| Bare glassy carbon electrode2025 · A mixed-organic ligands Ru(bpy)32+@Zn mMOFs-NH2 nanoreactors integrated co-reaction accelerator and morphologic regulator for the electrochemiluminescence detection of ATP | GCE | unknown · Model SystemNon-MOF electrochemical control electrode | 4 · 3.3 · Fig. 4 caption |
| bare glassy carbon electrode2025 · Comparing Ag-O coordinated AgMOF-5 and Ag-N coordinated Ag nanosphere catalytic polymers for real time monitoring of H2O2 level in cancer cells | C | unknown · Model SystemCommercial/standard glassy carbon electrode used as electrochemical control. | 3 · 2.4. Electrochemical experiments |
| bare glassy carbon electrode2024 · A Sensing Platform Based on Ni/Mn Bimetal-Organic Framework for Electrochemical Detection of Osimertinib | Cnone · none | 0D · Model SystemCommercial/standard glassy carbon working electrode used as electrochemical control. | p002 · Materials and Instruments |
| bare glassy carbon electrode2023 · Sensing interface based on electrodeposited Cu-BTC microporous film for electrochemical detection of the painkiller paracetamol | C | unknown · Model SystemCommercial glassy carbon electrode control, diameter 3 mm. | p002 / 1778 · Experimental |
| Bare glassy carbon electrode2022 · 3D Co-doped Ni-based conductive MOFs modified electrochemical sensor for highly sensitive detection of L-tryptophan | glassy carbon | unknown · Model SystemCommercial/support electrode used as non-MOF electrochemical control. | 2 · 2.2 |
| Bare glassy carbon electrode2022 · One-step electrochemical synthesis of tremella-like Co-MOFs/carbon nanohorns films for enhanced electrochemical sensing of carbendazim in vegetable and fruit samples | GCE | unknown · UnknownUnmodified glassy carbon electrode with 3 mm diameter used as electrochemical control. | p002 · Section 2.1 |
| Bare glassy carbon electrode2022 · Self-supporting electrochemical sensors for monitoring of cell-released H2O2 based on metal nanoparticle/MOF nanozymes | GCEnot_applicable · not_applicable | unknown · Model SystemPolished glassy carbon electrode baseline. | main p.3 · 2.2. Electrochemical preparation of sensing electrodes |
| bare glassy carbon electrode2021 · Truxone-Based Conductive Metal-Organic Frameworks for the Oxygen Reductive Reaction | C | unknown · UnknownBare GC electrode control. | p006 / article p.12695 · Results and Discussion · Figure 5a,b |
| bare glassy carbon electrode2021 · Ferrocene-functionalized Ni(II)-based metal-organic framework as electrochemical sensing interface for ratiometric analysis of Cu2+, Pb2+ and Cd2+ | C | unknown · Model SystemCommercial glassy carbon electrode control used as working electrode. | p002 · 2.1. Chemicals and Instruments |
| Bare glassy carbon electrode2021 · A multifunctional n-doped cu–mofs (N–cu–mof) nanomaterial-driven electrochemical aptasensor for sensitive detection of deoxynivalenol | GCE | unknown · Model SystemNon-MOF electrochemical control electrode. | p005 · 2.2 Electrochemical Behaviors of Fabricated Electrodes · Figure 3 |
| bare glassy carbon electrode2020 · Electrochemical immunoassay for the carcinoembryonic antigen based on Au NPs modified zeolitic imidazolate framework and ordered mesoporous carbon | Cnone · none | unknown · Model SystemCommercial 3 mm diameter GCE control electrode. | 2 · Electrochemical measurements |