Synthesis evidence

A Conductive Metal−Organic Framework Based on Triptycene Ligand: An Effective Electrochemical Sensor for Glucose and H2O2 Detection in Food and Human Serum

Hu Q., Wu J., Ling C. et al. · Journal of the Electrochemical Society · 2023 · 037512

1 structured synthesis route

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

Partial recipeSource: Main

Route 1: Hydrothermal

3 · Preparation of Cu-HHTT/CF · Fig. 1

Metal precursorsCu(CH3COO)2.H2O, amount reported only as 'a certain mass'
Linker precursorsHHTT (0.02 mmol, 7 mg)
Solventswater, 4 mL
Additives1 M HCl used for copper-foam pretreatment
Atmospherenot stated
Temperature85
Time12
Substrate orientationpre-treated copper foam placed in 20 mL glass bottle; orientation not stated
Work-upCopper foam ultrasonicated in 1 M HCl for 15 min, washed three times with water and ethanol; after reaction product washed three times with ethanol and water.
Activationdried at room temperature
Scalability contextAuthors describe the method as simple and fast, but no scale-up data are reported.
Show 5 structured reagent records
RoleReagentAmount / concentrationSource
Metal SourceCu(CH3COO)2.H2Oa certain mass3 · Preparation of Cu-HHTT/CF · Fig. 1
Linker2,3,6,7,14,15-hexahydroxytriptycene (HHTT)0.02 mmol, 7 mg3 · Preparation of Cu-HHTT/CF · Fig. 1
Solventwater4 mL3 · Preparation of Cu-HHTT/CF · Fig. 1
AcidHCl15 min ultrasonic pretreatment · 1 M3 · Preparation of Cu-HHTT/CF · Fig. 1
Othercopper foam (CF)not stated3 · Preparation of Cu-HHTT/CF · Fig. 1