Synthesis evidence

Ag doped Co/Ni bimetallic organic framework for determination of luteolin

Tang J., Hu T., Li N. et al. · Microchemical Journal · 2022 · 107461

5 structured synthesis routes

Completeness describes how fully the route could be reconstructed from the main article and supporting information.

Partial recipeSource: Main

Route 1: Electrochemical

3 · 2.5 Fabrication of the working electrode · Scheme 1

Metal precursorsAg-CoNi-MOF nanosheets
Solvents2 mL DMF
Additives0.169 g NaNO3
Atmospherenot reported
Temperaturenot reported
Substrate orientationglassy carbon electrode, diameter 3 mm
Scalability contextElectrode fabrication uses 2 mg active material in 2 mL suspension.
Show 3 structured reagent records
RoleReagentAmount / concentrationSource
OtherAg-CoNi-MOF nanosheets2 mg3 · 2.5 Fabrication of the working electrode · Scheme 1
SolventDMF2 mL3 · 2.5 Fabrication of the working electrode · Scheme 1
ElectrolyteNaNO30.169 g3 · 2.5 Fabrication of the working electrode · Scheme 1
Complete recipeSource: Main

Route 2: Other

3 · 2.4 Preparation of Ag-CoNi-MOF

Metal precursorsCoNi-MOF; preformed Ag NP solution
Linker precursors2-MeIM already present in CoNi-MOF
Solvents100 mL preformed aqueous Ag NPs solution
Additivesresidual citrate/glucose from Ag NP preparation
Atmospherenot reported
Temperaturenot reported during 120 min sonication
Time2
Work-upcentrifuged, washed three times with deionized water
Activationdried under vacuum at 70 C for 12 h
Scalability context50 mg CoNi-MOF batch loading in 100 mL Ag NP solution.
Show 2 structured reagent records
RoleReagentAmount / concentrationSource
OtherCoNi-MOF50 mg3 · 2.4 Preparation of Ag-CoNi-MOF
OtherAg NPs solution100 mL3 · 2.4 Preparation of Ag-CoNi-MOF
Complete recipeSource: Main

Route 3: Other

3 · 2.4 Preparation of Ag-CoNi-MOF

Metal precursors0.043 mmol AgNO3
Solventsdeionized water: 100 mL citrate solution; 50 mL AgNO3 solution; 50 mL glucose solution
Additives0.1 mmol trisodium citrate dehydrate
Atmospherenot reported
Temperature94
Time0.5 after glucose addition; 10 min sonication before glucose
Oxidant / reductant2.78 mmol glucose water solution
Work-upnone reported for isolated Ag NPs solution
Scalability contextAqueous batch colloid preparation.
Show 4 structured reagent records
RoleReagentAmount / concentrationSource
Metal SourceAgNO30.043 mmol3 · 2.4 Preparation of Ag-CoNi-MOF
Additivetrisodium citrate dehydrate0.1 mmol3 · 2.4 Preparation of Ag-CoNi-MOF
Reductantglucose water solution2.78 mmol in 50 mL3 · 2.4 Preparation of Ag-CoNi-MOF
Solventdeionized water200 mL total stated3 · 2.4 Preparation of Ag-CoNi-MOF
Vague recipeSource: Main

Route 4: Electrochemical

3 · 2.5 Fabrication of the working electrode

Metal precursorsCoNi-MOF nanosheets
SolventsDMF, by similar method to Ag-CoNi-MOF/GCE
AdditivesNaNO3, by similar method to Ag-CoNi-MOF/GCE
Atmospherenot reported
Temperaturenot reported
Substrate orientationglassy carbon electrode
Show 1 structured reagent record
RoleReagentAmount / concentrationSource
OtherCoNi-MOF nanosheetsnot separately reported3 · 2.5 Fabrication of the working electrode
Complete recipeSource: Main

Route 5: Other

2 · 2.3 Preparation of CoNi-MOFs

Metal precursors12 mmol Co(NO3)2.6H2O; 4 mmol Ni(NO3)2.6H2O
Linker precursors4 mmol 2-methylimidazole (2-MeIM)
Solventsmethanol: 120 mL for metal salts; 40 mL for 2-MeIM
Atmospherenot reported
TemperatureRT
Time6
Work-upwashed thoroughly with methanol
Activationdried under vacuum at 60 C
Scalability contextBatch solution precipitation/stirring recipe with millimole precursor amounts.
Show 4 structured reagent records
RoleReagentAmount / concentrationSource
Metal SourceCo(NO3)2.6H2O12 mmol2 · 2.3 Preparation of CoNi-MOFs
Metal SourceNi(NO3)2.6H2O4 mmol2 · 2.3 Preparation of CoNi-MOFs
Linker2-methylimidazole (2-MeIM)4 mmol2 · 2.3 Preparation of CoNi-MOFs
Solventmethanol120 mL + 40 mL2 · 2.3 Preparation of CoNi-MOFs