Primary study2026
1D Conductive Metal-Organic Framework-Enabled Dual-Parameter MEMS Gas Sensor for Thermal Runaway Monitoring
Liu X., Wu J., Li J. et al. · Advanced Functional Materials · 2026
Reported here: CuBTA
This group combines only harmless case, dash and spacing variants of the reported identity. It does not assert a broader chemical equivalence without source review.
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.
1 papers
Liu X., Wu J., Li J. et al. · Advanced Functional Materials · 2026
Reported here: CuBTA
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 |
|---|---|---|---|
| CuBTA2026 · 1D Conductive Metal-Organic Framework-Enabled Dual-Parameter MEMS Gas Sensor for Thermal Runaway Monitoring | Cu-BTA 1D conductive MOF; BTA = 1,2,4,5-benzenetetramine-derived ligandCopper coordination sites; high-resolution Cu 2p indicates mixed Cu(I)/Cu(II). · 1,2,4,5-benzenetetramine (from BTA.4HCl), oxidised/deprotonated to coordinated -NH-/-C=N units. | 1D · Pristine1D chain-structured MBTA conductive MOF with pi-pi/pi-d conjugation and herringbone chain arrangement; PXRD matches BTA-based MOFs. | p.3 · Results and Discussion, 2.1 · Figure 2 |