Journalartikel

Mesoporous ZnFe2O4 Photoanodes with Template-Tailored Mesopores and Temperature-Dependent Photocurrents


AutorenlisteKirchberg, Kristin; Wang, Songcan; Wang, Lianzhou; Marschall, Roland

Jahr der Veröffentlichung2018

Seiten2313-2320

ZeitschriftChemPhysChem

Bandnummer19

Heftnummer18

ISSN1439-4235

eISSN1439-7641

DOI Linkhttps://doi.org/10.1002/cphc.201800506

VerlagWiley


Abstract
Mesoporous ZnFe2O4 photoanodes have been prepared via dip-coating utilizing the evaporation-induced self-assembly of two different block-copolymer templates to investigate the influence of pore geometry on the photoelectrochemcial performance of those earth-abundant photoelectrodes. The use of commercial block copolymers, triblock copolymer Pluronic((R)) F127 and the diblock copolymer PIB3000 as templates, leads to different pore morphologies under identical preparation conditions due to different polymer stabilities. Interestingly, pore morphology in mesoporous ZnFe2O4 turned out to be less important for the photoelectrochemical performance. Contrary, sufficiently developed crystalline domains gained through optimized temperature treatment resulted in maximum photoelectrochemical performance among the investigated samples. This disproves the necessity of expensive, tailor-made polymer soft templates to synthesize high-performing mesoporous ZnFe2O4 photoanodes.



Zitierstile

Harvard-ZitierstilKirchberg, K., Wang, S., Wang, L. and Marschall, R. (2018) Mesoporous ZnFe2O4 Photoanodes with Template-Tailored Mesopores and Temperature-Dependent Photocurrents, ChemPhysChem, 19(18), pp. 2313-2320. https://doi.org/10.1002/cphc.201800506

APA-ZitierstilKirchberg, K., Wang, S., Wang, L., & Marschall, R. (2018). Mesoporous ZnFe2O4 Photoanodes with Template-Tailored Mesopores and Temperature-Dependent Photocurrents. ChemPhysChem. 19(18), 2313-2320. https://doi.org/10.1002/cphc.201800506



Schlagwörter


earth-abundantFACILEMFE2O4 MPHOTOCATALYTIC ACTIVITYPHOTOEMISSIONspinel phasesWATER OXIDATIONZINC FERRITE NANOPARTICLES

Zuletzt aktualisiert 2025-02-04 um 01:14