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Semiconductor Behavior of a Metal‐Organic Framework (MOF)

Chemistry - A European Journal · 2007 · Vol. 13(18) · pp. 5106–5112
Mercedes ÁlvaroEsther CarbonellBelén FerrerFrancesc X. Llabrés i XamenaHermenegildo Garcı́a

Abstract

Upon light excitation MOF-5 behaves as a semiconductor and undergoes charge separation (electrons and holes) decaying in the microsecond time scale. The actual conduction band energy value was estimated to be 0.2 V versus NHE with a band gap of 3.4 eV. Photoinduced electron transfer processes to viologen generates the corresponding viologen radical cation, while holes of MOF-5 oxidizes N,N,N',N'-tetramethyl-p-phenylenediamine. One application investigated for MOF-5 as a semiconductor has been the shape-selective photocatalyzed degradation of phenol in aqueous solutions.

Metal-Organic Frameworks: Synthesis and ApplicationsAdvanced Photocatalysis TechniquesMachine Learning in Materials ScienceMicrosecondViologenSemiconductorPhotochemistryBand gapPhotocatalysisElectron transferElectronMetal-organic frameworkAqueous solution
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