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formula
stringlengths
2
11
target
float64
0.03
1.6k
Hf2Si2Te2
63.593833
As4
134.86375
Br2O2Ti2
43.114667
Bi2In2
240.715488
Nb1O2
67.442833
As2O6Sb2
66.30685
Mo2O6
45.942375
Cr2Ge2Te6
89.476
Br2N2Zr2
36.730833
O6Pd2Se2
76.1309
Br4Nb2O2
62.799125
F2Sb2Se4Sr2
57.3815
Co2O4
1.659833
Ag2I2
88.706228
Co1I2
85.111867
Br8Nb4Se8
74.06065
Br2N2Zr2
42.066167
Br6In2
77.39025
Ga2I2Y2
44.3685
I6Y2
92.268875
Co4Nb4Te8
80.471875
Mn2Se2
81.8425
Al2H2O4
68.471
Co1O2
66.602333
Bi4Br12
81.014062
Br2O2Y2
37.023833
Mg1O8Re2
70.609727
Bi2F2O2
87.052
Ni1O4Te1
68.9495
Te4Ti1Zr1
113.118833
H2Si6
25.958625
Co1O2
49.874333
O2V1
58.829667
O3Te1
49.3355
Bi1O2
161.296533
C1Ho2
400.657333
P1Te2Zr2
66.0352
O8Te4
90.85875
Cl2H2Lu2
36.1485
O18Te8
110.774462
Br8U2
70.2696
Al1I2Pd5
49.7245
I2Ni1
81.66795
I2Th1
80.011433
I16Th4
89.6721
Ce2I2Si2
43.283667
Ge2Te2Zr2
72.769
Ni2Sb1Te2
83.87628
Au2Br2
84.631513
Fe2S2
85.46425
Cl2Hf2N2
35.2275
Cr2P2S8
72.203083
Br2O2Sc2
39.951167
Ag2Cr2P4S12
65.5528
I4O4Sc4
39.206667
O4W1Zn1
140.224
Cl2Zn1
77.916617
Cl6Ti2
72.44275
Hf2I2N2
40.338167
Au2Te4
317.554283
Cl2N2Zr2
34.444
Bi2Pt1
250.887522
Bi1Cu1P2Se6
78.65685
Se4Ti1Zr1
96.066
B2Ba1Se6
591.187556
Fe1I2
83.1856
Sb2Se2Te1
72.30686
Br2C2Y2
39.444
Ge1I2Y2
52.2792
Al2O11Si4
25.86
Hg2P2Se6
82.05915
Ca1I4Pb1
85.359767
Br6Y2
77.131
I2Nd2O2
50.761
Br2Ho2O2
37.426
Cl2Er2O2
40.421
Cr1P2S7
57.6051
Co1O4Te1
70.156833
Sb1
571.6572
Se2Ta4
60.310667
As4Se6
132.964
Te6Y2
57.5245
Br2V1
76.943667
Sb3Si1
582.88435
As8Si4
78.529667
As3Si1
493.944575
O2W1
102.657833
S2Ti1
64.139
O2Ti1
88.018333
O2Sn1
76.452
Ca2Cl2F2
75.819667
K2O2Pd1
847.98556
Br2Cd1
75.231443
Br2Cd1
75.791578
S2Sn2
87.602575
Hf2Se6
58.534625
P4
111.75575
Nb2O5
245.368143
Ba2N1
205.389533
Ba2S4Zr1
221.506429
End of preview. Expand in Data Studio

The joint automated repository for various integrated simulations (JARVIS) for data-driven materials design

Dataset containing calculated exfoliation energies for 636 materials

Dataset Information

  • Source: Foundry-ML
  • DOI: 10.18126/yx4h-ny59
  • Year: 2020
  • Authors: Choudhary, Kamal, Garrity, Kevin F., Reid, Andrew C. E., DeCost, Brian, Biacchi, Adam J., Walker, Angela R. Hight, Trautt, Zachary, Hattrick-Simpers, Jason, Kusne, A. Gilad, Centrone, Andrea, Davydov, Albert, Jiang, Jie, Pachter, Ruth, Cheon, Gowoon, Reed, Evan, Agrawal, Ankit, Qian, Xiaofeng, Sharma, Vinit, Zhuang, Houlong, Kalinin, Sergei V., Sumpter, Bobby G., Pilania, Ghanshyam, Acar, Pinar, Mandal, Subhasish, Haule, Kristjan, Vanderbilt, David, Rabe, Karin, Tavazza, Francesca
  • Data Type: tabular

Fields

Field Role Description Units
formula input Material composition
target target Exfoliation energy eV/atom

Splits

  • train: train

Usage

With Foundry-ML (recommended for materials science workflows)

from foundry import Foundry

f = Foundry()
dataset = f.get_dataset("10.18126/yx4h-ny59")
X, y = dataset.get_as_dict()['train']

With HuggingFace Datasets

from datasets import load_dataset

dataset = load_dataset("Dataset_exfoliationE")

Citation

@misc{https://doi.org/10.18126/yx4h-ny59
doi = {10.18126/yx4h-ny59}
url = {https://doi.org/10.18126/yx4h-ny59}
author = {Choudhary, Kamal and Garrity, Kevin F. and Reid, Andrew C. E. and DeCost, Brian and Biacchi, Adam J. and Walker, Angela R. Hight and Trautt, Zachary and Hattrick-Simpers, Jason and Kusne, A. Gilad and Centrone, Andrea and Davydov, Albert and Jiang, Jie and Pachter, Ruth and Cheon, Gowoon and Reed, Evan and Agrawal, Ankit and Qian, Xiaofeng and Sharma, Vinit and Zhuang, Houlong and Kalinin, Sergei V. and Sumpter, Bobby G. and Pilania, Ghanshyam and Acar, Pinar and Mandal, Subhasish and Haule, Kristjan and Vanderbilt, David and Rabe, Karin and Tavazza, Francesca}
title = {The joint automated repository for various integrated simulations (JARVIS) for data-driven materials design}
keywords = {machine learning, foundry}
publisher = {Materials Data Facility}
year = {root=2020}}

License

other


This dataset was exported from Foundry-ML, a platform for materials science datasets.

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