From insulator to semiconductor: effect of host-guest interactions on charge transport in M-MOF-74 metal-organic frameworks
Angel S.M., Barnett N.S., Talin A.A. et al. · Journal of Materials Chemistry C · 2024
Reported here: Mn-MOF-74
This family merges chemical shorthand and formula variants only after verification against source articles. Per-paper composition and phase details remain separate below.
This metal-specific MOF-74/CPO-27 discovery family includes source-verified coordinated-solvent states, whose full formula and activation state remain attached to each record. Reviewed members are classified as 3D frameworks containing 1D channels; pore-direction and structural descriptions remain visible below. Guest-loaded, substituted-linker, mixed-metal and phase-unverified M₂(DOBDC) films remain separate materials.
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6 papers
Angel S.M., Barnett N.S., Talin A.A. et al. · Journal of Materials Chemistry C · 2024
Reported here: Mn-MOF-74
Dong P., Zhang X., Hiscox W. et al. · Advanced Materials · 2023
Reported here: Mn-MOF-74 nanoparticles
Rambabu D., Lakraychi A.E., Wang J. et al. · Journal of the American Chemical Society · 2021
Reported here: Mn-CPO-27 (Mn2-DOBDC)
Scheurle P.I., Mahringer A., Jakowetz A.C. et al. · Nanoscale · 2019
Reported here: MOF-74(Mn)
Sun L., Hendon C.H., Park S.S. et al. · Chemical Science · 2017
Reported here: Mn2(DOBDC)(DMF)2
Sun L., Hendon C.H., Minier M.A. et al. · Journal of the American Chemical Society · 2015
Reported here: Mn2(DOBDC)
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 |
|---|---|---|---|
| Mn-MOF-742024 · From insulator to semiconductor: effect of host-guest interactions on charge transport in M-MOF-74 metal-organic frameworks | Mn2(dobdc) framework, reported as Mn-MOF-74Mn2+ open metal sites in MOF-74 · 2,5-dihydroxyterephthalic acid derived dobdc linker | 3D · PristineIsostructural M-MOF-74 parent framework; open d-shell host. | S-2 · Syntheses |
| Mn-MOF-74 nanoparticles2023 · Toward High-Performance Metal–Organic-Framework-Based Quasi-Solid-State Electrolytes: Tunable Structures and Electrochemical Properties | Mn2(DOBDC)Open Mn2+ sites; redox-active metal centre. · DOBDC linker from H4DOBDC | 3D · PristineMOF-74 framework confirmed by PXRD. | SI p.S-19 · Supplementary Figures and Tables · Figure S6 |
| Mn-CPO-27 (Mn2-DOBDC)2021 · An Electrically Conducting Li-Ion Metal-Organic Framework | Mn2-DOBDCMn(II) CPO-27 / MOF-74 nodes · DOBDC linker bound in CPO-27 topology | 3D · PristineCPO-27 / MOF-74 compositional analogue used as control. | 4 · 1.2.4. Synthesis of Mn-CPO-27 · Figure 2; Figure 4 |
| MOF-74(Mn)2019 · A highly crystalline anthracene-based MOF-74 series featuring electrical conductivity and luminescence | not explicitly reportedMn2+ in regular MOF-74 metal-oxo chains · 2,5-dihydroxy-1,4-benzenedicarboxylic acid / 2,5-dihydroxyterephthalic acid | 3D · PristineOriginal MOF-74 isostructure prepared as pristine control for conductivity comparison. | 20949-20951 · Abstract; Results and discussion · Table 1 |
| Mn2(DOBDC)(DMF)22017 · Is iron unique in promoting electrical conductivity in MOFs? | Mn2(DOBDC)(DMF)2Mn2+ · DOBDC; DMF-coordinated | 3D · Pristinehoneycomb structure with 1D tubular pores | 4451 · Experimental results · Fig. 1 |
| Mn2(DOBDC)2015 · Million-fold electrical conductivity enhancement in Fe2(DEBDC) versus Mn2(DEBDC) (E = S, O) | Mn2(DOBDC)(DMF)2.x(DMF) and Mn2(DOBDC)(DMF)2 sample statesMn2+ chains, (-Mn-O-)inf secondary building units · DOBDC4- = 2,5-dihydroxybenzene-1,4-dicarboxylate | 3D · PristineMOF-74 analogue used as the Mn/O comparator. | S9 · Mn2(DOBDC)(DMF)2 |