Primary studyCore evidenceTheory Transport

Successful In Situ Growth of Conductive MOFs on 2D Cobalt-Based Compounds and Their Electrochemical Performance

Liu L., Zhang Y., Song Y. et al. · Inorganic Chemistry · 2024 · 10324-10334

18materials
24samples
22synthesis routes
37measurements
148results
5claims and caveats

Evidence map

Open a family to keep every result attached to its sample, method and conditions.

Author interpretations and caveats

Paraphrased for this database from the authors’ stated interpretations — never quoted verbatim — and kept separate from reported measurements.

Application RelevanceSupport assessment: High

The Ni-HHTP@Co(OH)2//AC aqueous asymmetric device combines high energy density with 97.6% capacitance retention after 5000 cycles.

Caveat: Device comparison is against reported literature and a Ni-HHTP@CoP//AC internal comparator, not all possible device architectures.

article p. 10331-10332 · Results and Discussion · Figure 6g-h · Linked to 2 structured results

Application RelevanceSupport assessment: High

Ni-HHTP@Co(OH)2 is the best-performing electrode in the extracted series, reaching 435.64 F g-1 at 1 A g-1 and 390 F g-1 at 5 A g-1.

Caveat: Performance is supercapacitor-specific, not a direct electrical conductivity measurement.

article p. 10332 · Conclusions · Linked to 4 structured results

Composite RoleSupport assessment: Medium

M-HHTP@Co3O4 composites show the weakest capacitance among the three substrate families, attributed to uneven Co3O4 morphology and agglomeration from micromagnetism.

Caveat: Agglomeration explanation is author interpretation based on SEM/morphology.

article p. 10331 · Results and Discussion · Figure 5g; Table S4 · Linked to 3 structured results

Phase AssignmentSupport assessment: High

M-HHTP conductive MOFs were successfully grown in situ on Co(OH)2, CoP, and Co3O4 nanosheets, forming the reported composite series.

Caveat: Some phase assignments are supported by composite PXRD/FTIR/XPS rather than single-crystal structures.

article p. 10326-10329 · Results and Discussion · Figures 1-4 · Linked to 3 structured results

Transport MechanismSupport assessment: Medium

The authors attribute improved energy-storage behaviour to coupling between Ni-HHTP and cobalt-based substrates, forming effective charge-transfer/diffusion channels along Ni-HHTP 1D channels.

Caveat: Mechanistic interpretation is inferred from morphology, CV kinetics and EIS; no direct electronic conductivity value is reported.

article p. 10329-10331 · Results and Discussion · Figures 5-6 · Linked to 4 structured results

Material identities

Names and aliases are kept exactly within the paper’s own identity model.

MaterialCompositionStructure contextSource
Activated carbon YEC-8ACcarbonunknown · UnknownCommercial activated carbon negative electrode material.SI p. 12 · Asymmetric supercapacitor assembly and measurements
Co3O4Co3O4cobalt oxide2D · UnknownCalcined nanosheets with morphology similar to Co(OH)2 but fractured/agglomerating surface.article p. 10326 · Results and Discussion · Figure S1c
Co-HHTPBrowse family: Co₃(HHTP)₂ / Co–HHTPM-HHTP, M = Co; HHTP ligandCo2+ nodes · HHTP = 2,3,6,7,10,11-hexahydroxytriphenylene2D · PristineConductive HHTP framework; SEM showed random nanorods.article p. 10324 · Abstract
Co-HHTP@Co3O4Browse family: Co₃(HHTP)₂ / Co–HHTPCo-HHTP@Co3O4 compositeCo2+ HHTP framework grown on Co3O4 · HHTP = 2,3,6,7,10,11-hexahydroxytriphenylene2D · CompositeIn situ grown conductive M-HHTP nanoarrays/nanorods on a 2D cobalt-based compound substrate.article p. 10326 · Results and Discussion · Figure 1
Co-HHTP@Co(OH)2Browse family: Co₃(HHTP)₂ / Co–HHTPCo-HHTP@Co(OH)2 compositeCo2+ HHTP framework grown on Co(OH)2 · HHTP = 2,3,6,7,10,11-hexahydroxytriphenylene2D · CompositeIn situ grown conductive M-HHTP nanoarrays/nanorods on a 2D cobalt-based compound substrate.article p. 10326 · Results and Discussion · Figure 1
Co-HHTP@CoPBrowse family: Co₃(HHTP)₂ / Co–HHTPCo-HHTP@CoP compositeCo2+ HHTP framework grown on CoP · HHTP = 2,3,6,7,10,11-hexahydroxytriphenylene2D · CompositeIn situ grown conductive M-HHTP nanoarrays/nanorods on a 2D cobalt-based compound substrate.article p. 10326 · Results and Discussion · Figure 1
Co(OH)2Co(OH)2Co hydroxide2D · UnknownHydrothermally prepared nanosheets, diameter 80-200 nm.article p. 10326 · Results and Discussion · Figure S1a
CoPCoPcobalt phosphide2D · UnknownFolded CoP nanosheets obtained by phosphorization and sonication of Co(OH)2.article p. 10326 · Results and Discussion · Figure S1b
Ni-HHTPBrowse family: Ni₃(HHTP)₂ / Ni–HHTPM-HHTP, M = Ni; HHTP ligandNi2+ nodes · HHTP = 2,3,6,7,10,11-hexahydroxytriphenylene2D · PristineConductive HHTP framework; Ni-HHTP shows nanorod clusters and 1D channels along [001].article p. 10324 · Abstract
Ni-HHTP@Co3O4Browse family: Ni₃(HHTP)₂ / Ni–HHTPNi-HHTP@Co3O4 compositeNi2+ HHTP framework grown on Co3O4 · HHTP = 2,3,6,7,10,11-hexahydroxytriphenylene2D · CompositeIn situ grown conductive M-HHTP nanoarrays/nanorods on a 2D cobalt-based compound substrate.article p. 10326 · Results and Discussion · Figure 1
Ni-HHTP@Co(OH)2Browse family: Ni₃(HHTP)₂ / Ni–HHTPNi-HHTP@Co(OH)2 compositeNi2+ HHTP framework grown on Co(OH)2 · HHTP = 2,3,6,7,10,11-hexahydroxytriphenylene2D · CompositeIn situ grown conductive M-HHTP nanoarrays/nanorods on a 2D cobalt-based compound substrate.article p. 10326 · Results and Discussion · Figure 1
Ni-HHTP@Co(OH)2//AC asymmetric supercapacitorBrowse family: Ni₃(HHTP)₂ / Ni–HHTPNi-HHTP@Co(OH)2 positive electrode // activated carbon negative electrodeNi-HHTP@Co(OH)2 and AC electrodes · HHTP = 2,3,6,7,10,11-hexahydroxytriphenyleneunknown · CompositeAqueous asymmetric supercapacitor assembled in 3 M KOH.article p. 10331 · Results and Discussion · Figure 6d-h
Ni-HHTP@CoPBrowse family: Ni₃(HHTP)₂ / Ni–HHTPNi-HHTP@CoP compositeNi2+ HHTP framework grown on CoP · HHTP = 2,3,6,7,10,11-hexahydroxytriphenylene2D · CompositeIn situ grown conductive M-HHTP nanoarrays/nanorods on a 2D cobalt-based compound substrate.article p. 10326 · Results and Discussion · Figure 1
Ni-HHTP@CoP//AC asymmetric supercapacitorBrowse family: Ni₃(HHTP)₂ / Ni–HHTPNi-HHTP@CoP positive electrode // activated carbon negative electrodeNi-HHTP@CoP and AC electrodes · HHTP = 2,3,6,7,10,11-hexahydroxytriphenyleneunknown · CompositeAqueous asymmetric supercapacitor used for cycling comparison.article p. 10332 · Results and Discussion · Figure S25
NiCo-HHTPBrowse family: Ni/Co–HHTP familyM-HHTP, M = NiCo (Ni2+/Co2+ = 1:1); HHTP ligandmixed Ni2+/Co2+ nodes · HHTP = 2,3,6,7,10,11-hexahydroxytriphenylene2D · PristineMixed-metal conductive HHTP framework; shorter agglomerated nanorods.article p. 10326 · Results and Discussion · Figure S1
NiCo-HHTP@Co3O4Browse family: Ni/Co–HHTP familyNiCo-HHTP@Co3O4 compositeNi2+/Co2+ HHTP framework grown on Co3O4 · HHTP = 2,3,6,7,10,11-hexahydroxytriphenylene2D · CompositeIn situ grown conductive M-HHTP nanoarrays/nanorods on a 2D cobalt-based compound substrate.article p. 10326 · Results and Discussion · Figure 1
NiCo-HHTP@Co(OH)2Browse family: Ni/Co–HHTP familyNiCo-HHTP@Co(OH)2 compositeNi2+/Co2+ HHTP framework grown on Co(OH)2 · HHTP = 2,3,6,7,10,11-hexahydroxytriphenylene2D · CompositeIn situ grown conductive M-HHTP nanoarrays/nanorods on a 2D cobalt-based compound substrate.article p. 10326 · Results and Discussion · Figure 1
NiCo-HHTP@CoPBrowse family: Ni/Co–HHTP familyNiCo-HHTP@CoP compositeNi2+/Co2+ HHTP framework grown on CoP · HHTP = 2,3,6,7,10,11-hexahydroxytriphenylene2D · CompositeIn situ grown conductive M-HHTP nanoarrays/nanorods on a 2D cobalt-based compound substrate.article p. 10326 · Results and Discussion · Figure 1

Sample register

Sample form, processing state and composition status define the context for measurements.

Show 24 sample records
SampleForm and roleProcessing and geometrySource
Activated carbon AC YEC-8research_0688__mat__activated_carbonElectrode · Composite Component · Unknowncommercial AC mixed with acetylene black and PTFE on nickel foamnickel foamSI p. 12 · Asymmetric supercapacitor assembly and measurements
Co3O4research_0688__mat__co3o4Nanosheet · Pristine Control · Unknowncalcined nanosheets similar to Co(OH)2article p. 10326 · Results and Discussion · Figure S1a-c
Co-HHTPresearch_0688__mat__co_hhtpPowder · Pristine Control · Pristine Frameworkrandom nanorodsarticle p. 10326 · Results and Discussion · Figure S1d-f
Co-HHTP@Co3O4research_0688__mat__co_hhtp_co3o4Electrode · Composite Sample · Compositein situ M-HHTP growth on presynthesized cobalt compound; full reagent loadingCo3O4article p. 10326 · Results and Discussion · Figure 1
Co-HHTP@Co3O4-0.5research_0688__mat__co_hhtp_co3o4Electrode · Composite Sample · Compositeprepared with halved substrate/metal/linker masses relative to the full-loading routeCo3O4article p. 10327 · Results and Discussion · Figure S5
Co-HHTP@Co(OH)2research_0688__mat__co_hhtp_cooh2Electrode · Composite Sample · Compositein situ M-HHTP growth on presynthesized cobalt compound; full reagent loadingCo(OH)2article p. 10326 · Results and Discussion · Figure 1
Co-HHTP@Co(OH)2-0.5research_0688__mat__co_hhtp_cooh2Electrode · Composite Sample · Compositeprepared with halved substrate/metal/linker masses relative to the full-loading routeCo(OH)2article p. 10327 · Results and Discussion · Figure S5
Co-HHTP@CoPresearch_0688__mat__co_hhtp_copElectrode · Composite Sample · Compositein situ M-HHTP growth on presynthesized cobalt compound; full reagent loadingCoParticle p. 10326 · Results and Discussion · Figure 1
Co-HHTP@CoP-0.5research_0688__mat__co_hhtp_copElectrode · Composite Sample · Compositeprepared with halved substrate/metal/linker masses relative to the full-loading routeCoParticle p. 10327 · Results and Discussion · Figure S5
Co(OH)2research_0688__mat__cooh2Nanosheet · Pristine Control · Unknown2D nanosheets, 80-200 nmarticle p. 10326 · Results and Discussion · Figure S1a-c
CoPresearch_0688__mat__copNanosheet · Pristine Control · Unknownfolded nanosheets from phosphorized Co(OH)2article p. 10326 · Results and Discussion · Figure S1a-c
Ni-HHTPresearch_0688__mat__ni_hhtpPowder · Pristine Control · Pristine Frameworknanorod clustersarticle p. 10326 · Results and Discussion · Figure S1d-f
Ni-HHTP@Co3O4research_0688__mat__ni_hhtp_co3o4Electrode · Target Sample · Compositein situ M-HHTP growth on presynthesized cobalt compound; full reagent loadingCo3O4article p. 10326 · Results and Discussion · Figure 1
Ni-HHTP@Co3O4-0.5research_0688__mat__ni_hhtp_co3o4Electrode · Composite Sample · Compositeprepared with halved substrate/metal/linker masses relative to the full-loading routeCo3O4article p. 10327 · Results and Discussion · Figure S5
Ni-HHTP@Co(OH)2research_0688__mat__ni_hhtp_cooh2Electrode · Target Sample · Compositein situ M-HHTP growth on presynthesized cobalt compound; full reagent loadingCo(OH)2article p. 10326 · Results and Discussion · Figure 1
Ni-HHTP@Co(OH)2//ACresearch_0688__mat__ni_hhtp_cooh2_ac_deviceElectrode · Target Sample · Compositeaqueous asymmetric supercapacitor in 3 M KOHnickel foamarticle p. 10331 · Results and Discussion · Figure 6d-h
Ni-HHTP@Co(OH)2-0.5research_0688__mat__ni_hhtp_cooh2Electrode · Composite Sample · Compositeprepared with halved substrate/metal/linker masses relative to the full-loading routeCo(OH)2article p. 10327 · Results and Discussion · Figure S5
Ni-HHTP@CoPresearch_0688__mat__ni_hhtp_copElectrode · Target Sample · Compositein situ M-HHTP growth on presynthesized cobalt compound; full reagent loadingCoParticle p. 10326 · Results and Discussion · Figure 1
Ni-HHTP@CoP//ACresearch_0688__mat__ni_hhtp_cop_ac_deviceElectrode · Composite Sample · Compositeaqueous asymmetric supercapacitor in 3 M KOHnickel foamarticle p. 10332 · Results and Discussion · Figure S25
Ni-HHTP@CoP-0.5research_0688__mat__ni_hhtp_copElectrode · Composite Sample · Compositeprepared with halved substrate/metal/linker masses relative to the full-loading routeCoParticle p. 10327 · Results and Discussion · Figure S5
NiCo-HHTPresearch_0688__mat__nico_hhtpPowder · Pristine Control · Mixed Metalshort agglomerated mixed-metal nanorodsarticle p. 10326 · Results and Discussion · Figure S1d-f
NiCo-HHTP@Co3O4research_0688__mat__nico_hhtp_co3o4Electrode · Composite Sample · Compositein situ M-HHTP growth on presynthesized cobalt compound; full reagent loadingCo3O4article p. 10326 · Results and Discussion · Figure 1
NiCo-HHTP@Co(OH)2research_0688__mat__nico_hhtp_cooh2Electrode · Composite Sample · Compositein situ M-HHTP growth on presynthesized cobalt compound; full reagent loadingCo(OH)2article p. 10326 · Results and Discussion · Figure 1
NiCo-HHTP@CoPresearch_0688__mat__nico_hhtp_copElectrode · Composite Sample · Compositein situ M-HHTP growth on presynthesized cobalt compound; full reagent loadingCoParticle p. 10326 · Results and Discussion · Figure 1