Bismuth-based conductive MOF/COF hybrids enable efficient electrochemical heavy metal ion quantification
Shangguan N., Liu Y., Fan X. et al. · Microchemical Journal · 2026
Reported here: Bi-HHTP · Bi-HHTP/COF
This family merges chemical shorthand and formula variants only after verification against source articles. Per-paper composition and phase details remain separate below.
Hydration-dependent Bi(HHTP)-α and Bi(HHTP)-β phases are members of this family and remain distinct per-paper records.
Paper counts are material-linked through samples and measurements; technique groups are not value rankings.
Distinct primary papers in this browse group by publication year.
Filter the material-linked paper set while keeping every result in its original dossier.
3 papers
Shangguan N., Liu Y., Fan X. et al. · Microchemical Journal · 2026
Reported here: Bi-HHTP · Bi-HHTP/COF
Chen S., Zhang H., Li X. et al. · Dalton Transactions · 2023
Reported here: Bi(HHTP)
Aykanat A., Jones C.G., Cline E. et al. · ACS Applied Materials and Interfaces · 2021
Reported here: Bi(HHTP) bismuth coordination network · Bi(HHTP)-alpha · Bi(HHTP)-beta hydrate
No linked paper matches these filters.
Raw names, formulas and structural assignments remain separate; no consensus value is inferred.
| Paper and reported name | Formula and components | Structure context | Source |
|---|---|---|---|
| Bi-HHTP2026 · Bismuth-based conductive MOF/COF hybrids enable efficient electrochemical heavy metal ion quantification | Bi-HHTP (bismuth-based conductive MOF; exact empirical formula not reported)Bi(III) · 2,3,6,7,10,11-hexahydroxytriphenylene (HHTP) | unknown · PristineTypical Bi-HHTP structure assigned by XRD peaks at 8.28, 12.14, 13.93 and 26.93 deg and XPS Bi(III) signatures. | 4-5 · 2.3.1; 3.1 · Fig. S1A; Fig. 2A-D |
| Bi-HHTP/COF2026 · Bismuth-based conductive MOF/COF hybrids enable efficient electrochemical heavy metal ion quantification | Bi-HHTP/COF hybrid compositeBi(III) in Bi-HHTP component · HHTP in Bi-HHTP; TPB and DVA in COF | unknown · CompositeComposite assignment from SEM/TEM showing Bi-HHTP nanobelts combined with COF microspheres and XPS showing O, N, Bi and C with shifted binding energies. | 4-6 · 2.3.3; 3.1; 3.3 · Fig. 1G-H; Fig. 2I-L; Fig. S3A |
| Bi(HHTP)2023 · Negative electrodes for supercapacitors with good performance using conductive bismuth-catecholate metal-organic frameworks | Bi(HHTP), where HHTP = 2,3,6,7,10,11-hexahydroxytriphenyleneBi ions coordinated by oxygen atoms in BiO4 linkages · 2,3,6,7,10,11-hexahydroxytriphenylene catecholate linker | 2D · PristineLayered pi-pi coupled conductive bismuth-catecholate coordination framework; powder XRD matches reported Bi(HHTP) crystals and simulated pattern. | p001 / article p.4826 · Abstract |
| Bi(HHTP) bismuth coordination network2021 · Conductive Stimuli-Responsive Coordination Network Linked with Bismuth for Chemiresistive Gas Sensing | [Bi(HHTP)]; alpha approx C36H14Bi2O12, beta approx C72H40Bi4O29 / (C36H12O12)Bi2-2(H2O)Bismuth ions / Bi(III)-based flexible coordination nodes · 2,3,6,7,10,11-hexahydroxytriphenylene (HHTP) | 3D · PristineCrystalline semiconductive coordination network with hydration-dependent Bi(HHTP)-alpha and Bi(HHTP)-beta forms solved by MicroED. | 60306 · Abstract |
| Bi(HHTP)-alpha2021 · Conductive Stimuli-Responsive Coordination Network Linked with Bismuth for Chemiresistive Gas Sensing | C36 H14 Bi2 O12 (CIF); main text also discusses (C36H12O12)Bi2Nonequivalent Bi1/Bi2; distorted quadrilateral and distorted tetragonal pyramidal coordination environments · HHTP catecholate/semiquinone ligands | 3D · PristineDehydrated alpha form; monoclinic P21/c, beta angle ca. 94.4 degrees; 2,3-C4 topology in standard representation. | CIF header |
| Bi(HHTP)-beta hydrate2021 · Conductive Stimuli-Responsive Coordination Network Linked with Bismuth for Chemiresistive Gas Sensing | C72 H40 Bi4 O29 (CIF); main text uses (C36H12O12)Bi2-2(H2O)Bi centres with five/six-coordinate environments; aqua ligand in beta structure · HHTP ligands with water/hydrogen-bonding in slit pores | 3D · PristineHydrated beta form; monoclinic P21/c, beta angle ca. 96.70 degrees; 3,4,4,5-c nodal net. | 60310 · Elemental Composition · Figure 4 |