Synthesis evidence

Lithium Ion Diffusion in a Metal-Organic Framework Mediated by an Ionic Liquid

Fujie K., Ikeda R., Otsubo K. et al. · Chemistry of Materials · 2015 · 7355-7361

6 structured synthesis routes

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

Vague recipeSource: Main

Route 1: Other

2 · Experimental Section

AdditivesEMI-TFSA and LiTFSA
Atmospherenot specified for initial mixing; glovebox used for later sample handling
Show 2 structured reagent records
RoleReagentAmount / concentrationSource
ElectrolyteEMI-TFSANot specified2 · Experimental Section
ElectrolyteLiTFSA (lithium bis(trifluoromethylsulfonyl)amide)Not specified2 · Experimental Section
Partial recipeSource: Main

Route 2: Other

2 · Experimental Section

Metal precursorsactivated ZIF-8
Additives(EMI0.8Li0.2)TFSA prepared from EMI-TFSA and LiTFSA
Atmosphereglovebox
Timestored overnight after heating
Work-upMixed with activated ZIF-8 using a mortar and pestle.
ActivationZIF-8 activated at 423 K overnight under vacuum before loading.
Show 2 structured reagent records
RoleReagentAmount / concentrationSource
Otheractivated ZIF-8Not specified2 · Experimental Section
Electrolyte(EMI0.8Li0.2)TFSA0.57:1 molar ratio relative to activated ZIF-8 · 100% calculated volumetric pore occupancy2 · Experimental Section
Partial recipeSource: Main

Route 3: Other

2 · Experimental Section

Metal precursorsactivated ZIF-8
Additives(EMI0.8Li0.2)TFSA prepared from EMI-TFSA and LiTFSA
Atmosphereglovebox
Timestored overnight after heating
Work-upMixed with activated ZIF-8 using a mortar and pestle.
ActivationZIF-8 activated at 423 K overnight under vacuum before loading.
Show 2 structured reagent records
RoleReagentAmount / concentrationSource
Otheractivated ZIF-8Not specified2 · Experimental Section
Electrolyte(EMI0.8Li0.2)TFSA0.42:1 molar ratio relative to activated ZIF-8 · 75% calculated volumetric pore occupancy2 · Experimental Section
Partial recipeSource: Main

Route 4: Other

2 · Experimental Section

Metal precursorsactivated ZIF-8
AdditivesEMI-TFSA
Atmosphereglovebox
Timestored overnight after heating
Work-upMixed with activated ZIF-8 using a mortar and pestle.
ActivationZIF-8 activated at 423 K overnight under vacuum before loading.
Show 2 structured reagent records
RoleReagentAmount / concentrationSource
Otheractivated ZIF-8Not specified2 · Experimental Section
ElectrolyteEMI-TFSA0.57:1 molar ratio relative to activated ZIF-8 · 100% calculated volumetric pore occupancy2 · Experimental Section
Partial recipeSource: Main

Route 5: Other

2 · Experimental Section

Metal precursorsactivated ZIF-8
AdditivesEMI-TFSA
Atmosphereglovebox
Timestored overnight after heating
Work-upMixed with activated ZIF-8 using a mortar and pestle.
ActivationZIF-8 activated at 423 K overnight under vacuum before loading.
Show 2 structured reagent records
RoleReagentAmount / concentrationSource
Otheractivated ZIF-8Not specified2 · Experimental Section
ElectrolyteEMI-TFSA0.42:1 molar ratio relative to activated ZIF-8 · 75% calculated volumetric pore occupancy2 · Experimental Section
Complete recipeSource: Main

Route 6: Other

2 · Experimental Section

Metal precursorsZn(NO3)2.6H2O (1.10 g, 3.70 mmol)
Linker precursors2-methylimidazole (1.22 g, 14.8 mmol)
Solventsmethanol, 75 mL for zinc nitrate solution and 75 mL for linker/base solution
Additivestriethylamine (3.00 g, 29.7 mmol)
Atmosphereambient temperature during synthesis; vacuum for activation
Temperatureambient for 1 h synthesis; 149.85 C activation
Time1 h stirring; overnight activation
Work-upWhite precipitate collected by centrifugation and washed five times using methanol.
ActivationActivated at 423 K overnight under vacuum.
Show 4 structured reagent records
RoleReagentAmount / concentrationSource
Metal SourceZn(NO3)2.6H2O1.10 g, 3.70 mmol2 · Experimental Section
Linker2-methylimidazole1.22 g, 14.8 mmol2 · Experimental Section
Basetriethylamine3.00 g, 29.7 mmol2 · Experimental Section
Solventmethanol150 mL total2 · Experimental Section