Altermagnets Database

High-throughput computational screening for altermagnetic materials

Search

Search is executed server-side against the screened materials table and the linked MAGNDATA symmetry summaries.

Showing 153 of 180 screened entries.

KS Gap Type Semiconducting
Material MAGNDATA IDs i A screened entry may correspond to one or more entries in the MAGNDATA database. Collinearity i Whether the magnetic configuration was collinear in MAGNDATA or constructed from a noncollinear entry. Space group $\Delta E^{\mathrm{max}}_{\mathrm{split}}$ i Largest spin splitting within ±3 eV of the Fermi level in the high-throughput calculation. $\Delta E^{\mathrm{avg}}_{\mathrm{split}}$ i Brillouin-zone average of the largest spin splitting at each k-point within the same energy window. i Fraction of the sampled Brillouin zone and near-Fermi bands with appreciable spin splitting. KS Gap i The band gap from Kohn-Sham DFT. Min abundance i Minimum crustal abundance among the constituent elements, reported in ppm as a simple scarcity proxy.
$\mathrm{MnTe}$
anyt:am-1-0002
0.800 Collinear P6_3/mmc 0.923 eV 0.449 eV 34.4% 0.764 eV 0.001 ppm
$\mathrm{CoF_{2}}$
anyt:am-1-0008
0.178 Collinear P4_2/mnm 0.479 eV 0.223 eV 16.7% 3.306 eV 25.0 ppm
$\mathrm{NiF_{2}}$
anyt:am-1-0010
0.36 Based on noncollinear P4_2/mnm 0.392 eV 0.180 eV 27.1% 5.268 eV 84.0 ppm
$\mathrm{Mn(C_{2}N_{3})_{2}}$
anyt:am-1-0011
0.131 Collinear Pnnm 0.348 eV 0.156 eV 16.2% 3.742 eV 19.0 ppm
$\mathrm{LiFe_{2}F_{6}}$
anyt:am-1-0012
0.501 Collinear P4_2/mnm 0.319 eV 0.159 eV 12.5% 0.168 eV 20.0 ppm
$\mathrm{MnGeN_{2}}$
anyt:am-1-0013
0.1065 Collinear Pna2_1 0.305 eV 0.145 eV 14.6% 1.516 eV 1.5 ppm
$\mathrm{NiCO_{3}}$
anyt:am-1-0014
0.113 Collinear R-3c 0.301 eV 0.167 eV 20.8% 4.197 eV 84.0 ppm
$\mathrm{FeSO_{4}F}$
anyt:am-1-0015
0.128 Collinear C2/c 0.301 eV 0.158 eV 28.9% 2.451 eV 350.0 ppm
$\mathrm{MnF_{2}}$
anyt:am-1-0016
0.15 Collinear P4_2/mnm 0.294 eV 0.156 eV 18.8% 3.575 eV 585.0 ppm
$\mathrm{CrVO_{4}}$
anyt:am-1-0017
1.522 Collinear Cmcm 0.292 eV 0.158 eV 28.6% 2.877 eV 102.0 ppm
$\mathrm{Sr_{4}Fe_{4}O_{11}}$
anyt:am-1-0018
0.402 Collinear Cmmm 0.289 eV 0.150 eV 29.8% 0.176 eV 370.0 ppm
$\mathrm{HoFeO_{3}}$
anyt:am-1-0019
0.990, 0.991, 0.992, 0.993, 0.994 Both Pnma 0.283 eV 0.126 eV 25.9% 2.835 eV 1.3 ppm
$\mathrm{TbFeO_{3}}$
anyt:am-1-0021
0.351 Collinear Pnma 0.271 eV 0.133 eV 26.8% 2.826 eV 1.2 ppm
$\mathrm{Fe_{2}WO_{6}}$
anyt:am-1-0022
0.813, 0.810, 0.811, 0.812 Both Pbcn 0.270 eV 0.173 eV 29.7% 1.465 eV 1.2 ppm
$\mathrm{Er_{2}Ru_{2}O_{7}}$
anyt:am-1-0023
0.154 Collinear Fd-3m 0.268 eV 0.266 eV 20.3% 0.412 eV 0.001 ppm
$\mathrm{FeBO_{3}}$
anyt:am-1-0024
0.112 Collinear R-3c 0.262 eV 0.177 eV 29.7% 2.660 eV 10.0 ppm
$\mathrm{DyFeO_{3}}$
anyt:am-1-0025
0.837, 0.836, 0.841, 0.840, 0.838, 0.839, 0.10, 0.11 Both Pnma 0.261 eV 0.134 eV 26.8% 2.863 eV 5.2 ppm
$\mathrm{TlCrO_{3}}$
anyt:am-1-0026
0.309 Collinear Pnma 0.246 eV 0.146 eV 24.1% 0.625 eV 0.850 ppm
$\mathrm{CoH_{6}(CO_{3})_{2}}$
anyt:am-1-0027
0.1049 Based on noncollinear P2_1/c 0.245 eV 0.132 eV 14.8% 1.908 eV 25.0 ppm
$\mathrm{MnSiN_{2}}$
anyt:am-1-0028
0.1067, 0.1066 Both Pna2_1 0.245 eV 0.114 eV 18.8% 2.733 eV 19.0 ppm
$\mathrm{FeHSO_{5}}$
anyt:am-1-0029
0.760 Collinear C2/c 0.241 eV 0.156 eV 26.6% 2.625 eV 350.0 ppm
$\mathrm{Mn_{2}GeO_{4}}$
anyt:am-1-0030
0.103, 0.101, 0.102 Based on noncollinear Pnma 0.239 eV 0.127 eV 23.1% 0.594 eV 1.5 ppm
$\mathrm{Fe_{2}O_{3}}$
anyt:am-1-0031
0.66, 0.65 Collinear R-3c 0.237 eV 0.152 eV 29.0% 2.566 eV 56,300 ppm
$\mathrm{ErCrO_{3}}$
anyt:am-1-0032
0.590, 0.591 Both Pnma 0.234 eV 0.108 eV 21.9% 3.143 eV 3.5 ppm
$\mathrm{CrInO_{3}}$
anyt:am-1-0033
0.308 Collinear Pnma 0.232 eV 0.132 eV 20.5% 1.886 eV 0.250 ppm
$\mathrm{CeFeO_{3}}$
anyt:am-1-0034
0.758, 0.759, 0.757 Both Pnma 0.227 eV 0.121 eV 27.7% 2.818 eV 66.5 ppm
$\mathrm{ScCrO_{3}}$
anyt:am-1-0035
0.307 Collinear Pnma 0.227 eV 0.127 eV 20.5% 2.987 eV 22.0 ppm
$\mathrm{Sr_{2}TbIrO_{6}}$
anyt:am-1-0036
0.475 Collinear P2_1/c 0.226 eV 0.114 eV 27.1% 0.139 eV 0.001 ppm
$\mathrm{SmCrO_{3}}$
anyt:am-1-0037
0.698, 0.697 Based on noncollinear Pnma 0.222 eV 0.095 eV 20.5% 3.115 eV 7.0 ppm
$\mathrm{YCrO_{3}}$
anyt:am-1-0038
0.586, 0.947 Collinear Pnma 0.221 eV 0.115 eV 21.4% 3.121 eV 33.0 ppm
$\mathrm{SmFeO_{3}}$
anyt:am-1-0039
0.379 Collinear Pnma 0.215 eV 0.124 eV 27.7% 2.843 eV 7.0 ppm
$\mathrm{FeNiPO_{5}}$
anyt:am-1-0040
0.261 Collinear Pnma 0.207 eV 0.121 eV 24.4% 2.694 eV 84.0 ppm
$\mathrm{NdMnO_{3}}$
anyt:am-1-0041
0.609, 0.288, 0.370 Both Pnma 0.206 eV 0.143 eV 19.6% 1.420 eV 41.5 ppm
$\mathrm{DyCrO_{3}}$
anyt:am-1-0042
0.592, 2.64, 2.63 Both Pnma 0.206 eV 0.103 eV 20.8% 3.079 eV 5.2 ppm
$\mathrm{TmCrO_{3}}$
anyt:am-1-0043
0.587 Collinear Pnma 0.202 eV 0.117 eV 25.0% 3.141 eV 0.520 ppm
$\mathrm{TmVO_{3}}$
anyt:am-1-0044
0.983, 0.982 Collinear P2_1/c 0.200 eV 0.100 eV 18.8% 1.739 eV 0.520 ppm
$\mathrm{Fe_{3}P_{2}(HO_{5})_{2}}$
anyt:am-1-0045
0.392 Collinear P2_1/c 0.197 eV 0.126 eV 23.6% 2.051 eV 1,050 ppm
$\mathrm{PrFeO_{3}}$
anyt:am-1-0046
0.1085 Collinear Pnma 0.197 eV 0.120 eV 28.6% 2.822 eV 9.2 ppm
$\mathrm{CuFePO_{5}}$
anyt:am-1-0047
0.260 Collinear Pnma 0.194 eV 0.119 eV 27.5% 1.954 eV 60.0 ppm
$\mathrm{NaOsO_{3}}$
anyt:am-1-0048
0.25 Collinear Pnma 0.193 eV 0.082 eV 22.9% 0.119 eV 0.002 ppm
$\mathrm{NdFeO_{3}}$
anyt:am-1-0049
0.336, 0.337 Both Pnma 0.192 eV 0.122 eV 27.7% 2.833 eV 41.5 ppm
$\mathrm{Fe_{2}SiO_{4}}$
anyt:am-1-0050
0.1071 Collinear Pnma 0.192 eV 0.132 eV 17.4% 2.940 eV 56,300 ppm
$\mathrm{LaMnO_{3}}$
anyt:am-1-0051
0.642, 0.1 Collinear Pnma 0.188 eV 0.106 eV 20.5% 1.283 eV 39.0 ppm
$\mathrm{TbCrO_{3}}$
anyt:am-1-0052
0.354, 2.62 Both Pnma 0.188 eV 0.098 eV 24.0% 3.114 eV 1.2 ppm
$\mathrm{CoCO_{3}}$
anyt:am-1-0053
0.114 Collinear R-3c 0.188 eV 0.125 eV 25.0% 2.766 eV 25.0 ppm
$\mathrm{TmFeO_{3}}$
anyt:am-1-0054
0.1021, 0.1022 Collinear Pnma 0.188 eV 0.124 eV 22.3% 0.762 eV 0.520 ppm
$\mathrm{Cu_{2}H_{3}ClO_{3}}$
anyt:am-1-0055
0.295 Based on noncollinear P2_1/c 0.186 eV 0.055 eV 23.1% 1.749 eV 60.0 ppm
$\mathrm{CrNiO_{4}}$
anyt:am-1-0056
0.896 Collinear Cmcm 0.186 eV 0.109 eV 31.2% 2.000 eV 84.0 ppm
$\mathrm{ZrMn_{2}(GeO_{3})_{4}}$
anyt:am-1-0057
0.315 Collinear P4/nbm 0.184 eV 0.105 eV 14.4% 2.309 eV 1.5 ppm
$\mathrm{LaCrO_{3}}$
anyt:am-1-0058
0.323, 0.417 Collinear Pnma 0.182 eV 0.097 eV 20.5% 3.105 eV 39.0 ppm
$\mathrm{MnSe_{2}}$
anyt:am-1-0059
1.0.47 Collinear Pa-3 0.178 eV 0.133 eV 45.8% 0.983 eV 0.050 ppm
$\mathrm{PrMnO_{3}}$
anyt:am-1-0060
0.608 Collinear Pnma 0.176 eV 0.107 eV 21.4% 0.896 eV 9.2 ppm
$\mathrm{BaNa_{2}V_{2}FeO_{8}}$
anyt:am-1-0061
0.298 Based on noncollinear C2/c 0.174 eV 0.102 eV 21.0% 2.710 eV 120.0 ppm
$\mathrm{TiMnO_{3}}$
anyt:am-1-0062
0.50 Collinear R3c 0.173 eV 0.101 eV 25.0% 2.470 eV 950.0 ppm
$\mathrm{NiPbO_{3}}$
anyt:am-1-0063
0.21 Collinear R3c 0.170 eV 0.111 eV 26.1% 0.561 eV 14.0 ppm
$\mathrm{ZrCo_{2}(GeO_{3})_{4}}$
anyt:am-1-0064
0.314 Based on noncollinear P4/nbm 0.170 eV 0.110 eV 17.8% 2.628 eV 1.5 ppm
$\mathrm{YVO_{3}}$
anyt:am-1-0065
0.788 Based on noncollinear P2_1/c 0.168 eV 0.067 eV 20.8% 2.043 eV 33.0 ppm
$\mathrm{Sr_{2}HoRuO_{6}}$
anyt:am-1-0066
0.792, 0.794, 0.793 Both P2_1/c 0.166 eV 0.084 eV 22.3% 1.031 eV 0.001 ppm
$\mathrm{NdCrO_{3}}$
anyt:am-1-0067
0.589 Based on noncollinear Pnma 0.165 eV 0.107 eV 19.6% 3.079 eV 41.5 ppm
$\mathrm{ErVO_{3}}$
anyt:am-1-0068
0.105, 0.104 Both Pnma 0.165 eV 0.082 eV 18.8% 1.971 eV 3.5 ppm
$\mathrm{CoFePO_{5}}$
anyt:am-1-0069
0.262 Based on noncollinear Pnma 0.164 eV 0.103 eV 26.9% 2.399 eV 25.0 ppm
$\mathrm{MnCO_{3}}$
anyt:am-1-0070
0.115 Collinear R-3c 0.161 eV 0.112 eV 19.5% 4.015 eV 200.0 ppm
$\mathrm{FeF_{3}}$
anyt:am-1-0072
1.0.33 Based on noncollinear P6_3/m 0.159 eV 0.080 eV 31.2% 3.764 eV 585.0 ppm
$\mathrm{Li_{2}Ni(SO_{4})_{2}}$
anyt:am-1-0073
0.714 Collinear P2_1/c 0.158 eV 0.077 eV 20.5% 4.565 eV 20.0 ppm
$\mathrm{LuCrO_{3}}$
anyt:am-1-0074
0.1068 Based on noncollinear Pnma 0.158 eV 0.125 eV 19.8% 3.192 eV 0.800 ppm
$\mathrm{FeCO_{3}}$
anyt:am-1-0075
0.116 Collinear R-3c 0.157 eV 0.110 eV 17.4% 3.688 eV 200.0 ppm
$\mathrm{CoF_{3}}$
anyt:am-1-0077
0.334 Collinear R-3c 0.155 eV 0.095 eV 31.2% 1.825 eV 25.0 ppm
$\mathrm{Sr_{2}CoTeO_{6}}$
anyt:am-1-0078
0.937, 0.301 Collinear P2_1/c 0.155 eV 0.088 eV 29.2% 2.154 eV 0.001 ppm
$\mathrm{ZnFeH_{4}O_{2}F_{5}}$
anyt:am-1-0080
0.575 Collinear Imm2 0.154 eV 0.074 eV 23.4% 3.124 eV 70.0 ppm
$\mathrm{LuVO_{3}}$
anyt:am-1-0081
0.984 Collinear Pnma 0.153 eV 0.073 eV 18.8% 1.991 eV 0.800 ppm
$\mathrm{YMnO_{3}}$
anyt:am-1-0084
0.6 Based on noncollinear P6_3cm 0.145 eV 0.092 eV 21.9% 1.304 eV 33.0 ppm
$\mathrm{Co_{2}SiO_{4}}$
anyt:am-1-0086
0.218, 0.219 Based on noncollinear Pnma 0.144 eV 0.101 eV 22.2% 2.506 eV 25.0 ppm
$\mathrm{LiLa_{2}RuO_{6}}$
anyt:am-1-0087
0.148 Collinear P2_1/c 0.142 eV 0.093 eV 26.0% 1.220 eV 0.001 ppm
$\mathrm{Mn_{2}SeO_{3}F_{2}}$
anyt:am-1-0088
0.755 Collinear Pnma 0.141 eV 0.095 eV 21.2% 3.889 eV 0.050 ppm
$\mathrm{FeF_{3}}$
anyt:am-1-0089
0.581, 0.335 Collinear R-3c 0.141 eV 0.094 eV 32.8% 4.342 eV 585.0 ppm
$\mathrm{Mn_{4}Nb_{2}O_{9}}$
anyt:am-1-0090
0.722 Collinear Cc 0.140 eV 0.078 eV 21.2% 1.270 eV 20.0 ppm
$\mathrm{Sr_{2}DyRuO_{6}}$
anyt:am-1-0092
0.790 Collinear P2_1/c 0.138 eV 0.081 eV 23.2% 1.114 eV 0.001 ppm
$\mathrm{YRuO_{3}}$
anyt:am-1-0093
0.513 Collinear Pnma 0.138 eV 0.067 eV 18.8% 0.569 eV 0.001 ppm
$\mathrm{Li_{2}Co(SO_{4})_{2}}$
anyt:am-1-0094
0.121 Based on noncollinear P2_1/c 0.136 eV 0.088 eV 20.5% 3.224 eV 20.0 ppm
$\mathrm{LiFeP_{2}O_{7}}$
anyt:am-1-0095
0.83 Collinear P2_1 0.136 eV 0.085 eV 22.9% 2.958 eV 20.0 ppm
$\mathrm{Sr_{2}ErRuO_{6}}$
anyt:am-1-0096
0.1008 Collinear P2_1/c 0.134 eV 0.075 eV 22.3% 1.009 eV 0.001 ppm
$\mathrm{Sr_{2}YRuO_{6}}$
anyt:am-1-0097
0.795 Collinear P2_1/c 0.134 eV 0.075 eV 22.3% 1.012 eV 0.001 ppm
$\mathrm{Fe_{2}PO_{5}}$
anyt:am-1-0098
0.263 Collinear Pnma 0.134 eV 0.102 eV 22.5% 2.086 eV 1,050 ppm
$\mathrm{HoMnO_{3}}$
anyt:am-1-0099
0.31, 0.32, 0.33 Based on noncollinear P6_3cm 0.134 eV 0.084 eV 25.0% 1.310 eV 1.3 ppm
$\mathrm{TmVO_{3}}$
anyt:am-1-0100
0.980, 0.981, 0.979 Both Pnma 0.133 eV 0.068 eV 19.8% 2.050 eV 0.520 ppm
$\mathrm{LuFeO_{3}}$
anyt:am-1-0103
0.117 Based on noncollinear P6_3cm 0.131 eV 0.077 eV 24.4% 1.794 eV 0.800 ppm
$\mathrm{Sr_{2}YbRuO_{6}}$
anyt:am-1-0104
0.670, 0.669 Based on noncollinear P2_1/c 0.131 eV 0.072 eV 22.3% 0.982 eV 0.001 ppm
$\mathrm{Sr_{2}TmRuO_{6}}$
anyt:am-1-0105
0.671 Collinear P2_1/c 0.129 eV 0.070 eV 22.3% 0.978 eV 0.001 ppm
$\mathrm{Er_{2}Cu_{2}O_{5}}$
anyt:am-1-0106
0.240 Based on noncollinear Pna2_1 0.129 eV 0.071 eV 23.6% 1.732 eV 3.5 ppm
$\mathrm{MgCr_{2}O_{4}}$
anyt:am-1-0107
3.4 Based on noncollinear Fd-3m 0.127 eV 0.093 eV 39.3% 1.545 eV 102.0 ppm
$\mathrm{Y_{2}Cu_{2}O_{5}}$
anyt:am-1-0108
0.241 Collinear Pna2_1 0.127 eV 0.070 eV 21.6% 1.704 eV 33.0 ppm
$\mathrm{LaCrO_{3}}$
anyt:am-1-0109
0.416 Collinear R-3c 0.124 eV 0.098 eV 19.4% 3.194 eV 39.0 ppm
$\mathrm{Sr_{2}TbRuO_{6}}$
anyt:am-1-0110
0.791 Based on noncollinear P2_1/c 0.122 eV 0.079 eV 24.1% 1.044 eV 0.001 ppm
$\mathrm{Fe_{2}H_{4}NF_{6}}$
anyt:am-1-0111
0.168 Based on noncollinear Pnma 0.121 eV 0.065 eV 6.2% 1.828 eV 19.0 ppm
$\mathrm{La_{2}NiO_{4}}$
anyt:am-1-0112
0.45 Collinear P4_2/ncm 0.121 eV 0.076 eV 24.4% 2.313 eV 39.0 ppm
$\mathrm{YVO_{3}}$
anyt:am-1-0113
0.787 Collinear Pnma 0.120 eV 0.061 eV 19.8% 2.037 eV 33.0 ppm
$\mathrm{CaNi_{3}P_{4}O_{14}}$
anyt:am-1-0114
0.948 Based on noncollinear P2_1/c 0.120 eV 0.075 eV 24.0% 4.464 eV 84.0 ppm
$\mathrm{Sr_{2}NiTeO_{6}}$
anyt:am-1-0115
0.934 Collinear P2_1/c 0.119 eV 0.053 eV 28.1% 2.343 eV 0.001 ppm
$\mathrm{Sr_{2}LuRuO_{6}}$
anyt:am-1-0116
0.420 Collinear P2_1/c 0.119 eV 0.078 eV 21.4% 0.958 eV 0.001 ppm
$\mathrm{Li_{2}Mn(SO_{4})_{2}}$
anyt:am-1-0117
0.122 Based on noncollinear P2_1/c 0.118 eV 0.051 eV 20.8% 5.101 eV 20.0 ppm
$\mathrm{Ca_{2}Fe_{2}O_{5}}$
anyt:am-1-0118
0.1080 Collinear Pnma 0.116 eV 0.080 eV 22.9% 1.373 eV 41,500 ppm
$\mathrm{SrMnVHO_{5}}$
anyt:am-1-0120
0.165 Based on noncollinear P2_12_12_1 0.108 eV 0.073 eV 21.2% 2.356 eV 120.0 ppm
$\mathrm{ScMnO_{3}}$
anyt:am-1-0121
0.7, 0.8 Based on noncollinear P6_3cm 0.107 eV 0.076 eV 20.6% 1.400 eV 22.0 ppm
$\mathrm{Fe_{3}H_{4}(OF_{4})_{2}}$
anyt:am-1-0122
0.582, 2.61 Both C2/m 0.106 eV 0.065 eV 22.9% 2.686 eV 585.0 ppm
$\mathrm{CuFeS_{2}}$
anyt:am-1-0123
0.802 Collinear I-42d 0.105 eV 0.081 eV 28.6% 1.043 eV 60.0 ppm
$\mathrm{LuCrWO_{6}}$
anyt:am-1-0124
0.1082 Collinear Pna2_1 0.104 eV 0.067 eV 26.1% 2.347 eV 0.800 ppm
$\mathrm{Ba_{3}NiRu_{2}O_{9}}$
anyt:am-1-0125
0.748 Collinear P6_3/mmc 0.104 eV 0.071 eV 19.4% 1.062 eV 0.001 ppm
$\mathrm{RbFe_{2}F_{6}}$
anyt:am-1-0126
0.192 Based on noncollinear Pnma 0.103 eV 0.064 eV 5.7% 1.744 eV 90.0 ppm
$\mathrm{BaMnO_{3}}$
anyt:am-1-0127
1.0.39 Collinear P6_3/mmc 0.103 eV 0.061 eV 26.2% 2.613 eV 425.0 ppm
$\mathrm{Sr_{2}MnTeO_{6}}$
anyt:am-1-0128
0.936 Collinear P2_1/c 0.103 eV 0.060 eV 20.8% 1.792 eV 0.001 ppm
$\mathrm{CoH_{9}C_{4}NO_{6}}$
anyt:am-1-0129
0.368 Based on noncollinear Pnma 0.101 eV 0.062 eV 20.2% 3.236 eV 19.0 ppm
$\mathrm{Mn_{2}O_{3}}$
anyt:am-1-0130
0.41, 0.40 Based on noncollinear Pbca 0.101 eV 0.084 eV 20.6% 0.946 eV 950.0 ppm
$\mathrm{Cu_{4}H_{6}BrO_{6}F}$
anyt:am-1-0131
0.294 Based on noncollinear Pnma 0.100 eV 0.072 eV 21.1% 1.714 eV 2.4 ppm
$\mathrm{Ba_{2}MnSi_{2}O_{7}}$
anyt:am-1-0132
0.229 Collinear P-42_1m 0.098 eV 0.062 eV 15.2% 3.349 eV 425.0 ppm
$\mathrm{CaIrO_{3}}$
anyt:am-1-0133
0.79 Collinear Cmcm 0.096 eV 0.066 eV 29.2% 0.038 eV 0.001 ppm
$\mathrm{SrMnO_{3}}$
anyt:am-1-0134
0.1018, 0.1019 Collinear C222_1 0.095 eV 0.063 eV 25.5% 1.873 eV 370.0 ppm
$\mathrm{BaMn_{2}V_{2}O_{8}}$
anyt:am-1-0135
0.967 Collinear I4_1cd 0.095 eV 0.064 eV 25.8% 2.087 eV 120.0 ppm
$\mathrm{NiTe_{2}O_{5}}$
anyt:am-1-0136
0.292 Based on noncollinear Pnma 0.095 eV 0.067 eV 26.4% 2.766 eV 0.001 ppm
$\mathrm{NdVO_{3}}$
anyt:am-1-0138
0.785, 0.786 Both Pnma 0.093 eV 0.056 eV 18.8% 1.676 eV 41.5 ppm
$\mathrm{Ba_{2}NdRuO_{6}}$
anyt:am-1-0139
0.1013 Collinear P2_1/c 0.092 eV 0.042 eV 25.9% 1.026 eV 0.001 ppm
$\mathrm{CsMn_{2}F_{6}}$
anyt:am-1-0140
0.726, 0.727 Based on noncollinear Pnma 0.090 eV 0.054 eV 13.0% 1.529 eV 3.0 ppm
$\mathrm{HoCrWO_{6}}$
anyt:am-1-0141
0.715, 0.716 Based on noncollinear Pna2_1 0.090 eV 0.063 eV 26.1% 2.398 eV 1.2 ppm
$\mathrm{NaSr_{3}RuO_{6}}$
anyt:am-1-0142
0.404 Collinear R-3c 0.089 eV 0.064 eV 25.6% 1.564 eV 0.001 ppm
$\mathrm{DyCrWO_{6}}$
anyt:am-1-0143
0.316 Based on noncollinear Pna2_1 0.086 eV 0.059 eV 26.7% 1.912 eV 1.2 ppm
$\mathrm{Sr_{3}LiRuO_{6}}$
anyt:am-1-0144
0.361 Collinear R-3c 0.086 eV 0.067 eV 24.1% 1.553 eV 0.001 ppm
$\mathrm{K_{2}ReI_{6}}$
anyt:am-1-0145
0.434, 0.553 Collinear P2_1/c 0.084 eV 0.043 eV 34.4% 1.483 eV 0.001 ppm
$\mathrm{Mn(PbO_{2})_{2}}$
anyt:am-1-0146
0.552 Based on noncollinear P-42_1c 0.083 eV 0.064 eV 24.1% 1.458 eV 14.0 ppm
$\mathrm{BaCuF_{4}}$
anyt:am-1-0147
0.191 Based on noncollinear Cmc2_1 0.083 eV 0.039 eV 22.2% 2.208 eV 60.0 ppm
$\mathrm{CuB_{2}O_{4}}$
anyt:am-1-0148
0.431 Based on noncollinear I-42d 0.081 eV 0.052 eV 21.0% 2.137 eV 10.0 ppm
$\mathrm{BaCoSiO_{4}}$
anyt:am-1-0149
0.724 Based on noncollinear P6_3 0.079 eV 0.054 eV 25.0% 3.079 eV 25.0 ppm
$\mathrm{RbMnF_{4}}$
anyt:am-1-0150
0.329 Collinear P2_1/c 0.076 eV 0.040 eV 17.2% 1.926 eV 90.0 ppm
$\mathrm{SrMn_{2}V_{2}O_{8}}$
anyt:am-1-0151
0.62 Collinear I4_1cd 0.076 eV 0.054 eV 24.2% 2.760 eV 120.0 ppm
$\mathrm{LiCa_{3}RuO_{6}}$
anyt:am-1-0152
0.239 Collinear R-3c 0.074 eV 0.062 eV 26.0% 1.495 eV 0.001 ppm
$\mathrm{Na_{2}MnH_{8}(C_{3}O_{5})_{2}}$
anyt:am-1-0153
0.955 Collinear Pbca 0.073 eV 0.053 eV 15.5% 3.726 eV 200.0 ppm
$\mathrm{CsMnBr_{3}}$
anyt:am-1-0155
1.0.35 Based on noncollinear P6_3/mmc 0.071 eV 0.057 eV 26.9% 3.828 eV 2.4 ppm
$\mathrm{LiCa_{3}OsO_{6}}$
anyt:am-1-0158
0.3 Collinear R-3c 0.068 eV 0.060 eV 17.0% 0.813 eV 0.002 ppm
$\mathrm{Ba_{2}CoGe_{2}O_{7}}$
anyt:am-1-0159
0.56 Collinear P-42_1m 0.068 eV 0.047 eV 18.0% 2.592 eV 1.5 ppm
$\mathrm{Ca_{2}RuO_{4}}$
anyt:am-1-0160
0.398 Based on noncollinear Pbca 0.067 eV 0.041 eV 18.1% 0.664 eV 0.001 ppm
$\mathrm{Cu_{3}Mo_{2}O_{9}}$
anyt:am-1-0161
0.130 Based on noncollinear Pnma 0.064 eV 0.045 eV 18.4% 1.236 eV 1.2 ppm
$\mathrm{Mn_{3}B_{7}IO_{13}}$
anyt:am-1-0162
0.134 Based on noncollinear Pca2_1 0.063 eV 0.043 eV 18.8% 4.319 eV 0.450 ppm
$\mathrm{Ca_{3}MnCoO_{6}}$
anyt:am-1-0163
0.13 Collinear R-3c 0.063 eV 0.051 eV 18.8% 2.003 eV 25.0 ppm
$\mathrm{CsNiC_{3}(SN)_{3}}$
anyt:am-1-0164
0.1014 Based on noncollinear P2_1/c 0.060 eV 0.037 eV 14.2% 2.844 eV 3.0 ppm
$\mathrm{CsCoF_{4}}$
anyt:am-1-0165
0.405 Collinear I-4c2 0.059 eV 0.045 eV 28.2% 0.053 eV 3.0 ppm
$\mathrm{MnH_{6}(CO_{2})_{3}}$
anyt:am-1-0166
0.1060 Based on noncollinear Pca2_1 0.059 eV 0.043 eV 19.3% 3.660 eV 200.0 ppm
$\mathrm{Ba_{3}MnSb_{2}O_{9}}$
anyt:am-1-0167
1.0.46 Based on noncollinear C2/c 0.057 eV 0.045 eV 9.8% 2.075 eV 0.200 ppm
$\mathrm{CuH_{9}C_{4}(NO_{2})_{3}}$
anyt:am-1-0170
0.254, 0.255 Collinear Pna2_1 0.056 eV 0.034 eV 17.5% 2.201 eV 19.0 ppm
$\mathrm{BaCrF_{5}}$
anyt:am-1-0171
0.303 Collinear P2_12_12_1 0.049 eV 0.030 eV 23.6% 4.241 eV 102.0 ppm
$\mathrm{Ba_{3}CoSb_{2}O_{9}}$
anyt:am-1-0172
1.0.44 Based on noncollinear P6_3/mmc 0.044 eV 0.038 eV 24.8% 2.439 eV 0.200 ppm
$\mathrm{Na_{2}CoP_{2}O_{7}}$
anyt:am-1-0175
0.425 Based on noncollinear Pna2_1 0.040 eV 0.032 eV 15.8% 3.327 eV 25.0 ppm
$\mathrm{BaCu(TeO_{3})_{2}}$
anyt:am-1-0177
0.658 Based on noncollinear P4_132 0.032 eV 0.023 eV 13.6% 1.921 eV 0.001 ppm
$\mathrm{CsNiCl_{3}}$
anyt:am-1-0178
1.0.4 Based on noncollinear P6_3/mmc 0.032 eV 0.025 eV 16.4% 3.837 eV 3.0 ppm
$\mathrm{CrH_{4}NF_{3}}$
anyt:am-1-0179
0.1090 Collinear P4_2/mbc 0.032 eV 0.017 eV 1.4% 2.835 eV 19.0 ppm
$\mathrm{SrCu(TeO_{3})_{2}}$
anyt:am-1-0180
0.530 Based on noncollinear P4_132 0.026 eV 0.019 eV 5.1% 1.974 eV 0.001 ppm