REACTION_CXSMILES
|
C([O:8][C:9]1[CH2:13][N:12]([CH2:14][C:15]([NH2:17])=[O:16])[C:11](=[O:18])[CH:10]=1)C1C=CC=CC=1.[H][H]>C(O)(=O)C.[Pd].[Pt]=O>[OH:8][CH:9]1[CH2:13][N:12]([CH2:14][C:15]([NH2:17])=[O:16])[C:11](=[O:18])[CH2:10]1
|
Name
|
|
Quantity
|
3 g
|
Type
|
reactant
|
Smiles
|
C(C1=CC=CC=C1)OC1=CC(N(C1)CC(=O)N)=O
|
Name
|
|
Quantity
|
30 mL
|
Type
|
solvent
|
Smiles
|
C(C)(=O)O
|
Name
|
|
Quantity
|
240 mg
|
Type
|
catalyst
|
Smiles
|
[Pd]
|
Name
|
|
Quantity
|
24 mg
|
Type
|
catalyst
|
Smiles
|
[Pt]=O
|
Conditions are dynamic
|
1
|
Details
|
See reaction.notes.procedure_details.
|
Type
|
FILTRATION
|
Details
|
Then filtering off from the catalyst and evaporation of the solvent
|
Type
|
DISTILLATION
|
Details
|
The water was distilled off
|
Type
|
ADDITION
|
Details
|
the residue mixed with 10 ml of acetone
|
Name
|
|
Type
|
product
|
Smiles
|
OC1CC(N(C1)CC(=O)N)=O
|
Source
|
Open Reaction Database (ORD) |
Description
|
The Open Reaction Database (ORD) is an open-access schema and infrastructure for structuring and sharing organic reaction data, including a centralized data repository. The ORD schema supports conventional and emerging technologies, from benchtop reactions to automated high-throughput experiments and flow chemistry. Our vision is that a consistent data representation and infrastructure to support data sharing will enable downstream applications that will greatly improve the state of the art with respect to computer-aided synthesis planning, reaction prediction, and other predictive chemistry tasks. |