Reported materialIdentity or context cautions

Zr(dcphOH-NDI)

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.

3primary papers
3material records
5linked samples
19linked measurements
189linked results
2018–2023publication span

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  • Several formulas or formula descriptions are reported

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Primary papers

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3 papers

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Paper and reported nameFormula and componentsStructure contextSource
Zr(dcphOH-NDI)2023 · Experimental manifestation of redox-conductivity in metal-organic frameworks and its implication for semiconductor/insulator switchingZr(dcphOH-NDI); empirical formula not reported in this articleZr secondary building units · dcphOH-NDI linker with redox-active naphthalene diimide core3D · PristineUiO-type/Zr MOF thin film reconstructed from prior structure; two interpenetrated frameworks with 12-c fcu net.6 · Generality of the redox conductivity with other MOFs · Fig. 4a-c
Zr(dcphOH-NDI)2022 · Microscopic Insights into Cation-Coupled Electron Hopping Transport in a Metal-Organic FrameworkC672N48O272Zr24 (3DED empirical formula)hexanuclear zirconium Zr6O4(OH)4 secondary building units · redox-active naphthalene diimide dcphOH-NDI linkers3D · PristinePorous interpenetrated Zr-organic framework (PIZOF), two interpenetrated frameworks with a 12-connected fcu net; maximum pore diameter about 11 A.5912 · Materials/Methods · Figure 2
Zr(dcphOH-NDI)2018 · Development of a UiO-Type Thin Film Electrocatalysis Platform with Redox-Active LinkersZr(dcphOH-NDI); exact empirical formula not reportedZr6O4(OH)4 UiO/PIZOF-type secondary building units with 12-fold connectivity. · dcphOH-NDI, a redox-active naphthalene diimide dicarboxylate linker bearing hydroxyl groups.3D · PristineUiO/PIZOF connectivity with Zr6O4(OH)4 nodes and 2-fold interpenetration, assigned by PXRD comparison to simulated Zr-L6 pattern.main p.2 · Results and Discussion · Figure 1, Figure S1 reference