Synthesis evidence

Encapsulating ionic liquids into POM-based MOFs to improve their conductivity for superior lithium storage

Zhang M., Zhang A.-M., Wang X.-X. et al. · Journal of Materials Chemistry A · 2018 · 8735-8741

7 structured synthesis routes

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

Partial recipeSource: Main

Route 1: Other

2 (journal p. 8736) · Materials and synthetic procedures

Metal precursorsMIL-100
SolventsH2O (25 mL inferred from same method)
Additivesexcess ILs
Temperatureroom temperature
Time24
Oxidant / reductantion-exchange analogue
Work-upcollected by centrifugation and washed with diethyl ether
Show 3 structured reagent records
RoleReagentAmount / concentrationSource
AdditiveILsexcess2 (journal p. 8736) · Materials and synthetic procedures
OtherMIL-100replaces PMo10V2@MIL-100; exact amount not stated2 (journal p. 8736) · Materials and synthetic procedures
SolventH2O25 mL inferred from same method2 (journal p. 8736) · Materials and synthetic procedures
Partial recipeSource: Main

Route 2: Hydrothermal

2 (journal p. 8736) · Materials and synthetic procedures

Metal precursorsFeCl3.6H2O (1.62 g)
Linker precursorsbenzene-1,3,5-tricarboxylic acid (BTC, 0.834 g)
SolventsH2O (30 mL)
Temperature130
Time72
Work-upfiltered and washed with acetone
Show 3 structured reagent records
RoleReagentAmount / concentrationSource
Metal SourceFeCl3.6H2O1.62 g2 (journal p. 8736) · Materials and synthetic procedures
LinkerBTC0.834 g2 (journal p. 8736) · Materials and synthetic procedures
SolventH2O30 mL2 (journal p. 8736) · Materials and synthetic procedures
Partial recipeSource: Main

Route 3: Other

2 (journal p. 8736) · Materials and synthetic procedures

Metal precursorsCu(OAc)2.H2O (0.2 g); PMo10V2 (0.22 g)
Linker precursorsBTC (0.14 g)
SolventsH2O (10 mL) for Cu/POM solution; alcohol (10 mL) for BTC solution
AdditivesPMo10V2 polyoxometalate guest
Temperatureroom temperature
Work-upBTC solution added dropwise under continuous stirring; precipitate collected by centrifugation and washed with alcohol and deionized water
Show 5 structured reagent records
RoleReagentAmount / concentrationSource
Metal SourceCu(OAc)2.H2O0.2 g2 (journal p. 8736) · Materials and synthetic procedures
AdditivePMo10V20.22 g2 (journal p. 8736) · Materials and synthetic procedures
LinkerBTC0.14 g2 (journal p. 8736) · Materials and synthetic procedures
SolventH2O10 mL2 (journal p. 8736) · Materials and synthetic procedures
Solventalcohol10 mL2 (journal p. 8736) · Materials and synthetic procedures
Partial recipeSource: Main

Route 4: Other

2 (journal p. 8736) · Materials and synthetic procedures

Metal precursorsPMo10V2@HKUST-1
SolventsH2O (25 mL inferred from same method)
Additivesexcess ILs
Temperatureroom temperature
Time24
Oxidant / reductantion-exchange analogue
Work-upcollected by centrifugation and washed with diethyl ether
Show 2 structured reagent records
RoleReagentAmount / concentrationSource
AdditiveILsexcess2 (journal p. 8736) · Materials and synthetic procedures
OtherPMo10V2@HKUST-1replaces PMo10V2@MIL-100; exact amount not stated2 (journal p. 8736) · Materials and synthetic procedures
Partial recipeSource: Main

Route 5: Other

2 (journal p. 8736) · Materials and synthetic procedures

Metal precursorsPMo10V2@MIL-100 (2.0 g)
SolventsH2O (25 mL)
Additivesexcess 1-ethyl-3-methylimidazolium bromide (ILs)
Temperatureroom temperature
Time24
Oxidant / reductantanion-exchange / ion-exchange procedure
Work-upcollected by centrifugation and washed with diethyl ether
Scalability contextAuthors note the synthesis is complex and ionic liquids are not cheap.
Show 3 structured reagent records
RoleReagentAmount / concentrationSource
AdditiveILs (1-ethyl-3-methylimidazolium bromide)excess2 (journal p. 8736) · Materials and synthetic procedures
OtherPMo10V2@MIL-1002.0 g2 (journal p. 8736) · Materials and synthetic procedures
SolventH2O25 mL2 (journal p. 8736) · Materials and synthetic procedures
Partial recipeSource: Main

Route 6: Hydrothermal

2 (journal p. 8736) · Materials and synthetic procedures

Metal precursorsFeCl3.6H2O (0.945 g); PMo10V2 (2.036 g)
Linker precursorsBTC (0.68 g)
SolventsH2O (25 mL)
AdditivesPMo10V2 polyoxometalate guest
Temperature130
Time72
Work-upfiltered and washed with ethanol and ether
Show 4 structured reagent records
RoleReagentAmount / concentrationSource
Metal SourceFeCl3.6H2O0.945 g2 (journal p. 8736) · Materials and synthetic procedures
LinkerBTC0.68 g2 (journal p. 8736) · Materials and synthetic procedures
AdditivePMo10V22.036 g2 (journal p. 8736) · Materials and synthetic procedures
SolventH2O25 mL2 (journal p. 8736) · Materials and synthetic procedures
Partial recipeSource: Main

Route 7: Other

2 (journal p. 8736) · Materials and synthetic procedures

Metal precursorsPMo12@MIL-100
SolventsH2O (25 mL inferred from same method)
Additivesexcess ILs
Temperatureroom temperature
Time24
Oxidant / reductantion-exchange analogue
Work-upcollected by centrifugation and washed with diethyl ether
Show 2 structured reagent records
RoleReagentAmount / concentrationSource
AdditiveILsexcess2 (journal p. 8736) · Materials and synthetic procedures
OtherPMo12@MIL-100replaces PMo10V2@MIL-100; exact amount not stated2 (journal p. 8736) · Materials and synthetic procedures