id stringlengths 40 40 | title stringlengths 8 272 ⌀ | year stringdate 2000-01-01 00:00:00 2024-01-01 00:00:00 ⌀ | doi stringlengths 15 41 ⌀ | journal stringclasses 470
values | contribution stringlengths 159 1.51k | contributions_embedding listlengths 3.07k 3.07k | target_materials stringlengths 22 374 | precursors stringlengths 16 1.04k | process stringclasses 5
values | recipe stringlengths 89 7.46k |
|---|---|---|---|---|---|---|---|---|---|---|
0003bbcd631380d08b9df289284e8b78f87a4045 | Spark plasma sintering of alumina/yttria-doped silicon carbide | 2020 | 10.1002/ces2.10038 | International Journal of Ceramic Engineering & Science | ## Key Contributions
- Novel materials or compounds: SiC doped with combined alumina (Al2O3) and yttria (Y2O3) leading to YAG phase formation
- Unique synthesis methods: Spark plasma sintering with simultaneous addition of alumina and yttria as sintering aids
- Specific applications or domains: Enhanced densification ... | [
0.01501493901014328,
0.008960749953985214,
-0.030746188014745712,
-0.03807457908987999,
0.008705909363925457,
0.017893949523568153,
-0.03319816663861275,
-0.023886151611804962,
0.003657308639958501,
-0.006711953319609165,
0.026558535173535347,
0.0012027447810396552,
0.027853401377797127,
-... | ## Target_Materials
SiC | ## Precursors
SiC, Al(NO3)3·9H2O, Y(NO3)3·6H2O | ## Process
sintering_consolidation | ## Target_Materials
SiC
## Precursors
SiC, Al(NO3)3·9H2O, Y(NO3)3·6H2O
## Synthesis Recipe
Step 1: Select silicon carbide powder type, either coarse SiC ABR I F1500 S with mean diameter about 2 μm or fine SiC FCP 15 NLC RTP with particle size 0.1-1 μm.
Step 2: Dissolve the specified amount of aluminum nitrate no... |
0008116a2e5bff7bdc7d1e93616d160b57823b5c | Synthesis and characterization of spark plasma sintered zirconia and ferrotitanium reinforced hybrid aluminium composite | 2023 | 10.1007/s00170-022-10748-5 | The International Journal of Advanced Manufacturing Technology | ## Key Contributions
- Novel materials or compounds: Hybrid aluminium-based composites reinforced with ZrO2 and TiFe particles; formation of new phases Fe2Ti and TiZr3
- Unique synthesis methods: Spark plasma sintering technique; tubular mixing for homogeneous powder distribution; use of Williamson-Hall method for gra... | [
0.002395976334810257,
0.001377037726342678,
-0.02853720262646675,
-0.04694383963942528,
0.008725851774215698,
0.01938924379646778,
-0.039830297231674194,
-0.018143681809306145,
0.000929846428334713,
0.006909407675266266,
0.05652082338929176,
-0.0026796876918524504,
0.03994101285934448,
-0.... | ## Target_Materials
Al, ZrO2, TiFe | ## Precursors
TiFe, ZrO2, Al | ## Process
sintering_consolidation | ## Target_Materials
Al, ZrO2, TiFe
## Precursors
TiFe, ZrO2, Al
## Synthesis Recipe
Step 1: Disperse different volume percentages of TiFe (average particle size: 176 μm, purity: 98.5%) and ZrO2 (average particle size: 5 μm, purity: 99.5%) reinforcement powder particles into the matrix of pure aluminium powder (ave... |
000ca49935a6dc7310621e3747e12a849ba383b6 | "PHASE STABILITY AND TRANSFORMATION OF ENERGY STORAGE MATERIALS\n# Issues, Developments, and Computa(...TRUNCATED) | 2022 | 10.1007/s11837-022-05512-9 | JOM | "## Key Contributions \n- Novel materials or compounds: Stable protective layers for interfaces in a(...TRUNCATED) | [0.015498124994337559,0.019652824848890305,-0.0217985101044178,-0.022440848872065544,0.0097375782206(...TRUNCATED) | ## Target_Materials
Not specified | "## Precursors \nLi3BO3, LiCoO2, LiNi0.6Co0.2Mn0.2O2, LiNi0.5Mn1.5O4, Ta-doped LLZO, Nb-doped LLZO, (...TRUNCATED) | ## Process
sintering_consolidation | "## Target_Materials \nNot specified\n\n## Precursors \nLi3BO3, LiCoO2, LiNi0.6Co0.2Mn0.2O2, LiNi0.5(...TRUNCATED) |
000ed27212b066a97539553b219bf36dd44aef60 | Solvent-free and ball mill-free catalytic C–H methylation | 2023 | 10.1039/d3gc02411c | Green Chemistry | "## Key Contributions \n- Novel materials or compounds: Rh-catalysed C–H methylated compounds\n- U(...TRUNCATED) | [-0.011408538557589054,-0.00812988169491291,-0.019953815266489983,0.008812316693365574,-0.0146575234(...TRUNCATED) | ## Target_Materials
Not specified | ## Precursors
1-pyrimidylindole (1a), MeB(OH)2 | ## Process
mechanochemical | "## Target_Materials \nNot specified\n\n## Precursors \n1-pyrimidylindole (1a), MeB(OH)2\n\n## Synth(...TRUNCATED) |
0013a060a324bb3381be1542fbc641a4a7277c1b | "Cd 4 InO(BO 3 ) 3 : A New Nonlinear Optical Crystal Exhibiting Strong Second Harmonic Generation Ef(...TRUNCATED) | 2022 | 10.3390/cryst12020266 | Crystals | "## Key Contributions \n- Novel materials or compounds: Cd4InO(BO3)3 (CIBO), noncentrosymmetric cadm(...TRUNCATED) | [-0.020628012716770172,-0.02812645584344864,-0.021240726113319397,-0.012290735729038715,0.0143404081(...TRUNCATED) | ## Target_Materials
Cd4InO(BO3)3 | ## Precursors
In2O3, CdO, PbO, H3BO3 | ## Process
solid_state_reaction | "## Target_Materials \nCd4InO(BO3)3\n\n## Precursors \nIn2O3, CdO, PbO, H3BO3\n\n## Synthesis Recipe(...TRUNCATED) |
001452c706a33ec6fd72f18779c3e47107e917c4 | "A Review on Production and Surface Modifications of Biochar Materials via Biomass Pyrolysis Process(...TRUNCATED) | 2022 | 10.3390/catal12070798 | Catalysts | "## Key Contributions \n- Novel materials or compounds: Surface-modified and activated biochar-based(...TRUNCATED) | [0.0006821395363658667,0.02553253434598446,-0.02202005498111248,-0.012651313096284866,-0.02682257257(...TRUNCATED) | ## Target_Materials
Not specified | ## Precursors
Not specified | ## Process
thermal_pyrolysis | "## Target_Materials \nNot specified\n\n## Precursors \nNot specified\n\n## Synthesis Recipe \nStep (...TRUNCATED) |
001bbe358a6b06094157d25e208e30291516097c | In Vitro Bio-Testing Comparative Analysis of NiTi Porous Alloys Modified by Heat Treatment | 2022 | 10.3390/met12061006 | Metals | "## Key Contributions \n- Novel materials or compounds: Porous NiTi with surface phases including Ni(...TRUNCATED) | [-0.008506677113473415,-0.03075542487204075,-0.02161191962659359,-0.02627751976251602,0.013849325478(...TRUNCATED) | ## Target_Materials
NiTi | ## Precursors
Not specified | ## Process
thermal_pyrolysis | "## Target_Materials \nNiTi\n\n## Precursors \nNot specified\n\n## Synthesis Recipe \nStep 1: Obtain(...TRUNCATED) |
001fc3b6b9eb5f2b0004c52472e880bd3b3460b0 | "Photocatalytic NO removal over calcium-bridged siloxenes under ultraviolet and visible light irradi(...TRUNCATED) | 2018 | 10.1039/c7dt04310d | Dalton Transactions | "## Key Contributions \n- Novel materials or compounds: Ca-bridged siloxenes (Ca-siloxenes) with tun(...TRUNCATED) | [-0.017900614067912102,-0.04148097336292267,-0.020511681213974953,0.006369523238390684,0.00951559003(...TRUNCATED) | ## Target_Materials
Ca-siloxene | ## Precursors
CaSi2, TaCl5 | ## Process
thermal_pyrolysis | "## Target_Materials \nCa-siloxene\n\n## Precursors \nCaSi2, TaCl5\n\n## Synthesis Recipe \nStep 1: (...TRUNCATED) |
0025687a1c8681c312ca15c02fef64e2f7e4fe0c | "Solid‑state synthesis of CdFe 2 4 binary catalyst for potential application in renewable hydro(...TRUNCATED) | 2022 | 10.1038/s41598-022-04999-1 | Scientific Reports | "## Key Contributions \n- Novel materials or compounds: Binary metal oxide catalyst CdFe2O4 as bifun(...TRUNCATED) | [-0.01472124457359314,-0.028231080621480942,-0.019764389842748642,-0.03397210314869881,-0.0291528049(...TRUNCATED) | ## Target_Materials
CdFe2O4 | ## Precursors
Cd(NO3)2, FeCl2, NaOH | ## Process
solid_state_reaction | "## Target_Materials \nCdFe2O4\n\n## Precursors \nCd(NO3)2, FeCl2, NaOH\n\n## Synthesis Recipe \nSte(...TRUNCATED) |
003299884be3201b5b09889af838f5902d906cd0 | "Effect of Nanocrystalline Nickel Powder and Co, Mo, Ta, and Al Additions on Isothermal Oxidation Be(...TRUNCATED) | 2020 | 10.1007/s13632-020-00614-9 | Metallography, Microstructure, and Analysis | "## Key Contributions \n- Novel materials or compounds: Nanostructured Ni–17Cr alloy with addition(...TRUNCATED) | [-0.010895833373069763,-0.02630370669066906,-0.026576412841677666,-0.019733978435397148,0.0186059679(...TRUNCATED) | ## Target_Materials
Ni–17Cr, NiCr2O4, Al2O3, Cr2O3, NiMoO4, NiO | ## Precursors
Ni, Cr, Co, Mo, Al, Ta | ## Process
sintering_consolidation | "## Target_Materials \nNi–17Cr, NiCr2O4, Al2O3, Cr2O3, NiMoO4, NiO\n\n## Precursors \nNi, Cr, Co, (...TRUNCATED) |
Inorganic Solid-State Synthesis Recipe Dataset
This dataset contains structured synthesis information extracted from 4,407 open-access papers on inorganic solid-state materials.
Each record includes bibliographic information, target materials, precursors, synthesis process, a concise contribution summary, and a structured synthesis recipe. The dataset was developed for literature retrieval and retrieval-augmented generation of synthesis recipes.
Associated code:
https://github.com/dongwon-jeon/ssr_recipe_generator_for_inorganic_materials
Main Columns
title,year,doi,journalcontributioncontributions_embeddingtarget_materialsprecursorsprocessrecipe
Load as a DataFrame
from datasets import load_dataset
dataset = load_dataset(
"wjsehdrnfl428/dataset_for_recipe_generator",
split="train",
)
df = dataset.to_pandas()
print(df.head())
Notes
The dataset was constructed using an LLM-assisted extraction pipeline and validated through recipe-generation benchmarks. It is intended as a research resource for literature retrieval and synthesis planning rather than as a definitive source of experimental protocols.
Citation
Citation information will be added after publication.
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