1 90.0 5 6 La1 Ge2 La1 60.0 106 6 La1 Ge2 La1 60.0 105 102 La1 Ge2 La1 90.0 101 102 La1 Ge2 La1 120.0 97 102 La1 Ge2 La1 60.0 . 102 La1 Ge2 La1 120.0 9 102 La1 Ge2 La1 90.0 5 102 La1 Ge2 La1 120.0 106 102 La1 Ge2 La1 180.000(7) 6 102 La1 Ge2 La1 60.0 105 2 La1 Ge2 La1 120.0 101 2 La1 Ge2 La1 90.0 97 2 La1 Ge2 La1 90.0 . 2 La1 Ge2 La1 120.0 9 2 La1 Ge2 La1 60.0 5 2 La1 Ge2 La1 60.0 106 2 La1 Ge2 La1 120.0 6 2 La1 Ge2 La1 60.0 102 2 La1 Ge2 La1 120.0 105 98 La1 Ge2 La1 60.0 101 98 La1 Ge2 La1 90.0 97 98 La1 Ge2 La1 90.0 . 98 La1 Ge2 La1 60.0 9 98 La1 Ge2 La1 120.0 5 98 La1 Ge2 La1 120.0 106 98 La1 Ge2 La1 60.0 6 98 La1 Ge2 La1 120.0 102 98 La1 Ge2 La1 180.0 2 98 La1 Ge2 La1 90.0 105 10 La1 Ge2 La1 60.0 101 10 La1 Ge2 La1 120.0 97 10 La1 Ge2 La1 60.0 . 10 La1 Ge2 La1 90.0 9 10 La1 Ge2 La1 120.0 5 10 La1 Ge2 La1 180.000(7) 106 10 La1 Ge2 La1 120.0 6 10 La1 Ge2 La1 60.0 102 10 La1 Ge2 La1 120.0 2 10 La1 Ge2 La1 60.0 98 10 C Mn C 119.16(5) 5 9 C Mn C 119.16(5) 5 . C Mn C 119.16(5) 9 . C Mn Mn 102.26(15) 5 28 C Mn Mn 102.26(15) 9 28 C Mn Mn 49.46(17) . 28 C Mn Mn 49.46(17) 5 51 C Mn Mn 102.26(15) 9 51 C Mn Mn 102.26(15) . 51 Mn Mn Mn 60.0 28 51 C Mn Mn 102.26(15) 5 74 C Mn Mn 49.46(17) 9 74 C Mn Mn 102.26(15) . 74 Mn Mn Mn 60.0 28 74 Mn Mn Mn 60.0 51 74 C Mn La2 59.623(18) 5 28 C Mn La2 59.623(18) 9 28 C Mn La2 167.07(18) . 28 Mn Mn La2 117.61(3) 28 28 Mn Mn La2 66.74(2) 51 28 Mn Mn La2 66.74(2) 74 28 C Mn La2 167.07(18) 5 51 C Mn La2 59.623(18) 9 51 C Mn La2 59.623(18) . 51 Mn Mn La2 66.74(2) 28 51 Mn Mn La2 117.61(3) 51 51 Mn Mn La2 66.74(2) 74 51 La2 Mn La2 118.253(12) 28 51 C Mn La2 59.623(18) 5 74 C Mn La2 167.07(18) 9 74 C Mn La2 59.623(18) . 74 Mn Mn La2 66.74(2) 28 74 Mn Mn La2 66.74(2) 51 74 Mn Mn La2 117.61(3) 74 74 La2 Mn La2 118.253(12) 28 74 La2 Mn La2 118.253(12) 51 74 C Mn La1 52.63(17) 5 5 C Mn La1 113.89(13) 9 5 C Mn La1 113.89(13) . 5 Mn Mn La1 142.765(11) 28 5 Mn Mn La1 102.092(19) 51 5 Mn Mn La1 142.765(11) 74 5 La2 Mn La1 76.251(14) 28 5 La2 Mn La1 140.30(4) 51 5 La2 Mn La1 76.251(14) 74 5 C Mn La1 113.89(13) 5 9 C Mn La1 52.63(17) 9 9 C Mn La1 113.89(13) . 9 Mn Mn La1 142.765(11) 28 9 Mn Mn La1 142.765(11) 51 9 Mn Mn La1 102.092(19) 74 9 La2 Mn La1 76.251(14) 28 9 La2 Mn La1 76.251(14) 51 9 La2 Mn La1 140.30(4) 74 9 La1 Mn La1 71.84(3) 5 9 C Mn La1 113.89(13) 5 . C Mn La1 113.89(13) 9 . C Mn La1 52.63(17) . . Mn Mn La1 102.092(19) 28 . Mn Mn La1 142.765(11) 51 . Mn Mn La1 142.765(11) 74 . La2 Mn La1 140.30(4) 28 . La2 Mn La1 76.251(14) 51 . La2 Mn La1 76.251(14) 74 . La1 Mn La1 71.84(3) 5 . La1 Mn La1 71.84(3) 9 . Mn C Mn 81.1(3) 28 . Mn C La1 171.8(3) 28 . Mn C La1 90.72(5) . . Mn C La1 90.72(5) 28 121 Mn C La1 171.8(3) . 121 La1 C La1 97.5(3) . 121 Mn C La2 83.27(15) 28 74 Mn C La2 83.27(15) . 74 La1 C La2 95.84(10) . 74 La1 C La2 95.84(10) 121 74 Mn C La2 83.27(15) 28 51 Mn C La2 83.27(15) . 51 La1 C La2 95.84(10) . 51 La1 C La2 95.84(10) 121 51 La2 C La2 162.2(4) 74 51 loop_ _geom_bond_atom_site_label_1 _geom_bond_atom_site_label_2 _geom_bond_distance _geom_bond_site_symmetry_2 La1 C 2.575(6) . La1 C 2.575(6) 121 La1 Mn 3.2396(11) . La1 Mn 3.2396(11) 100 La1 Ge1 3.3709(7) 9 La1 Ge1 3.3709(7) 5 La1 La1 3.8011(4) 10 La1 La1 3.8011(4) 102 La1 Ge2 3.8011(4) . La1 La1 3.8011(4) 5 La1 La1 3.8011(5) 9 La1 La1 3.8712(9) 121 La1 La2 3.9654(3) 51 La1 La2 3.9654(3) 74 La1 La2 3.9654(3) 171_455 La1 La2 3.9654(3) 146_455 La1 Mn 4.4974(4) 28 La1 Mn 4.4974(4) 121 La1 La1 5.3756(6) 98 La2 C 2.7650(14) 58 La2 C 2.7650(14) 30 La2 C 2.7650(14) 74 La2 Mn 3.1829(5) 28 La2 Mn 3.1829(5) 51 La2 Mn 3.1829(5) 74 La2 Ge1 3.2607(5) 53 La2 Ge1 3.2607(5) 25 La2 Ge1 3.2607(5) 81 La2 La3 3.6802(5) . La2 La1 3.9654(3) 30 La2 La1 3.9654(3) 174 La2 La1 3.9654(3) 74 La2 La1 3.9654(3) 146 La2 La1 3.9654(3) 130 La2 La1 3.9654(3) 58 La2 La2 4.2495(6) 100_655 La2 La2 4.2495(6) 99_565 La2 La2 4.2495(6) 98_556 La2 La2 5.4637(8) 28 La3 Ge1 3.3908(12) 177_556 La3 Ge1 3.3908(12) 81 La3 Ge1 3.3908(12) 149_565 La3 Ge1 3.3908(12) 53 La3 Ge1 3.3908(12) 121_655 La3 Ge1 3.3908(12) 25 La3 La2 3.6802(5) 97_666 La3 La2 3.6802(5) 100_655 La3 La2 3.6802(5) 4_566 La3 La2 3.6802(5) 99_565 La3 La2 3.6802(5) 3_656 La3 La2 3.6802(5) 98_556 La3 La2 3.6802(5) 2_665 La3 La1 6.05446(18) 74 La3 La1 6.05446(18) 30 La3 La1 6.05446(19) 146 La3 La1 6.05446(18) 174 La3 La1 6.05446(18) 130 La3 La1 6.05446(18) 58 Ge1 La2 3.2607(5) 28 Ge1 La2 3.2607(5) 25_544 Ge1 La2 3.2607(5) 123_554 Ge1 La2 3.2607(5) 122_545 Ge1 La1 3.3709(7) 106 Ge1 La1 3.3709(7) 6 Ge1 La1 3.3709(7) 5 Ge1 La1 3.3709(7) 9 Ge1 La3 3.3908(12) 25_544 Ge2 La1 3.8011(5) 105 Ge2 La1 3.8011(5) 101 Ge2 La1 3.8011(5) 97 Ge2 La1 3.8011(4) 9 Ge2 La1 3.8011(4) 5 Ge2 La1 3.8011(4) 106 Ge2 La1 3.8011(4) 6 Ge2 La1 3.8011(4) 102 Ge2 La1 3.8011(4) 2 Ge2 La1 3.8011(4) 98 Ge2 La1 3.8011(4) 10 Mn C 1.934(7) 5 Mn C 1.934(7) 9 Mn C 1.934(7) . Mn Mn 2.514(2) 28 Mn Mn 2.514(2) 51 Mn Mn 2.514(2) 74 Mn La2 3.1829(5) 28 Mn La2 3.1829(5) 51 Mn La2 3.1829(5) 74 Mn La1 3.2396(11) 5 Mn La1 3.2396(11) 9 C Mn 1.934(7) 28 C La1 2.575(6) 121 C La2 2.7650(14) 74 C La2 2.7650(14) 51 _journal_paper_doi 10.1021/cm1028595