Synthesis evidence

Highly sensitive and selective electrochemical sensor for carbendazim detection in fruit juice using novel bi-metallic metal organic framework anchored graphite rod electrode

Dey B., Kushwaha K.S., Ullah I. et al. · Inorganic Chemistry Communications · 2025 · 114643

1 structured synthesis route

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

Complete recipeSource: Main

Route 1: Solvothermal

2 · 2.2. Fabrication of self-standing Ni-Fe(PDC)@graphite rod electrode

Metal precursors25 mmol Ni(NO3)2,6H2O; 15 mmol Fe(NO3)3,9H2O
Linker precursors0.350 g 2,6-pyridinedicarboxylic acid (PDC)
Solvents50 ml DMF for metal salts; 30 ml DMF for PDC
Atmospherenot specified
Temperature150
Time24
Substrate orientationgraphite rod present in 100 ml autoclave; orientation not specified
Work-upAutoclave slowly cooled to room temperature; MOF-deposited graphite rod carefully washed and dried at 80 deg C overnight.
ActivationDried at 80 deg C overnight; BET samples degassed at 120 deg C for 12 h before porosity measurement.
Scalability contextOne-step solvothermal rod coating in a 100 ml autoclave; authors describe it as simple, cost-effective and waste-reducing.
Show 5 structured reagent records
RoleReagentAmount / concentrationSource
Metal SourceNi(NO3)2,6H2O25 mmol2 · 2.2. Fabrication of self-standing Ni-Fe(PDC)@graphite rod electrode
Metal SourceFe(NO3)3,9H2O15 mmol2 · 2.2. Fabrication of self-standing Ni-Fe(PDC)@graphite rod electrode
Linker2,6-pyridinedicarboxylic acid (PDC)0.350 g2 · 2.2. Fabrication of self-standing Ni-Fe(PDC)@graphite rod electrode
SolventDMF50 ml + 30 ml2 · 2.2. Fabrication of self-standing Ni-Fe(PDC)@graphite rod electrode
Othergraphite rodlength 100 mm; diameter 3 mm2 · 2.2. Fabrication of self-standing Ni-Fe(PDC)@graphite rod electrode