| Literature DB >> 29064466 |
George Kim1, S V Meschel2, Philip Nash2, Wei Chen1.
Abstract
The standard enthalpy of formation of a compound is the energy associated with the reaction to form the compound from its component elements. The standard enthalpy of formation is a fundamental thermodynamic property that determines its phase stability, which can be coupled with other thermodynamic data to calculate phase diagrams. Calorimetry provides the only direct method by which the standard enthalpy of formation is experimentally measured. However, the measurement is often a time and energy intensive process. We present a dataset of enthalpies of formation measured by high-temperature calorimetry. The phases measured in this dataset include intermetallic compounds with transition metal and rare-earth elements, metal borides, metal carbides, and metallic silicides. These measurements were collected from over 50 years of calorimetric experiments. The dataset contains 1,276 entries on experimental enthalpy of formation values and structural information. Most of the entries are for binary compounds but ternary and quaternary compounds are being added as they become available. The dataset also contains predictions of enthalpy of formation from first-principles calculations for comparison.Entities:
Year: 2017 PMID: 29064466 PMCID: PMC5654376 DOI: 10.1038/sdata.2017.162
Source DB: PubMed Journal: Sci Data ISSN: 2052-4463 Impact factor: 6.444
Description of the key-value pairs contained in the JSON file.
| The details of the measurement of the enthalpy of formation for each entry in the JSON file are contained in key-value pairs. The table lists the keys, and a description of the value associated with each key. | ||
|---|---|---|
| id | String | Unique ID number for entries in dataset |
| composition | JSON object | key-value pairs of the component element’s chemical symbol (as a string) and molar fraction (as a float). {‘Ag’: 0.66, ‘Sc’: 0.33} |
| formula | String | Chemical formula of the compound |
| space_group | String | Space group in Hermann-Mauguin notation without spaces |
| pearson_symbol | String | Pearson symbol |
| standard_enthalpy_formation | Array | An array with two nested arrays. The first with the value in units of kJ/mole of atoms, and a string ‘kJ/mole of atoms’. The second with the value in units of eV/atom, and a string ‘eV/atom’ |
| enthalpy_formation | Array | The enthalpy of formation measured with respect to reaction temperature and not 298 K. An array with two nested arrays. The first with the value in units of kJ/mole of atoms, and a string ‘kJ/mole of atoms’. The second with the value in units of eV/atom, and a string ‘eV/atom’ |
| ref_temp | Int | The reference temperature in Kelvin. Standard enthalpy of formation has a reference temperature of 298 K |
| uncertainty | JSON object with Keys: ‘standard_deviation’, ‘standard_error’, ‘experimental_error’ | The value assigned to the key is an array with two nested arrays. The first with the uncertainty in units of kJ/mole of atoms, and a string ‘kJ/mole of atoms’. The second with uncertainty in units of eV/atom, and a string ‘eV/atom’ |
| notes | String | Contains a note, either says Indicative Result or Crystallographic Modifications |
| citation | String | The full reference to the article the measurement was published in |
| calorimetry_method | String | Calorimetric method, either Direct Synthesis, Solute-Solvent Drop or Solution |
| cas_reg_no | String | Chemical Abstracts Service unique identifier |
| mp_id | String | Materials Project ID |
| mp_formation_energy | Array | Enthalpy of formation from the Materials Project database. An array with two nested arrays. The first with the value in units of kJ/mole of atoms, and a string ‘kJ/mole of atoms’. The second with the value in units of eV/atom, and a string ‘eV/atom’ |
| mp_e_above_hull | Array | Energy above convex hull from the Materials Project database. An array with two nested arrays. The first with the value in units of kJ/mole of atoms, and a string ‘kJ/mole of atoms’. The second with the value in units of eV/atom, and a string ‘eV/atom’ |
| oqmd_id | String | OQMD ID |
| oqmd_formation_energy | Array | Enthalpy of formation from the OQMD database. An array with two nested arrays. The first with the value in units of kJ/mole of atoms, and a string ‘kJ/mole of atoms’. The second with the value in units of eV/atom, and a string ‘eV/atom’ |
| oqmd_e_above_hull | Array | Energy above convex hull from the OQMD database. An array with two nested arrays. The first with the value in units of kJ/mole of atoms, and a string ‘kJ/mole of atoms’. The second with the value in units of eV/atom, and a string ‘eV/atom’ |
Figure 1Representation of the uncertainty in experimental measurements.
Plot of measurement uncertainties grouped by calorimetric method. The scatterplot x-axis is the measurement uncertainty of the experimental measurements of the standard enthalpy of formation. The y-axis is the experimentally measured standard enthalpy of formation. The solid red line is the mean of the measurement uncertainty (μ=0.0225 eV/atom), and the dashed red lines are one and two s.d.’s (σ=0.0115 eV/atom). Histograms on each axis indicate the number of measurements in each respective bin.
Comparison of standard enthalpies of formation between different experimental groups.
| Measurements of standard enthalpies of formation (and the s.d. of the measurements) of compounds performed by different research groups. There are 17 compounds with two measurements each for a total of 34 measurements being compared. Results were reported in units of kJ/mol of atoms but were converted to eV/atom to follow the rest of the text. 1 kJ/mol of atoms is 0.0103 eV/atom. The average of the absolute difference in measurements is 0.034 ev/atom of atoms. For all the results in the table the absolute difference has the same order of magnitude or lower than the measurement uncertainty. | |||
|---|---|---|---|
| Fe2NiAl (Pm-3m) | −0.289 (0.015)[ | −0.320 (0.025)[ | 0.031 |
| FeAl (Pm-3m) | −0.275 (0.011)[ | −0.244 (0.017)[ | 0.031 |
| NiAl (Pm-3m) | −0.641 (0.012)[ | −0.604 (0.011)[ | 0.036 |
| YMn2 (Fd-3m) | −0.029 (0.029)[ | −0.025 (0.026)24 | 0.004 |
| ZrPt (Cmcm) | −1.079 (0.019)25 | −0.933 (0.104)26 | 0.146 |
| ZrIr (Pm-3m) | −0.888 (0.04)25 | −0.840 (0.021)26 | 0.049 |
| ZrNi (Cmcm) | −0.523 (0.016)27 | −0.534 (0.021)26 | 0.010 |
| GdNi (Cmcm) | −0.310 (0.011)27 | −0.267 (0.019)28 | 0.042 |
| DyNi (Pnma) | −0.365 (0.016)27 | −0.346 (0.020)28 | 0.019 |
| CoTi (Pm-3m) | −0.428 (0.009)27 | −0.459 (0.005)26 | 0.031 |
| NiY (Pnma) | −0.341 (0.018)[ | −0.379 (0.020)29 | 0.038 |
| NiTi (Pm-3m) | −0.343 (0.011)27 | −0.352 (0.021)26 | 0.009 |
| TiPd (Pm-3m) | −0.535 (0.026)27 | −0.550 (0.031)26 | 0.016 |
| HfPd (Pm-3m) | −0.720 (0.018)30 | −0.699 (0.040)31 | 0.022 |
| LuPd (Pm-3m) | −0.944 (0.054)32 | −0.985 (0.015)27 | 0.040 |
| PdZr (Cmcm) | −0.635 (0.036)32 | −0.685 (0.011)27 | 0.050 |
| NiB (Cmcm) | −0.208 (0.020)33 | −0.215 (0.011)34 | 0.006 |
Figure 2Comparison between Experimentally Measured Standard Enthalpy of Formation with calculated Enthalpy of Formation values from OQMD.
The x-axis of the scatter plot is the difference between the calculated value and the experimentally measured value. The y-axis is the experimentally measured standard enthalpy of formation. The solid red line represents the average of the difference in values, which is 0.0183 eV/atom. The dashed red lines represent one and two s.d.’s away from the mean. The s.d. is 0.123 eV/atom. There are 607 points in total, and 31 points that are more than 2 s.d.’s away from the mean. The most common features shared by these outlier compounds is that they either contain Lanthanide elements or elements from groups 9 and 10 on the periodic table.
Figure 3Comparison between Experimentally Measured Standard Enthalpy of Formation with calculated Enthalpy of Formation values from Materials Project.
The x-axis of the scatter plot is the difference between the calculated value and the experimentally measured value. The y-axis is the experimentally measured standard enthalpy of formation. The solid red line represents the average of the difference in values, which is 0.00616 eV/atom. The dashed red lines represent one and two s.d.’s away from the mean. The s.d. is 0.108 eV/atom. There are 562 points in total, and 25 points that are more than 2 s.d.’s away from the mean. Most of these outliers contain either Lanthanide elements or elements from groups 5, 7, and 10 on the periodic table.
Ten compounds with the largest absolute difference between the OQMD DFT calculated values and the experimentally measured standard enthalpy of formation values.
| The compound formula, space group structure, experimentally measured standard enthalpy of formation in eV/atom and the absolute difference between OQMD DFT and experimentally measured values are listed. The largest difference is 0.780 eV/atom. | |||
|---|---|---|---|
| HfNiSn | F-43m | −0.649 | 0.78 |
| Tb5Pb3 | P63/mcm | −0.738 | 0.601 |
| MnSnIr | F-43m | −0.305 | 0.562 |
| MnGaIr | F-43m | −0.424 | 0.491 |
| Tb5Ge3 | P63/mcm | −0.847 | 0.468 |
| TaRh3 | Pm-3m | −0.145 | 0.468 |
| PtPb | P63/mmc | −0.36 | 0.438 |
| MnSnAu | F-43m | −0.502 | 0.423 |
| Tb5Sn3 | P63/mcm | −0.758 | 0.409 |
| LuPt | Pnma | −0.939 | 0.402 |
Ten compounds with the largest absolute difference between the materials project DFT calculated values and the experimentally measured standard enthalpy of formation values.
| The compound formula, space group structure, standard enthalpy of formation in eV/atom and the absolute difference between Materials Project DFT and experimentally measured values are listed. The largest difference is 0.746 eV/atom. | |||
|---|---|---|---|
| HfSnPt | F-43m | −1.023 | 0.746 |
| MnSnIr | F-43m | −0.304 | 0.599 |
| TaPt3 | P121/m1 | −0.218 | 0.503 |
| TaRh3 | Pm-3m | −0.145 | 0.469 |
| MnSnAu | F-43m | −0.501 | 0.456 |
| Zr5Pb3 | P63/mcm | −0.524 | 0.383 |
| PtPb | P63/mmc | −0.359 | 0.383 |
| LuB2 | P6/mmm | −0.308 | 0.383 |
| ErB2 | P6/mmm | −0.282 | 0.34 |
| TmB2 | P6/mmm | −0.317 | 0.335 |