Sammelbandbeitrag

Heterojunctions in Composite Photocatalysts


AutorenlisteMarschall, Roland

Erschienen inSOLAR ENERGY FOR FUELS

HerausgeberlisteTuysuz, H; Chan, CK

Jahr der Veröffentlichung2016

Seiten143-172

Bandnummer371

ISSN0340-1022

ISBN978-3-319-23098-6

eISSN1436-5049

eISBN978-3-319-23099-3

DOI Linkhttps://doi.org/10.1007/128_2015_636

SerientitelTopics in Current Chemistry-Series


Abstract
Combining different light-absorbing materials for the formation of semiconductor heterojunctions is a very effective strategy for preparing highly active photocatalyst and photoelectrochemical systems. Moreover, the combination of solid state semiconductors with polymers or molecular absorbers expands the possible combinations of materials to alter light absorption and optimize charge carrier separation. In this chapter, different strategies to prepare such composites are presented, highlighting the necessity of intimate interfacial contact for optimum charge carrier transfer. Moreover, the most recent developments and improvements in the formation of heterojunctions and composite photocatalyst systems based on semiconductor solids are presented.



Zitierstile

Harvard-ZitierstilMarschall, R. (2016) Heterojunctions in Composite Photocatalysts, in Tuysuz, H. and Chan, C. (eds.) SOLAR ENERGY FOR FUELS. SPRINGER INTERNATIONAL PUBLISHING AG, pp. 143-172. https://doi.org/10.1007/128_2015_636

APA-ZitierstilMarschall, R. (2016). Heterojunctions in Composite Photocatalysts. In Tuysuz, H., & Chan, C. (Eds.), SOLAR ENERGY FOR FUELS (pp. 143-172). SPRINGER INTERNATIONAL PUBLISHING AG. https://doi.org/10.1007/128_2015_636



Schlagwörter


CARBON NITRIDECharge separationCHARGE SEPARATIONFLEXIBLE PHOTOANODEheterojunctionsHIGHLY EFFICIENT PHOTOCATALYSTHYBRID PHOTOCATALYSTIN-SITU SYNTHESISPhotocatalysisREDUCED GRAPHENE OXIDEVISIBLE-LIGHTZ-SCHEME

Zuletzt aktualisiert 2025-02-04 um 01:56