Electrochemical Synthesis
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The default download contains only 14 required fields; add conditionally required and recommended fields as needed.
Instructions
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General Organic Synthesis Fields
General organic synthesis fields apply to all reactions and form the base layer for photochemical and electrochemical synthesis. Photo- and electro-specific fields only add modality-specific information; they do not replace core fields such as reactants, products, solvents, temperature, time, and atmosphere.
1.1 Reaction Identity and Basic Outcomes
Defines reaction inputs, target products, and overall outcomes; these are core fields for retrosynthesis prediction, substrate-scope expansion, and yield modeling.
thermalCCO.Brc1ccccc1.O=C=O1;1.2;2.0CCOc1ccccc182traceisolated0.201.2 Main Reaction Conditions
Records solvent, temperature, time, and atmosphere for the main reaction stage.
CC#N8012N22.0O;c1ccccc10.5;1.0101.3 Data Source and Data Quality
Records the source, responsible data-collection party, and citation information to support provenance and quality assessment.
10.1021/jacs.xxxxxEXP-2026-0419-001Johnee20260419literature1.4 Catalyst Setup
Records general catalytic systems. Photocatalysts are represented by dedicated fields in the photochemical module; cooperative photo/metal catalytic systems may use both this category and the photocatalyst category.
photocatalyst;transition_metal_catalystNi;CuNiCl2·glyme;CuI5;10CC1(C)[N+]2=CC3=CC(C(C)(C)C)=CC(C(C)(C)C)=C3O[Co2]42OC5=C(C(C)(C)C)C=C(C(C)(C)C)C=C5C=[N+]4C1(C)C5P(c1ccccc1)(c1ccccc1)c1ccccc110N1CCN(CC1)C(=O)c1ccccc1101.5 Bases, Acids, Redox Reagents, and Additives
Classify components into mutually exclusive roles according to their chemical function in the reaction, with each substance assigned to one role field. The acid category includes Brønsted and Lewis acids. Structurally defined bases, acids, oxidants, reductants, and other additives are represented by standardized SMILES; materials, mixtures, or structurally uncertain additives are represented by standardized names.
[K+].[K+].[O-]C(=O)[O-];CCN(CC)CC2.0;1.0O=C(O)C(F)(F)F;CC(=O)O0.05;1.0OO1.5[Zn];CC[SiH](CC)CC3.0;1.0NS(N)(=O)=O;[Li][Cl]0.1;0.54A molecular sieves501.6 Non-Target Product Structures and Yields
Records explicitly reported non-target product structures and their quantitative or qualitative yields. This field group describes only the relation of a product to the study target and does not infer its origin, mechanism, or pathway.
c1ccccc1-c1ccccc1;c1ccccc112;5trace;minor1.7 Selectivity and Isomer Information
Records enantioselectivity, diastereoselectivity, and alkene geometric selectivity of the target product. ratio fields represent composition ratios, ratio_order fields specify term order, and descriptor or configuration fields identify the isomer class corresponding to the target product.
O[C@@H](C)c1ccccc187chiral-HPLCX-ray95:5syn/antisyn1H-NMRNOESY95:5E/ZEGCcoupling-constant-analysis1.8 Flow Chemistry Setup
Operating parameters for flow reactors and flow electrochemical or photochemical systems, applicable only to continuous-flow conditions.
1050.255.0PFA10gas_liquid1.0T-mixercoil_reactor1.9 Apparatus, Temperature Control, Stirring, and Procedure
Records vessel, sealing, temperature control, stirring, and complex addition or temperature-change procedures.
Schlenk_flaskseptumoil_bathmagnetic_stir_bar800yesdropwise;portionwisemCPBA;Et3N0.5;0.1670 C, mCPBA dropwise 0.5 h; then Et3N portionwise 10 min; heat to 80 C for 12 h00.5solution turned dark brown; black precipitate formedElectrochemical Synthesis Fields
Fill only when activation_mode includes electrochemical, photo_electrochemical, electro_thermal, or photo_electro_thermal.
2.1 Electrolysis Control and Charge Input
Records electrolysis mode, current/potential/cell voltage, waveform, and total charge.
galvanostatic10;-101.83.0500;5002.52.2 Mediators and Electrolytes
Records indirect-electrolysis mediators and supporting electrolytes.
nBu4NBF40.10TEMPO202.3 Electrodes and Electrolysis Cell
Records electrode materials, macroscopic form, polarity, and cell type.
anodic_oxidationundividedgraphitePtplaterodAg/AgClglass_frit2.4 Electrode Dimensions and Geometric Parameters
Used to approximate real electrode area, iR drop, and mass-transfer conditions. Not mandatory when not reported in the literature.
20100.520100.552.0Export Selected-Field Template
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