Source-verified familyIdentity or context cautions

Ni/Zn–HHTP family

This family merges chemical shorthand and formula variants only after verification against source articles. Per-paper composition and phase details remain separate below.

2primary papers
5material records
12linked samples
16linked measurements
128linked results
2023–2024publication span

Read this group with context

  • Several formulas or formula descriptions are reported
  • Pristine, composite, derived or model contexts are mixed

Evidence coverage

Paper counts are material-linked through samples and measurements; technique groups are not value rankings.

Publication timeline

Distinct primary papers in this browse group by publication year.

Primary papers

Filter the material-linked paper set while keeping every result in its original dossier.

2 papers

Primary study2023

Microwave discharge for rapid introduction of bimetallic-synergistic configuration to conductive catecholate toward long-term supercapacitor

Jiang H., Xian J., Hu R. et al. · Chemical Engineering Journal · 2023

Reported here: Bimetallic Zn,Ni-CAT conductive catecholate MOF · Symmetric all-solid-state supercapacitor using Zn,Ni-CAT electrodes

Open dossier →

Per-paper identity records

Raw names, formulas and structural assignments remain separate; no consensus value is inferred.

Show 5 material identity records
Paper and reported nameFormula and componentsStructure contextSource
Zn1Ni3-HHTP2024 · Metal-organic frameworks with fine-tuned interlayer spacing for microwave absorptionZn/Ni-HHTP, Zn:Ni feed ratio 1:3mixed Zn2+/Ni2+ centres · HHTP2D · PristineBimetallic HHTP cMOF analogue used to demonstrate generality of interlayer tuning.22 · Fig. S15 caption · Fig. S15
Zn2Ni2-HHTP2024 · Metal-organic frameworks with fine-tuned interlayer spacing for microwave absorptionZn/Ni-HHTP, Zn:Ni feed ratio 1:1mixed Zn2+/Ni2+ centres · HHTP2D · PristineBimetallic HHTP cMOF analogue used to demonstrate generality of interlayer tuning.22 · Fig. S15 caption · Fig. S15
Zn3Ni1-HHTP2024 · Metal-organic frameworks with fine-tuned interlayer spacing for microwave absorptionZn/Ni-HHTP, Zn:Ni feed ratio 3:1mixed Zn2+/Ni2+ centres · HHTP2D · PristineBimetallic HHTP cMOF analogue used to demonstrate generality of interlayer tuning.22 · Fig. S15 caption · Fig. S15
Bimetallic Zn,Ni-CAT conductive catecholate MOF2023 · Microwave discharge for rapid introduction of bimetallic-synergistic configuration to conductive catecholate toward long-term supercapacitorZn,Ni-CAT; Zn-doped/mixed-metal nickel catecholate frameworkNi and Zn metal nodes; partial Ni ions substituted by Zn ions, with Zn reported as Zn2+. · HHTP-derived catecholate linker.2D · PristineZn introduction preserves the Ni-CAT crystal structure while shifting the (100) diffraction peak to lower angle and increasing (100) lattice spacing to 1.85 nm.4 · 3.1. Synthesis and characterization · Figure 2
Symmetric all-solid-state supercapacitor using Zn,Ni-CAT electrodes2023 · Microwave discharge for rapid introduction of bimetallic-synergistic configuration to conductive catecholate toward long-term supercapacitorZn,Ni-CAT electrode / PVA-KCl gel electrolyte / Zn,Ni-CAT electrodeNi and Zn nodes in the Zn,Ni-CAT electrode material. · HHTP-derived catecholate linker in Zn,Ni-CAT.unknown · CompositeApplication device assembled from Zn,Ni-CAT electrodes and PVA/KCl gel electrolyte.8 · 3.4. Energy storage performance of Zn,Ni-CAT · Figure 7a