Primary studyCore evidenceTransport Physics

A highly crystalline anthracene-based MOF-74 series featuring electrical conductivity and luminescence

Scheurle P.I., Mahringer A., Jakowetz A.C. et al. · Nanoscale · 2019 · 20949-20955

10materials
20samples
10synthesis routes
34measurements
79results
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: Medium

The series combines defined porosity, luminescence and electrical conductivity in a fixed MOF matrix, suggesting optoelectronic, sensing and charge-storage relevance.

Caveat: Application relevance is prospective; no device/application performance was measured.

20954 · Conclusions · Linked to 3 structured results

Phase AssignmentSupport assessment: High

ANMOF-74(Zn/Mg/Ni/Co/Mn) crystallise as trigonal R3 MOF-74 topology frameworks with hexagonal one-dimensional channels.

Caveat: Based on Rietveld-refined PXRD against simulated model structures, not single-crystal structures.

20950-20951 · Results and discussion · Fig. 2 · Linked to 5 structured results

Structure Property LinkSupport assessment: High

All ANMOF-74 materials are microporous and have BET surface areas above 1000 m2 g-1.

Caveat: Porosity values are from activated powders, not conductivity pellets.

20951-20952 · Results and discussion · Fig. 3 · Linked to 5 structured results

Transport MechanismSupport assessment: High

The anthracene core in the ANMOF-74 backbone is attributed to enhanced electrical conductivity versus electron-poor 2,5-dihydroxyterephthalate MOF-74 controls.

Caveat: Mechanism is an author attribution; conductivity values are direct pellet measurements but microscopic transport pathway is inferred.

20951-20953 · Results and discussion · Table 1 · Linked to 5 structured results

Transport MechanismSupport assessment: Medium

Measured conductivities remain modest; authors postulate charge transport occurs mostly through metal-oxo chains because adjacent anthracene units are separated by large stacking distances.

Caveat: Postulated transport mechanism rather than directly measured pathway.

20952 · Results and discussion · Fig. 1B; Table 1 · Linked to 2 structured results

Material identities

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

MaterialCompositionStructure contextSource
ANMOF-74(Co)Co18C252H126O63 · DMF (elemental-analysis formula, vacuum treated)Co2+ in helical metal-oxo chains · 4,4'-(anthracene-9,10-diyl)bis(2-hydroxybenzoic acid), ABHB3D · PristineAnthracene-based MOF-74 topology; trigonal R3 (146); one-dimensional hexagonal channels with about 2 nm apertures.20949-20950 · Abstract; Results and discussion · Fig. 1
ANMOF-74(Mg)Mg18C252H126O63 · DMF (elemental-analysis formula, vacuum treated)Mg2+ in helical metal-oxo chains · 4,4'-(anthracene-9,10-diyl)bis(2-hydroxybenzoic acid), ABHB3D · PristineAnthracene-based MOF-74 topology; trigonal R3 (146); one-dimensional hexagonal channels with about 2 nm apertures.20949-20950 · Abstract; Results and discussion · Fig. 1
ANMOF-74(Mn)Mn18C252H126O63 · DMF (elemental-analysis formula, vacuum treated)Mn2+ in helical metal-oxo chains · 4,4'-(anthracene-9,10-diyl)bis(2-hydroxybenzoic acid), ABHB3D · PristineAnthracene-based MOF-74 topology; trigonal R3 (146); one-dimensional hexagonal channels with about 2 nm apertures.20949-20950 · Abstract; Results and discussion · Fig. 1
ANMOF-74(Ni)Ni18C252H126O63 · DMF (elemental-analysis formula, vacuum treated)Ni2+ in helical metal-oxo chains · 4,4'-(anthracene-9,10-diyl)bis(2-hydroxybenzoic acid), ABHB3D · PristineAnthracene-based MOF-74 topology; trigonal R3 (146); one-dimensional hexagonal channels with about 2 nm apertures.20949-20950 · Abstract; Results and discussion · Fig. 1
ANMOF-74(Zn)Zn18C252H126O63 · DMF (elemental-analysis formula, vacuum treated)Zn2+ in helical metal-oxo chains · 4,4'-(anthracene-9,10-diyl)bis(2-hydroxybenzoic acid), ABHB3D · PristineAnthracene-based MOF-74 topology; trigonal R3 (146); one-dimensional hexagonal channels with about 2 nm apertures.20949-20950 · Abstract; Results and discussion · Fig. 1
MOF-74(Co)Browse family: Co₂(DOBDC) / Co–MOF-74 / CPO-27-Conot explicitly reportedCo2+ in regular MOF-74 metal-oxo chains · 2,5-dihydroxy-1,4-benzenedicarboxylic acid / 2,5-dihydroxyterephthalic acid3D · PristineOriginal MOF-74 isostructure prepared as pristine control for conductivity comparison.20949-20951 · Abstract; Results and discussion · Table 1
MOF-74(Mg)Browse family: Mg₂(DOBDC) / Mg–MOF-74 / CPO-27-Mgnot explicitly reportedMg2+ in regular MOF-74 metal-oxo chains · 2,5-dihydroxy-1,4-benzenedicarboxylic acid / 2,5-dihydroxyterephthalic acid3D · PristineOriginal MOF-74 isostructure prepared as pristine control for conductivity comparison.20949-20951 · Abstract; Results and discussion · Table 1
MOF-74(Mn)Browse family: Mn₂(DOBDC) / Mn–MOF-74 / CPO-27-Mnnot explicitly reportedMn2+ in regular MOF-74 metal-oxo chains · 2,5-dihydroxy-1,4-benzenedicarboxylic acid / 2,5-dihydroxyterephthalic acid3D · PristineOriginal MOF-74 isostructure prepared as pristine control for conductivity comparison.20949-20951 · Abstract; Results and discussion · Table 1
MOF-74(Ni)Browse family: Ni₂(DOBDC) / Ni–MOF-74 / CPO-27-Ninot explicitly reportedNi2+ in regular MOF-74 metal-oxo chains · 2,5-dihydroxy-1,4-benzenedicarboxylic acid / 2,5-dihydroxyterephthalic acid3D · PristineOriginal MOF-74 isostructure prepared as pristine control for conductivity comparison.20949-20951 · Abstract; Results and discussion · Table 1
MOF-74(Zn)Browse family: Zn₂(DOBDC) / Zn–MOF-74 / CPO-27-Znnot explicitly reportedZn2+ in regular MOF-74 metal-oxo chains · 2,5-dihydroxy-1,4-benzenedicarboxylic acid / 2,5-dihydroxyterephthalic acid3D · PristineOriginal MOF-74 isostructure prepared as pristine control for conductivity comparison.20949-20951 · Abstract; Results and discussion · Table 1

Sample register

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

Show 20 sample records
SampleForm and roleProcessing and geometrySource
ANMOF-74(Co) pelletresearch_0165__mat__an_mof74_coPellet · Target Sample · Pristine Frameworkpellet fabricated from 100 mg bulk material with 1 cm diameter for electrical conductivity measurementS4 · Preparation of ANMOF-74 and MOF-74 pellets
ANMOF-74(Co) bulk powderresearch_0165__mat__an_mof74_coPowder · Target Sample · Pristine Frameworkwashed, activated at 120 deg C, crystalline bulk powder; used for PXRD, porosity, microscopy, spectroscopy and supporting analysesS10-S11 · Anthracene-based MOF-74 (ANMOF-74) synthesis
ANMOF-74(Mg) pelletresearch_0165__mat__an_mof74_mgPellet · Target Sample · Pristine Frameworkpellet fabricated from 100 mg bulk material with 1 cm diameter for electrical conductivity measurementS4 · Preparation of ANMOF-74 and MOF-74 pellets
ANMOF-74(Mg) bulk powderresearch_0165__mat__an_mof74_mgPowder · Target Sample · Pristine Frameworkwashed, activated at 120 deg C, crystalline bulk powder; used for PXRD, porosity, microscopy, spectroscopy and supporting analysesS10-S11 · Anthracene-based MOF-74 (ANMOF-74) synthesis
ANMOF-74(Mn) pelletresearch_0165__mat__an_mof74_mnPellet · Target Sample · Pristine Frameworkpellet fabricated from 100 mg bulk material with 1 cm diameter for electrical conductivity measurementS4 · Preparation of ANMOF-74 and MOF-74 pellets
ANMOF-74(Mn) bulk powderresearch_0165__mat__an_mof74_mnPowder · Target Sample · Pristine Frameworkwashed, activated at 120 deg C, crystalline bulk powder; used for PXRD, porosity, microscopy, spectroscopy and supporting analysesS10-S11 · Anthracene-based MOF-74 (ANMOF-74) synthesis
ANMOF-74(Ni) pelletresearch_0165__mat__an_mof74_niPellet · Target Sample · Pristine Frameworkpellet fabricated from 100 mg bulk material with 1 cm diameter for electrical conductivity measurementS4 · Preparation of ANMOF-74 and MOF-74 pellets
ANMOF-74(Ni) bulk powderresearch_0165__mat__an_mof74_niPowder · Target Sample · Pristine Frameworkwashed, activated at 120 deg C, crystalline bulk powder; used for PXRD, porosity, microscopy, spectroscopy and supporting analysesS10-S11 · Anthracene-based MOF-74 (ANMOF-74) synthesis
ANMOF-74(Zn) pelletresearch_0165__mat__an_mof74_znPellet · Target Sample · Pristine Frameworkpellet fabricated from 100 mg bulk material with 1 cm diameter for electrical conductivity measurementS4 · Preparation of ANMOF-74 and MOF-74 pellets
ANMOF-74(Zn) bulk powderresearch_0165__mat__an_mof74_znPowder · Target Sample · Pristine Frameworkwashed, activated at 120 deg C, crystalline bulk powder; used for PXRD, porosity, microscopy, spectroscopy and supporting analysesS10-S11 · Anthracene-based MOF-74 (ANMOF-74) synthesis
MOF-74(Co) control pelletresearch_0165__mat__mof74_coPellet · Pristine Control · Pristine Frameworkactivated/vacuum dried regular MOF-74 powder compressed into pellet for conductivity comparison20951 · Results and discussion · Table 1
MOF-74(Co) control powderresearch_0165__mat__mof74_coPowder · Pristine Control · Pristine Frameworkwashed and dried under reduced pressure; vacuum-dried/activated before pellet conductivity testing according to main textS11-S13 · MOF-74 synthesis
MOF-74(Mg) control pelletresearch_0165__mat__mof74_mgPellet · Pristine Control · Pristine Frameworkactivated/vacuum dried regular MOF-74 powder compressed into pellet for conductivity comparison20951 · Results and discussion · Table 1
MOF-74(Mg) control powderresearch_0165__mat__mof74_mgPowder · Pristine Control · Pristine Frameworkwashed and dried under reduced pressure; vacuum-dried/activated before pellet conductivity testing according to main textS11-S13 · MOF-74 synthesis
MOF-74(Mn) control pelletresearch_0165__mat__mof74_mnPellet · Pristine Control · Pristine Frameworkactivated/vacuum dried regular MOF-74 powder compressed into pellet for conductivity comparison20951 · Results and discussion · Table 1
MOF-74(Mn) control powderresearch_0165__mat__mof74_mnPowder · Pristine Control · Pristine Frameworkwashed and dried under reduced pressure; vacuum-dried/activated before pellet conductivity testing according to main textS11-S13 · MOF-74 synthesis
MOF-74(Ni) control pelletresearch_0165__mat__mof74_niPellet · Pristine Control · Pristine Frameworkactivated/vacuum dried regular MOF-74 powder compressed into pellet for conductivity comparison20951 · Results and discussion · Table 1
MOF-74(Ni) control powderresearch_0165__mat__mof74_niPowder · Pristine Control · Pristine Frameworkwashed and dried under reduced pressure; vacuum-dried/activated before pellet conductivity testing according to main textS11-S13 · MOF-74 synthesis
MOF-74(Zn) control pelletresearch_0165__mat__mof74_znPellet · Pristine Control · Pristine Frameworkactivated/vacuum dried regular MOF-74 powder compressed into pellet for conductivity comparison20951 · Results and discussion · Table 1
MOF-74(Zn) control powderresearch_0165__mat__mof74_znPowder · Pristine Control · Pristine Frameworkwashed and dried under reduced pressure; vacuum-dried/activated before pellet conductivity testing according to main textS11-S13 · MOF-74 synthesis