Continuous and reversible tuning of inter-layer spacings in two-dimensional conductive metal organic frameworks
Dontireddy G.M.R., Suman S.P., Merino-Gardea J.L. et al. · Journal of Materials Chemistry A · 2025
Reported here: Cu3HHTT2
This family merges chemical shorthand and formula variants only after verification against source articles. Per-paper composition and phase details remain separate below.
Here HHTT is the tetraaza/tricycloquinazoline linker. Bare Cu–HHTT labels using hexahydroxytriptycene remain a different paper-scoped material.
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.
4 papers
Dontireddy G.M.R., Suman S.P., Merino-Gardea J.L. et al. · Journal of Materials Chemistry A · 2025
Reported here: Cu3HHTT2
Jo Y.-M., Kim D.-H., Wang J. et al. · Journal of the American Chemical Society · 2024
Reported here: Cu3HHTT2
Liu C.-K., Piradi V., Song J. et al. · Advanced Materials · 2022
Reported here: Cu3(HHTT)2
Cao J., Liu C.-K., Piradi V. et al. · ACS Energy Letters · 2022
Reported here: Cu3(HHTT)2 2D c-MOF
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 |
|---|---|---|---|
| Cu3HHTT22025 · Continuous and reversible tuning of inter-layer spacings in two-dimensional conductive metal organic frameworks | Cu3(hexahydroxytetraazanaphthotetraphene)2Cu nodes in square-planar coordination network · HHTT | 2D · PristineSquare-planar 2D cMOF analogue of Ni6HHTT3 that does not host water molecules. | p005 · Solvent removal in Ni6HHTT3 · Fig. S14 |
| Cu3HHTT22024 · Humidity-Mediated Dual Ionic-Electronic Conductivity Enables High Sensitivity in MOF Chemiresistors | Cu3(HHTT)2; H6HHTT = 2,3,7,8,12,13-hexahydroxy-4b1,5,10,15-tetraazanaphtho[1,2,3-gh]tetrapheneCu ions bound to catechol oxygen atoms; mixed Cu+ and Cu2+ states by XPS · HHTT ligand, a tetraazanaphthotetraphene analogue with pyridinic and graphitic nitrogen sites | 2D · PristineHoneycomb layer-structured 2D hexagonal net with planar stacked sheets; pyridinic nitrogen and copper biscatechol sites exposed to the pore. | p002 / article p.20214 · Results and Discussion · Figure 1 |
| Cu3(HHTT)22022 · 2D Metal–Organic Framework Cu3(HHTT)2 Films for Broadband Photodetectors from Ultraviolet to Mid-Infrared | Cu3(HHTT)2Cu2+ ions / Cu nodes · HHTT, 2,3,7,8,12,13-hexahydroxytetraazanaphthotetraphene | 2D · Pristine2D conjugated MOF with a planar honeycomb lattice, about 2.5 nm pore size, about 0.32 nm interlayer distance, oriented thin-film GIXRD, and hexagonal HRTEM FFT. | p001-p003 · Abstract; Results and Discussion · Figure 1 |
| Cu3(HHTT)2 2D c-MOF2022 · Ultrathin Self-Assembly Two-Dimensional Metal-Organic Framework Films as Hole Transport Layers in Ideal-Bandgap Perovskite Solar Cells | Cu3(HHTT)2; HHTT = 2,3,7,8,12,13-hexahydroxytetraazanaphthotetrapheneSquare-planar Cu2+ ions coordinated to HHTT-derived oxygen sites · HHTT ligand with enlarged pi-conjugation and embedded nitrogen heteroatoms | 2D · PristineHighly oriented 2D conjugated MOF thin film with hexagonal in-plane crystal structure and ca. 0.32 nm interlayer spacing. | p002 / article p.3363 · Main text · Figure 1 |