The full dataset viewer is not available (click to read why). Only showing a preview of the rows.
The dataset generation failed because of a cast error
Error code:   DatasetGenerationCastError
Exception:    DatasetGenerationCastError
Message:      An error occurred while generating the dataset

All the data files must have the same columns, but at some point there are 9 new columns ({'light source', 'Bi type in photocatalyst', 'Reaction medium', 'SBET (m2 /g)', 'loading (g/l)', 'CB edge(V)', 'irradiation time(h)', 'Main product', 'Yield (μmol/g/h)'}) and 10 missing columns ({'Preparation method', 'Reaction solution', 'Light  intensity(W)', 'Ref', 'Calcination temperature(K)', 'Molecular formula', 'Photocatalyst dose(g L-1)', 'RH2(µmol h-1 g-1)', 'Calcination time(h)', 'Co-catalyst'}).

This happened while the csv dataset builder was generating data using

hf://datasets/kg4sci/CataTQA_Metadata/metadata/table_data/table10.csv (at revision 6f49b2b7b80c551a1c56830b9e567a7b32f38b46)

Please either edit the data files to have matching columns, or separate them into different configurations (see docs at https://hf.co/docs/hub/datasets-manual-configuration#multiple-configurations)
Traceback:    Traceback (most recent call last):
                File "/src/services/worker/.venv/lib/python3.9/site-packages/datasets/builder.py", line 1871, in _prepare_split_single
                  writer.write_table(table)
                File "/src/services/worker/.venv/lib/python3.9/site-packages/datasets/arrow_writer.py", line 643, in write_table
                  pa_table = table_cast(pa_table, self._schema)
                File "/src/services/worker/.venv/lib/python3.9/site-packages/datasets/table.py", line 2293, in table_cast
                  return cast_table_to_schema(table, schema)
                File "/src/services/worker/.venv/lib/python3.9/site-packages/datasets/table.py", line 2241, in cast_table_to_schema
                  raise CastError(
              datasets.table.CastError: Couldn't cast
              Bi type in photocatalyst: string
              loading (g/l): double
              SBET (m2 /g): double
              Eg(eV): double
              CB edge(V): string
              light source: string
              irradiation time(h): double
              Reaction medium: string
              Main product: string
              Yield (μmol/g/h): double
              -- schema metadata --
              pandas: '{"index_columns": [{"kind": "range", "name": null, "start": 0, "' + 1554
              to
              {'Molecular formula': Value(dtype='string', id=None), 'RH2(µmol h-1 g-1)': Value(dtype='float64', id=None), 'Eg(eV)': Value(dtype='float64', id=None), 'Preparation method': Value(dtype='string', id=None), 'Calcination temperature(K)': Value(dtype='float64', id=None), 'Calcination time(h)': Value(dtype='float64', id=None), 'Light  intensity(W)': Value(dtype='string', id=None), 'Reaction solution': Value(dtype='string', id=None), 'Co-catalyst': Value(dtype='string', id=None), 'Photocatalyst dose(g L-1)': Value(dtype='float64', id=None), 'Ref': Value(dtype='string', id=None)}
              because column names don't match
              
              During handling of the above exception, another exception occurred:
              
              Traceback (most recent call last):
                File "/src/services/worker/src/worker/job_runners/config/parquet_and_info.py", line 1428, in compute_config_parquet_and_info_response
                  parquet_operations, partial, estimated_dataset_info = stream_convert_to_parquet(
                File "/src/services/worker/src/worker/job_runners/config/parquet_and_info.py", line 989, in stream_convert_to_parquet
                  builder._prepare_split(
                File "/src/services/worker/.venv/lib/python3.9/site-packages/datasets/builder.py", line 1742, in _prepare_split
                  for job_id, done, content in self._prepare_split_single(
                File "/src/services/worker/.venv/lib/python3.9/site-packages/datasets/builder.py", line 1873, in _prepare_split_single
                  raise DatasetGenerationCastError.from_cast_error(
              datasets.exceptions.DatasetGenerationCastError: An error occurred while generating the dataset
              
              All the data files must have the same columns, but at some point there are 9 new columns ({'light source', 'Bi type in photocatalyst', 'Reaction medium', 'SBET (m2 /g)', 'loading (g/l)', 'CB edge(V)', 'irradiation time(h)', 'Main product', 'Yield (μmol/g/h)'}) and 10 missing columns ({'Preparation method', 'Reaction solution', 'Light  intensity(W)', 'Ref', 'Calcination temperature(K)', 'Molecular formula', 'Photocatalyst dose(g L-1)', 'RH2(µmol h-1 g-1)', 'Calcination time(h)', 'Co-catalyst'}).
              
              This happened while the csv dataset builder was generating data using
              
              hf://datasets/kg4sci/CataTQA_Metadata/metadata/table_data/table10.csv (at revision 6f49b2b7b80c551a1c56830b9e567a7b32f38b46)
              
              Please either edit the data files to have matching columns, or separate them into different configurations (see docs at https://hf.co/docs/hub/datasets-manual-configuration#multiple-configurations)

Need help to make the dataset viewer work? Make sure to review how to configure the dataset viewer, and open a discussion for direct support.

Molecular formula
string
RH2(µmol h-1 g-1)
float64
Eg(eV)
float64
Preparation method
string
Calcination temperature(K)
float64
Calcination time(h)
float64
Light intensity(W)
string
Reaction solution
string
Co-catalyst
string
Photocatalyst dose(g L-1)
float64
Ref
string
null
null
null
null
null
null
null
null
null
null
null
BaTiO3
35
3
Solid state reaction
1,423
5
Xe lamp(300W),simulated sunlight
20% v/v CH3OH
Pt(0.4 wt%)
1.1
[1]
BaTi0.99Mo0.01O3
45
2.4
Solid state reaction
1,423
5
Xe lamp(300W),simulated sunlight
20% v/v CH3OH
Pt(0.4 wt%)
1.1
[1]
BaTi0.98Mo0.02O3
63
2.2
Solid state reaction
1,423
5
Xe lamp(300W),simulated sunlight
20% v/v CH3OH
Pt(0.4 wt%)
1.1
[1]
BaTi0.97Mo0.03O3
52
2.6
Solid state reaction
1,423
5
Xe lamp(300W),simulated sunlight
20% v/v CH3OH
Pt(0.4 wt%)
1.1
[1]
LaFeO3
144.7
null
Flux-growth
1,273
10
Xe lamp (300 W), λ > 420 nm
10vol% CH3OH
Pt(0.5 wt%)
1
[2]
LaFe0.85Ti0.15O3
309.3
2.1
Flux-growth
1,273
10
Xe lamp (300 W), λ > 420 nm
10vol% CH3OH
Pt(0.5 wt%)
1
[2]
La0.85Sr0.15FeO3
30.7
null
Flux-growth
1,273
10
Xe lamp (300 W), λ > 420 nm
10vol% CH3OH
Pt(0.5 wt%)
1
[2]
La0.9625Sr0.0375Fe0.8875Ti0.1125O3
62
null
Flux-growth
1,273
10
Xe lamp (300 W), λ > 420 nm
10vol% CH3OH
Pt(0.5 wt%)
1
[2]
La0.8875Sr0.1125Fe0.9625Ti0.0375O3
422.7
null
Flux-growth
1,273
10
Xe lamp (300 W), λ > 420 nm
10vol% CH3OH
Pt(0.5 wt%)
1
[2]
La0.925Sr0.075Fe0.925Ti0.075O3
554.7
2.1
Flux-growth
1,273
10
Xe lamp (300 W), λ > 420 nm
10vol% CH3OH
Pt(0.5 wt%)
1
[2]
Bi0.5Na0.5TiO3
325.4
2.92
Hydrothermal
433
24
Xe lamp(500W),346 nm±8.6 nm
20vol% CH3OH
Pt(3 wt%)
0.75
[3]
Sr0.9Bi0.1Ti0.9Fe0.1O3
47
null
Hydrothermal
473
48
Hg lamp (500 W),λ ≥ 400 nm
0.05M Na2SO3
Pt(1 wt%)
1
[4]
Sr0.8Bi0.2Ti0.8Fe0.2O3
45
null
Hydrothermal
473
48
Hg lamp (500 W),λ ≥ 400 nm
0.05M Na2SO3
Pt(1 wt%)
1
[4]
Sr0.7Bi0.3Ti0.7Fe0.3O3
25
null
Hydrothermal
473
48
Hg lamp (500 W),λ ≥ 400 nm
0.05M Na2SO3
Pt(1 wt%)
1
[4]
Sr0.6Bi0.4Ti0.6Fe0.4O3
50
null
Hydrothermal
473
48
Hg lamp (500 W),λ ≥ 400 nm
0.05M Na2SO3
Pt(1 wt%)
1
[4]
Sr0.5Bi0.5Ti0.5Fe0.5O3
20
null
Hydrothermal
473
48
Hg lamp (500 W),λ ≥ 400 nm
0.05M Na2SO3
Pt(1 wt%)
1
[4]
SrTiO3
202.6
3.25
Hydrothermal
423
10
Xe lamp(300W),320 nm <λ<780 nm
20% v/v CH3OH
Pt(1 wt%)
0.2
[5]
SrTiO3
106.8
3.25
Hydrothermal
453
10
Xe lamp(300W),320 nm <λ<780 nm
20% v/v CH3OH
Pt(1 wt%)
0.2
[5]
SrTiO3
38.4
3.25
Solid state reaction
1,173
12
Xe lamp(300W),320 nm <λ<780 nm
20% v/v CH3OH
Pt(1 wt%)
0.2
[5]
SrTiO3
null
3.2
Polymerized complex
773
null
null
null
null
null
[6]
SrTi0.99Rh0.01O3
962
null
Polymerized complex
973
null
Xe lamp (300 W), 420 nm<λ<800 nm
20vol% CH3OH
Pt(0.5 wt%)
1
[6]
AgTaO3
null
3.4
Hydrothermal
1,123
24
null
null
null
null
[7]
AgTa0.8Nb0.2O3
null
3.1
Hydrothermal
1,123
24
null
null
null
null
[7]
AgTa0.7Nb0.3O3
null
2.9
Hydrothermal
1,123
24
null
null
null
null
[7]
AgTa0.6Nb0.4O3
null
2.9
Hydrothermal
1,123
24
null
null
null
null
[7]
AgNbO3
null
2.8
Hydrothermal
1,123
24
null
null
null
null
[7]
CaTiO3
null
3.6
Sol-gel
1,123
10
null
null
null
null
[8]
Ca0.98Ag0.01La0.01TiO3
2.6
null
Sol-gel
1,123
10
Xe lamp (350 W), λ > 400 nm
5% v/v CH3OH
none
0.24
[8]
Ca0.96Ag0.02La0.02TiO3
2.9
null
Sol-gel
1,123
10
Xe lamp (350 W), λ > 400 nm
5% v/v CH3OH
none
0.24
[8]
Ca0.94Ag0.03La0.03TiO3
10.1
null
Sol-gel
1,123
10
Xe lamp (350 W), λ > 400 nm
5% v/v CH3OH
none
0.24
[8]
Ca0.92Ag0.04La0.04TiO3
4.1
null
Sol-gel
1,123
10
Xe lamp (350 W), λ > 400 nm
5% v/v CH3OH
none
0.24
[8]
BaTiO3
8
3
Polymerized complex
823
5
Xe lamp (300 W), λ > 420 nm
10vol% CH3OH
Pt(0.25 wt%)
1
[9]
BaTi0.999Rh0.001O3
10
null
Polymerized complex
823
5
Xe lamp (300 W), λ > 420 nm
10vol% CH3OH
Pt(0.25 wt%)
1
[9]
BaTi0.995Rh0.005O3
64
null
Polymerized complex
823
5
Xe lamp (300 W), λ > 420 nm
10vol% CH3OH
Pt(0.25 wt%)
1
[9]
BaTi0.99Rh0.01O3
308
null
Polymerized complex
823
5
Xe lamp (300 W), λ > 420 nm
10vol% CH3OH
Pt(0.25 wt%)
1
[9]
BaTi0.98Rh0.02O3
241
null
Polymerized complex
823
5
Xe lamp (300 W), λ > 420 nm
10vol% CH3OH
Pt(0.25 wt%)
1
[9]
BaTi0.95Rh0.05O3
199
null
Polymerized complex
823
5
Xe lamp (300 W), λ > 420 nm
10vol% CH3OH
Pt(0.25 wt%)
1
[9]
BaTi0.99Rh0.01O3
48
null
Solid state reaction
1,273
10
Xe lamp (300 W), λ > 420 nm
10vol% CH3OH
Pt(0.25 wt%)
1
[9]
SrSnO3
null
4.01
Solid state reaction
1,373
6
null
null
null
null
[10]
SrSnO3
null
4.04
Wet chemical reaction
973
6
null
null
null
null
[10]
CaTi0.99Cu0.01O3
6.2
null
Sol-gel
1,123
7
Xe lamp (350 W), λ > 400 nm
5% v/v CH3OH
NiOx
0.24
[11]
CaTi0.98Cu0.02O3
22.7
null
Sol-gel
1,123
7
Xe lamp (350 W), λ > 400 nm
5% v/v CH3OH
NiOx
0.24
[11]
CaTi0.97Cu0.03O3
12.3
null
Sol-gel
1,123
7
Xe lamp (350 W), λ > 400 nm
5% v/v CH3OH
NiOx
0.24
[11]
CaTi0.96Cu0.04O3
8.1
null
Sol-gel
1,123
7
Xe lamp (350 W), λ > 400 nm
5% v/v CH3OH
NiOx
0.24
[11]
Sr2/3Zn1/3TiO3
null
3.15
Sol-gel
1,173
5
null
null
null
null
[12]
Ba5/6Zn1/6TiO3
null
3.2
Polymerized complex Sol-gel method
1,173
5
null
null
null
null
[12]
NaTaO3
null
3.94
Solvo-combustion
453
2
null
null
null
null
[13]
NaTaO3
null
3.98
Solvo-combustion
673
2
null
null
null
null
[13]
NaTaO3
null
4.01
Solvo-combustion
873
2
null
null
null
null
[13]
NaTaO3
null
4
Solvo-combustion
973
2
null
null
null
null
[13]
SrTiO3
null
3.22
Sol-gel
1,173
4
null
null
null
null
[14]
NaTaO3
null
3.97
Molten salt method
1,023
2
null
null
null
null
[15]
NaNb0.5Ta0.5O3
null
3.43
Molten salt method
1,023
2
null
null
null
null
[15]
Ca0.9La0.1Ti0.9Cr0.1O3
null
2.49
Hydrothermal
473
48
null
null
null
null
[16]
Sr0.9La0.1Ti0.9Cr0.1O3
28.8
2.31
Hydrothermal
473
48
Xe lamp (300 W),λ ≥ 400 nm
10%v/v CH3OH+4g NaOH
Pt(1 wt%)
1
[16]
Ba0.9La0.1Ti0.9Cr0.1O3
null
2.52
Hydrothermal
473
48
null
null
null
null
[16]
c-NaNbO3
423.3
3.29
Furfural alcohol derived polymerization-oxidation
873
5
Xe lamp (300 W), λ > 300 nm
5/22 v/v CH3OH
Pt(1 wt%)
1.1
[17]
o-NaNbO3
241
3.45
Polymerized complex
873
2
Xe lamp (300 W), λ > 300 nm
5/22 v/v CH3OH
Pt(1 wt%)
1.1
[17]
NaTaO3
null
4.01
Solid state reaction
1,173
10
null
null
null
null
[18]
NaTa0.975Bi0.025O3
null
3.65
Solid state reaction
1,173
10
null
null
null
null
[18]
NaTa0.95Bi0.05O3
null
3.05
Solid state reaction
1,173
10
null
null
null
null
[18]
NaTa0.925Bi0.075O3
null
2.95
Solid state reaction
1,173
10
null
null
null
null
[18]
Na0.975Bi0.025TaO3
null
3.75
Solid state reaction
1,173
10
null
null
null
null
[18]
Na0.95Bi0.05TaO3
null
3.65
Solid state reaction
1,173
10
null
null
null
null
[18]
Na0.925Bi0.075TaO3
null
3.65
Solid state reaction
1,173
10
null
null
null
null
[18]
Sr0.95Cr0.05TiO3
84
2.3
Solid state reaction
1,373
24
Xe lamp (300 W), λ≥420 nm
5/22 v/v CH3OH
Pt(0.6 wt%)
0.93
[19]
Sr0.95Cr0.05TiO3
26.8
2.3
Sol-gel hydrothermal method
353
24
Xe lamp (300 W), λ≥420 nm
5/22 v/v CH3OH
Pt(0.6 wt%)
0.93
[19]
Sr0.95Cr0.05TiO3
101.6
2.3
Sol-gel hydrothermal method
393
24
Xe lamp (300 W), λ≥420 nm
5/22 v/v CH3OH
Pt(0.6 wt%)
0.93
[19]
Sr0.95Cr0.05TiO3
137.2
2.3
Sol-gel hydrothermal method
433
24
Xe lamp (300 W), λ≥420 nm
5/22 v/v CH3OH
Pt(0.6 wt%)
0.93
[19]
Sr0.95Cr0.05TiO3
160.4
2.3
Sol-gel hydrothermal method
473
24
Xe lamp (300 W), λ≥420 nm
5/22 v/v CH3OH
Pt(0.6 wt%)
0.93
[19]
Sr0.95Cr0.05TiO3
330.4
2.3
Sol-gel hydrothermal method
473
24
Xe lamp (300 W), λ≥420 nm
5/22 v/v CH3OH
Pt(0.6 wt%)
0.93
[19]
SrTiO3
null
3.23
Sol-gel
973
4
null
null
null
null
[20]
SrTiO3
null
3.1
Polymerized complex
773
5
null
null
null
null
[21]
SrTiO3
null
3.1
Polymerized complex
873
5
null
null
null
null
[21]
SrTiO3
null
3.1
Polymerized complex
973
5
null
null
null
null
[21]
SrTiO3
null
3.1
Polymerized complex
1,073
5
null
null
null
null
[21]
SrTiO3
null
3.1
Polymerized complex
1,273
5
null
null
null
null
[21]
SrTiO3
null
3.1
Solid state reaction
1,073
5
null
null
null
null
[21]
SrTiO3
null
2
Milling assistant method
1,073
2
null
null
null
null
[21]
SrTi0.99Al0.01O3
347
3.45
Solid state reaction
1,273
10
Xe lamp (150 W), UV visible
30%vol CH3CHOHCH3
Au(0.25%)
2.5
[22]
SrTiO3
null
3.3
Solid state reaction
1,273
10
null
null
null
null
[22]
SrTi0.995Al0.005O3
null
3.4
Solid state reaction
1,273
10
null
null
null
null
[22]
SrTi0.985Al0.015O3
null
3.45
Solid state reaction
1,273
10
null
null
null
null
[22]
SrTiO3
188
3.16
Sol-gel
973
4
Xe lamp (300 W), λ≥400 nm
50vol% CH3OH
Pt(0.5 wt%)
1
[23]
SrTi0.9Cr0.1O3−δ
null
2.31
Solid state reaction
1,573
20
null
null
null
null
[24]
La0.1Sr0.9Ti0.9Cr0.1O3
null
2.11
Solid state reaction
1,573
20
null
null
null
null
[24]
SrTiO3
null
3.25
Solid state reaction
1,573
20
null
null
null
null
[24]
LaFeO3
8,600
2.11
Sol-gel auto-combustion
773
2
Hg visible lamp(120W),(λ >> 420 nm)
10vol% CH3OH
null
2.5
[25]
LaFeO3
7,866.7
2.1
Sol-gel auto-combustion
873
2
Hg visible lamp(120W),(λ >> 420 nm)
10vol% CH3OH
null
2.5
[25]
LaFeO3
6,933.3
2.09
Sol-gel auto-combustion
973
2
Hg visible lamp(120W),(λ >> 420 nm)
10vol% CH3OH
null
2.5
[25]
LaFeO3
6,066.7
2.08
Sol-gel auto-combustion
1,073
2
Hg visible lamp(120W),(λ >> 420 nm)
10vol% CH3OH
null
2.5
[25]
LaFeO3
5,466.7
2.07
Sol-gel auto-combustion
1,173
2
Hg visible lamp(120W),(λ >> 420 nm)
10vol% CH3OH
null
2.5
[25]
CaZrO3
12.4
4
Polymerized complex
923
6
Xe lamp (300 W), λ > 420 nm
12.5%v/v HCOOH
Pt(1 wt%)
0.56
[26]
CaTiO3
null
3.52
Template-free hydrothermal method
453
15
null
null
null
null
[27]
Ca0.95La0.05Ti0.95Cr0.05O3
98
2.49
Template-free hydrothermal method
453
15
Hg lamp (500 W),λ ≥ 400 nm
0.05M Na2SO3
Pt(1 wt%)
1
[27]
Ca0.9La0.1Ti0.9Cr0.1O3
110
2.48
Template-free hydrothermal method
453
15
Hg lamp (500 W),λ ≥ 400 nm
0.05M Na2SO3
Pt(1 wt%)
1
[27]
Ca0.8La0.2Ti0.8Cr0.2O3
164
2.5
Template-free hydrothermal method
453
15
Hg lamp (500 W),λ ≥ 400 nm
0.05M Na2SO3
Pt(1 wt%)
1
[27]
NaTaO3
null
3.96
Spray pyrolysis
1,173
null
null
null
null
null
[28]
NaBi0.06Ta0.94O3
null
2.96
Spray pyrolysis
1,173
null
null
null
null
null
[28]
End of preview.