#------------------------------------------------------------------------------ #$Date: 2015-02-25 15:01:53 +0200 (Wed, 25 Feb 2015) $ #$Revision: 132410 $ #$URL: file:///home/coder/svn-repositories/cod/cif/2/00/83/2008329.cif $ #------------------------------------------------------------------------------ # # This file is available in the Crystallography Open Database (COD), # http://www.crystallography.net/. The original data for this entry # were provided by IUCr Journals, http://journals.iucr.org/. # # The file may be used within the scientific community so long as # proper attribution is given to the journal article from which the # data were obtained. # data_2008329 loop_ _publ_author_name 'Kang, Sung Kwon' 'Miller, Gordon J.' _publ_section_title ; Ta~5~Sb~4~ ; _journal_issue 4 _journal_name_full 'Acta Crystallographica Section C' _journal_page_first 483 _journal_page_last 485 _journal_volume 55 _journal_year 1999 _chemical_formula_iupac 'Ta5 Sb4' _chemical_formula_sum 'Sb4 Ta5' _chemical_formula_weight 1391.75 _chemical_name_systematic ? _space_group_IT_number 87 _symmetry_cell_setting tetragonal _symmetry_space_group_name_Hall '-I 4' _symmetry_space_group_name_H-M 'I 4/m' _cell_angle_alpha 90.00 _cell_angle_beta 90.00 _cell_angle_gamma 90.00 _cell_formula_units_Z 2 _cell_length_a 10.2357(14) _cell_length_b 10.2357(14) _cell_length_c 3.5425(7) _cell_measurement_reflns_used 39 _cell_measurement_temperature 293(2) _cell_measurement_theta_max 14.66 _cell_measurement_theta_min 7.28 _cell_volume 371.15(10) _computing_cell_refinement 'MSC/AFC Diffractometer Control Software' _computing_data_collection ; MSC/AFC Diffractometer Control Software (Molecular Structure Corporation, 1988) ; _computing_data_reduction 'TEXSAN (Molecular Structure Corporation, 1990)' _computing_structure_refinement 'SHELXL97 (Sheldrick, 1997)' _computing_structure_solution 'SHELXS97 (Sheldrick, 1990)' _diffrn_ambient_temperature 293(2) _diffrn_measured_fraction_theta_full 0.500 _diffrn_measured_fraction_theta_max 0.500 _diffrn_measurement_device_type 'Rigaku AFC-6R' _diffrn_measurement_method 2\q-\w _diffrn_radiation_monochromator graphite _diffrn_radiation_source 'rotating anode' _diffrn_radiation_type MoK\a _diffrn_radiation_wavelength 0.71073 _diffrn_reflns_av_R_equivalents 0.096 _diffrn_reflns_av_sigmaI/netI 0.093 _diffrn_reflns_limit_h_max 14 _diffrn_reflns_limit_h_min -14 _diffrn_reflns_limit_k_max 14 _diffrn_reflns_limit_k_min 0 _diffrn_reflns_limit_l_max 4 _diffrn_reflns_limit_l_min 0 _diffrn_reflns_number 655 _diffrn_reflns_theta_full 30.05 _diffrn_reflns_theta_max 30.05 _diffrn_reflns_theta_min 3.98 _diffrn_standards_decay_% 0.4 _diffrn_standards_interval_count 150 _diffrn_standards_number 3 _exptl_absorpt_coefficient_mu 87.556 _exptl_absorpt_correction_T_max 0.199 _exptl_absorpt_correction_T_min 0.138 _exptl_absorpt_correction_type '\y scan' _exptl_absorpt_process_details '(North et al., 1968)' _exptl_crystal_colour Grey _exptl_crystal_density_diffrn 12.454 _exptl_crystal_density_method 'not measured' _exptl_crystal_description Needle _exptl_crystal_F_000 1138 _exptl_crystal_size_max 0.10 _exptl_crystal_size_mid 0.03 _exptl_crystal_size_min 0.03 _refine_diff_density_max 4.49 _refine_diff_density_min -4.60 _refine_ls_extinction_coef 0.00108(8) _refine_ls_extinction_method SHELXL97 _refine_ls_goodness_of_fit_ref 1.062 _refine_ls_matrix_type full _refine_ls_number_parameters 16 _refine_ls_number_reflns 314 _refine_ls_number_restraints 0 _refine_ls_restrained_S_all 1.062 _refine_ls_R_factor_all 0.071 _refine_ls_R_factor_gt 0.029 _refine_ls_shift/su_max <0.001 _refine_ls_shift/su_mean 0.000 _refine_ls_structure_factor_coef Fsqd _refine_ls_weighting_scheme 'calc w = 1/[\s^2^(Fo^2^)+18.3209P] where P = (Fo^2^+2Fc^2^)/3' _refine_ls_wR_factor_ref 0.065 _reflns_number_gt 218 _reflns_number_total 314 _reflns_threshold_expression I>2\s(I) _[local]_cod_data_source_file br1226.cif _[local]_cod_data_source_block br1226 _[local]_cod_cif_authors_sg_H-M I4/m _cod_depositor_comments ; The following automatic conversions were performed: '_symmetry_cell_setting' value 'Tetragonal' changed to 'tetragonal' according to '/home/saulius/struct/CIF-dictionaries/cif_core.dic' dictionary named 'cif_core.dic' version 2.4.1 from 2010-06-29. Automatic conversion script Id: cif_fix_enum 1527 2010-12-29 10:47:43Z saulius The following automatic conversions were performed: '_symmetry_cell_setting' value 'Tetragonal' changed to 'tetragonal' according to /home/saulius/struct/CIF-dictionaries/cif_core.dic dictionary named 'cif_core.dic' version 2.4.1 from 2010-06-29. Automatic conversion script Id: cif_fix_values 1715 2011-07-08 13:25:40Z adriana ; _cod_database_code 2008329 loop_ _symmetry_equiv_pos_as_xyz 'x, y, z' '-x, -y, z' '-y, x, z' 'y, -x, z' 'x+1/2, y+1/2, z+1/2' '-x+1/2, -y+1/2, z+1/2' '-y+1/2, x+1/2, z+1/2' 'y+1/2, -x+1/2, z+1/2' '-x, -y, -z' 'x, y, -z' 'y, -x, -z' '-y, x, -z' '-x+1/2, -y+1/2, -z+1/2' 'x+1/2, y+1/2, -z+1/2' 'y+1/2, -x+1/2, -z+1/2' '-y+1/2, x+1/2, -z+1/2' loop_ _atom_site_label _atom_site_fract_x _atom_site_fract_y _atom_site_fract_z _atom_site_U_iso_or_equiv _atom_site_adp_type _atom_site_calc_flag _atom_site_refinement_flags _atom_site_occupancy _atom_site_disorder_assembly _atom_site_disorder_group _atom_site_type_symbol Ta1 0 0 0 0.0050(4) Uani d S 1 . . Ta Ta2 0.37078(8) 0.31212(8) 0 0.0066(3) Uani d S 1 . . Ta Sb3 0.29588(13) 0.05161(13) 0 0.0066(4) Uani d S 1 . . Sb loop_ _atom_site_aniso_label _atom_site_aniso_U_11 _atom_site_aniso_U_22 _atom_site_aniso_U_33 _atom_site_aniso_U_12 _atom_site_aniso_U_13 _atom_site_aniso_U_23 Ta1 0.0041(5) 0.0041(5) 0.0067(9) 0.000 0.000 0.000 Ta2 0.0046(4) 0.0049(4) 0.0102(5) -0.0003(3) 0.000 0.000 Sb3 0.0069(6) 0.0047(6) 0.0082(8) -0.0003(4) 0.000 0.000 loop_ _geom_bond_atom_site_label_1 _geom_bond_atom_site_label_2 _geom_bond_site_symmetry_2 _geom_bond_distance _geom_bond_publ_flag Ta1 Ta2 13 2.9300(7) ? Ta1 Ta2 5_444 2.9300(7) ? Ta1 Ta2 15_454 2.9300(7) ? Ta1 Ta2 7_545 2.9300(7) ? Ta1 Ta2 15_455 2.9300(7) ? Ta1 Ta2 5_445 2.9300(7) ? Ta1 Ta2 7_544 2.9300(7) ? Ta1 Ta2 13_554 2.9300(7) ? Ta1 Sb3 . 3.0743(14) ? Ta1 Sb3 3 3.0743(14) ? Ta1 Sb3 9 3.0743(14) ? Ta1 Sb3 11 3.0743(14) ? Ta2 Sb3 . 2.7746(15) ? Ta2 Sb3 15 2.7902(13) ? Ta2 Sb3 15_554 2.7902(13) ? Ta2 Sb3 13_554 2.8272(13) ? Ta2 Sb3 13 2.8272(13) ? Ta2 Ta1 5 2.9300(7) ? Ta2 Ta1 5_554 2.9300(7) ? Ta2 Ta2 13_554 3.2966(14) ? Ta2 Ta2 13 3.2966(14) ? Ta2 Ta2 3_655 3.3008(12) ? Ta2 Ta2 11_565 3.3008(12) ? Sb3 Ta2 7_544 2.7902(13) ? Sb3 Ta2 7_545 2.7902(13) ? Sb3 Ta2 13_554 2.8272(13) ? Sb3 Ta2 13 2.8272(13) ? loop_ _atom_type_symbol _atom_type_description _atom_type_scat_dispersion_real _atom_type_scat_dispersion_imag _atom_type_scat_source Sb Sb -0.5866 1.5461 'International Tables Vol C Tables 4.2.6.8 and 6.1.1.4' Ta Ta -0.7052 6.5227 '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_site_symmetry_1 _geom_angle_site_symmetry_3 _geom_angle Ta2 Ta1 Ta2 13 5_444 180.0 Ta2 Ta1 Ta2 13 15_454 111.435(12) Ta2 Ta1 Ta2 5_444 15_454 68.565(12) Ta2 Ta1 Ta2 13 7_545 68.565(12) Ta2 Ta1 Ta2 5_444 7_545 111.435(12) Ta2 Ta1 Ta2 15_454 7_545 180.0 Ta2 Ta1 Ta2 13 15_455 68.565(12) Ta2 Ta1 Ta2 5_444 15_455 111.435(12) Ta2 Ta1 Ta2 15_454 15_455 74.39(2) Ta2 Ta1 Ta2 7_545 15_455 105.61(2) Ta2 Ta1 Ta2 13 5_445 105.61(2) Ta2 Ta1 Ta2 5_444 5_445 74.39(2) Ta2 Ta1 Ta2 15_454 5_445 111.435(12) Ta2 Ta1 Ta2 7_545 5_445 68.565(12) Ta2 Ta1 Ta2 15_455 5_445 68.565(12) Ta2 Ta1 Ta2 13 7_544 111.435(12) Ta2 Ta1 Ta2 5_444 7_544 68.565(12) Ta2 Ta1 Ta2 15_454 7_544 105.61(2) Ta2 Ta1 Ta2 7_545 7_544 74.39(2) Ta2 Ta1 Ta2 15_455 7_544 180.0 Ta2 Ta1 Ta2 5_445 7_544 111.435(12) Ta2 Ta1 Ta2 13 13_554 74.39(2) Ta2 Ta1 Ta2 5_444 13_554 105.61(2) Ta2 Ta1 Ta2 15_454 13_554 68.565(12) Ta2 Ta1 Ta2 7_545 13_554 111.435(12) Ta2 Ta1 Ta2 15_455 13_554 111.435(12) Ta2 Ta1 Ta2 5_445 13_554 180.0 Ta2 Ta1 Ta2 7_544 13_554 68.565(12) Ta2 Ta1 Sb3 13 . 56.12(2) Ta2 Ta1 Sb3 5_444 . 123.88(2) Ta2 Ta1 Sb3 15_454 . 124.68(2) Ta2 Ta1 Sb3 7_545 . 55.32(2) Ta2 Ta1 Sb3 15_455 . 124.68(2) Ta2 Ta1 Sb3 5_445 . 123.88(2) Ta2 Ta1 Sb3 7_544 . 55.32(2) Ta2 Ta1 Sb3 13_554 . 56.12(2) Ta2 Ta1 Sb3 13 3 55.32(2) Ta2 Ta1 Sb3 5_444 3 124.68(2) Ta2 Ta1 Sb3 15_454 3 56.12(2) Ta2 Ta1 Sb3 7_545 3 123.88(2) Ta2 Ta1 Sb3 15_455 3 56.12(2) Ta2 Ta1 Sb3 5_445 3 124.68(2) Ta2 Ta1 Sb3 7_544 3 123.88(2) Ta2 Ta1 Sb3 13_554 3 55.32(2) Sb3 Ta1 Sb3 . 3 90.0 Ta2 Ta1 Sb3 13 9 123.88(2) Ta2 Ta1 Sb3 5_444 9 56.12(2) Ta2 Ta1 Sb3 15_454 9 55.32(2) Ta2 Ta1 Sb3 7_545 9 124.68(2) Ta2 Ta1 Sb3 15_455 9 55.32(2) Ta2 Ta1 Sb3 5_445 9 56.12(2) Ta2 Ta1 Sb3 7_544 9 124.68(2) Ta2 Ta1 Sb3 13_554 9 123.88(2) Sb3 Ta1 Sb3 . 9 180.0 Sb3 Ta1 Sb3 3 9 90.0 Ta2 Ta1 Sb3 13 11 124.68(2) Ta2 Ta1 Sb3 5_444 11 55.32(2) Ta2 Ta1 Sb3 15_454 11 123.88(2) Ta2 Ta1 Sb3 7_545 11 56.12(2) Ta2 Ta1 Sb3 15_455 11 123.88(2) Ta2 Ta1 Sb3 5_445 11 55.32(2) Ta2 Ta1 Sb3 7_544 11 56.12(2) Ta2 Ta1 Sb3 13_554 11 124.68(2) Sb3 Ta1 Sb3 . 11 90.0 Sb3 Ta1 Sb3 3 11 180.0 Sb3 Ta1 Sb3 9 11 90.0 Sb3 Ta2 Sb3 . 15 78.61(5) Sb3 Ta2 Sb3 . 15_554 78.61(5) Sb3 Ta2 Sb3 15 15_554 78.81(4) Sb3 Ta2 Sb3 . 13_554 107.91(4) Sb3 Ta2 Sb3 15 13_554 173.44(5) Sb3 Ta2 Sb3 15_554 13_554 101.42(3) Sb3 Ta2 Sb3 . 13 107.91(4) Sb3 Ta2 Sb3 15 13 101.42(3) Sb3 Ta2 Sb3 15_554 13 173.44(5) Sb3 Ta2 Sb3 13_554 13 77.59(4) Sb3 Ta2 Ta1 . 5 139.070(19) Sb3 Ta2 Ta1 15 5 64.97(3) Sb3 Ta2 Ta1 15_554 5 110.14(4) Sb3 Ta2 Ta1 13_554 5 109.10(4) Sb3 Ta2 Ta1 13 5 64.52(3) Sb3 Ta2 Ta1 . 5_554 139.070(19) Sb3 Ta2 Ta1 15 5_554 110.14(4) Sb3 Ta2 Ta1 15_554 5_554 64.97(3) Sb3 Ta2 Ta1 13_554 5_554 64.52(3) Sb3 Ta2 Ta1 13 5_554 109.10(4) Ta1 Ta2 Ta1 5 5_554 74.39(2) Sb3 Ta2 Ta2 . 13_554 54.69(3) Sb3 Ta2 Ta2 15 13_554 133.30(5) Sb3 Ta2 Ta2 15_554 13_554 90.21(3) Sb3 Ta2 Ta2 13_554 13_554 53.21(3) Sb3 Ta2 Ta2 13 13_554 94.27(4) Ta1 Ta2 Ta2 5 13_554 156.43(4) Ta1 Ta2 Ta2 5_554 13_554 105.483(18) Sb3 Ta2 Ta2 . 13 54.69(3) Sb3 Ta2 Ta2 15 13 90.21(3) Sb3 Ta2 Ta2 15_554 13 133.30(5) Sb3 Ta2 Ta2 13_554 13 94.27(4) Sb3 Ta2 Ta2 13 13 53.21(3) Ta1 Ta2 Ta2 5 13 105.483(18) Ta1 Ta2 Ta2 5_554 13 156.43(4) Ta2 Ta2 Ta2 13_554 13 65.00(3) Sb3 Ta2 Ta2 . 3_655 116.52(4) Sb3 Ta2 Ta2 15 3_655 54.53(3) Sb3 Ta2 Ta2 15_554 3_655 54.53(3) Sb3 Ta2 Ta2 13_554 3_655 120.24(3) Sb3 Ta2 Ta2 13 3_655 120.24(3) Ta1 Ta2 Ta2 5 3_655 55.717(6) Ta1 Ta2 Ta2 5_554 3_655 55.717(6) Ta2 Ta2 Ta2 13_554 3_655 143.87(3) Ta2 Ta2 Ta2 13 3_655 143.87(3) Sb3 Ta2 Ta2 . 11_565 153.48(4) Sb3 Ta2 Ta2 15 11_565 120.68(3) Sb3 Ta2 Ta2 15_554 11_565 120.68(3) Sb3 Ta2 Ta2 13_554 11_565 53.49(4) Sb3 Ta2 Ta2 13 11_565 53.49(4) Ta1 Ta2 Ta2 5 11_565 55.717(6) Ta1 Ta2 Ta2 5_554 11_565 55.717(6) Ta2 Ta2 Ta2 13_554 11_565 104.06(4) Ta2 Ta2 Ta2 13 11_565 104.06(4) Ta2 Ta2 Ta2 3_655 11_565 90.0 Ta2 Sb3 Ta2 . 7_544 138.33(3) Ta2 Sb3 Ta2 . 7_545 138.33(3) Ta2 Sb3 Ta2 7_544 7_545 78.81(4) Ta2 Sb3 Ta2 . 13_554 72.09(4) Ta2 Sb3 Ta2 7_544 13_554 71.97(3) Ta2 Sb3 Ta2 7_545 13_554 119.07(5) Ta2 Sb3 Ta2 . 13 72.09(4) Ta2 Sb3 Ta2 7_544 13 119.07(5) Ta2 Sb3 Ta2 7_545 13 71.97(3) Ta2 Sb3 Ta2 13_554 13 77.59(4) Ta2 Sb3 Ta1 . . 115.93(5) Ta2 Sb3 Ta1 7_544 . 59.72(3) Ta2 Sb3 Ta1 7_545 . 59.72(3) Ta2 Sb3 Ta1 13_554 . 59.36(3) Ta2 Sb3 Ta1 13 . 59.36(3) _journal_paper_doi 10.1107/S0108270198015881