Synthesis evidence

Reconstruction of Co/Ni metal-organic-framework based electrode materials with excellent conductivity and integral stability via extended hydrothermal treatment toward improved performance of supercapacitors

Ji Y., Ren F., Tan S. et al. · Journal of Electroanalytical Chemistry · 2023 · 117265

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: Other

2 · 2.3 The assembling of asymmetric supercapacitor (ASC)

Solvents2 M KOH electrolyte
Additivesacetylene black; PTFE; glass fiber separator
Atmospherenot reported
Show 6 structured reagent records
RoleReagentAmount / concentrationSource
OtherCo/Ni-MOF@CC-12positive electrode directly2 · 2.3 The assembling of asymmetric supercapacitor (ASC)
Otheractive carbon (AC)negative electrode component2 · 2.3 The assembling of asymmetric supercapacitor (ASC)
Additiveacetylene blackAC:acetylene black:PTFE = 8:1:12 · 2.3 The assembling of asymmetric supercapacitor (ASC)
AdditivePTFEAC:acetylene black:PTFE = 8:1:12 · 2.3 The assembling of asymmetric supercapacitor (ASC)
ElectrolyteKOH solution2 M2 · 2.3 The assembling of asymmetric supercapacitor (ASC)
Otherglass fiberseparator2 · 2.3 The assembling of asymmetric supercapacitor (ASC)
Complete recipeSource: Main

Route 2: Hydrothermal

2 · 2.1 The activation of carbon cloth

Solvents10 mL 3 M HNO3 solution; deionized water; absolute alcohol
AdditivesHNO3 acid activation
Atmospherenot reported
Temperature180
Time3
Substrate orientationseveral pieces of carbon cloth, 2 x 3 cm2
Oxidant / reductantHNO3
Work-upnatural cooling; ultrasonic treatment in 30 mL deionized water for 30 min; washed three times with deionized water and absolute alcohol
Activationvacuum drying at 60 C for 12 h
Show 4 structured reagent records
RoleReagentAmount / concentrationSource
AcidHNO3 solution10 mL · 3 M2 · 2.1 The activation of carbon cloth
Othercarbon clothseveral pieces, 2 x 3 cm22 · 2.1 The activation of carbon cloth
Solventdeionized water30 mL for ultrasonic treatment; wash solvent2 · 2.1 The activation of carbon cloth
Solventabsolute alcoholwash solvent2 · 2.1 The activation of carbon cloth
Complete recipeSource: Main

Route 3: Hydrothermal

2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth

Metal precursorsCo(NO3)2.6H2O; Ni(NO3)2.6H2O
Linker precursorsisophthalic acid
Solvents20 mL deionized water; 20 mL absolute alcohol; 10 mL N,N-dimethylformamide
Atmospherenot reported
Temperature150
Time12
Substrate orientationpiece of activated carbon cloth in 100 mL autoclave
Work-upcooled to room temperature; carbon cloth removed and washed several times with deionized water and absolute alcohol
Activationvacuum drying at 60 C for 12 h
Show 7 structured reagent records
RoleReagentAmount / concentrationSource
Metal SourceCo(NO3)2.6H2O580 mg2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
Metal SourceNi(NO3)2.6H2O580 mg2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
Linkerisophthalic acid170 mg2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
Solventdeionized water20 mL2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
Solventabsolute alcohol20 mL2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
SolventN,N-Dimethylformamide (DMF)10 mL2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
Otheractivated carbon clotha piece2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
Complete recipeSource: Main

Route 4: Hydrothermal

2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth

Metal precursorsCo(NO3)2.6H2O; Ni(NO3)2.6H2O
Linker precursorsisophthalic acid
Solvents20 mL deionized water; 20 mL absolute alcohol; 10 mL N,N-dimethylformamide
Atmospherenot reported
Temperature150
Time18
Substrate orientationpiece of activated carbon cloth in 100 mL autoclave
Work-upcooled to room temperature; carbon cloth removed and washed several times with deionized water and absolute alcohol
Activationvacuum drying at 60 C for 12 h
Show 7 structured reagent records
RoleReagentAmount / concentrationSource
Metal SourceCo(NO3)2.6H2O580 mg2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
Metal SourceNi(NO3)2.6H2O580 mg2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
Linkerisophthalic acid170 mg2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
Solventdeionized water20 mL2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
Solventabsolute alcohol20 mL2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
SolventN,N-Dimethylformamide (DMF)10 mL2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
Otheractivated carbon clotha piece2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
Complete recipeSource: Main

Route 5: Hydrothermal

2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth

Metal precursorsCo(NO3)2.6H2O; Ni(NO3)2.6H2O
Linker precursorsisophthalic acid
Solvents20 mL deionized water; 20 mL absolute alcohol; 10 mL N,N-dimethylformamide
Atmospherenot reported
Temperature150
Time6
Substrate orientationpiece of activated carbon cloth in 100 mL autoclave
Work-upcooled to room temperature; carbon cloth removed and washed several times with deionized water and absolute alcohol
Activationvacuum drying at 60 C for 12 h
Show 7 structured reagent records
RoleReagentAmount / concentrationSource
Metal SourceCo(NO3)2.6H2O580 mg2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
Metal SourceNi(NO3)2.6H2O580 mg2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
Linkerisophthalic acid170 mg2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
Solventdeionized water20 mL2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
Solventabsolute alcohol20 mL2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
SolventN,N-Dimethylformamide (DMF)10 mL2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth
Otheractivated carbon clotha piece2 · 2.2 The synthesis of Co/Ni-MOF anchored on carbon cloth