Matches in SemOpenAlex for { <https://semopenalex.org/work/W2024263181> ?p ?o ?g. }
- W2024263181 endingPage "1012" @default.
- W2024263181 startingPage "1007" @default.
- W2024263181 abstract "Optical spacer layers based on titaniumalkoxide precursor solutions were prepared by spin-coating on top of bulk heterojunction layers based on poly-3-hexylthiophene (P3HT) and phenyl-C61-butyric acid methylester (PCBM). Models and experiment have shown that the performance of polymer solar cells can improve upon application of an optical spacer by shifting the maximum of the electrical field vector of the incident light into the active layer. This avoids the so called “dead zone” close to the reflective electrode. We demonstrate a simple linear model that can be used to predict the intensity variations of the electrical field vector of the incident light through a multilayer structure. Central to our study is the thickness of the optical layer and we find that it is critical to control the optical spacer thickness on the actual active layer employed. X-ray reflectometry allows for the simultaneous determination of the active layer thickness and of the optical spacer layer." @default.
- W2024263181 created "2016-06-24" @default.
- W2024263181 creator A5023313748 @default.
- W2024263181 creator A5041710712 @default.
- W2024263181 creator A5064138666 @default.
- W2024263181 creator A5088635289 @default.
- W2024263181 date "2009-04-01" @default.
- W2024263181 modified "2023-10-16" @default.
- W2024263181 title "Investigation of optical spacer layers from solution based precursors for polymer solar cells using X-ray reflectometry" @default.
- W2024263181 cites W1626507888 @default.
- W2024263181 cites W17202455 @default.
- W2024263181 cites W1965882189 @default.
- W2024263181 cites W1966398746 @default.
- W2024263181 cites W1969732071 @default.
- W2024263181 cites W1982161534 @default.
- W2024263181 cites W1984482382 @default.
- W2024263181 cites W1992699836 @default.
- W2024263181 cites W1996291528 @default.
- W2024263181 cites W2002750088 @default.
- W2024263181 cites W2005126509 @default.
- W2024263181 cites W2006359365 @default.
- W2024263181 cites W2007499236 @default.
- W2024263181 cites W2011852833 @default.
- W2024263181 cites W2014355952 @default.
- W2024263181 cites W2025368503 @default.
- W2024263181 cites W2025919002 @default.
- W2024263181 cites W2038716674 @default.
- W2024263181 cites W2057020697 @default.
- W2024263181 cites W2059857501 @default.
- W2024263181 cites W2062095234 @default.
- W2024263181 cites W2065147109 @default.
- W2024263181 cites W2070479745 @default.
- W2024263181 cites W2071784878 @default.
- W2024263181 cites W2074627768 @default.
- W2024263181 cites W2078515726 @default.
- W2024263181 cites W2086529087 @default.
- W2024263181 cites W2091044812 @default.
- W2024263181 cites W2092623378 @default.
- W2024263181 cites W2098508266 @default.
- W2024263181 cites W2105097003 @default.
- W2024263181 cites W2119918750 @default.
- W2024263181 cites W2123711607 @default.
- W2024263181 cites W2131873809 @default.
- W2024263181 cites W2159067445 @default.
- W2024263181 cites W2169498876 @default.
- W2024263181 cites W4236858246 @default.
- W2024263181 doi "https://doi.org/10.1016/j.optmat.2008.11.014" @default.
- W2024263181 hasPublicationYear "2009" @default.
- W2024263181 type Work @default.
- W2024263181 sameAs 2024263181 @default.
- W2024263181 citedByCount "26" @default.
- W2024263181 countsByYear W20242631812012 @default.
- W2024263181 countsByYear W20242631812013 @default.
- W2024263181 countsByYear W20242631812014 @default.
- W2024263181 countsByYear W20242631812016 @default.
- W2024263181 countsByYear W20242631812017 @default.
- W2024263181 countsByYear W20242631812019 @default.
- W2024263181 countsByYear W20242631812020 @default.
- W2024263181 crossrefType "journal-article" @default.
- W2024263181 hasAuthorship W2024263181A5023313748 @default.
- W2024263181 hasAuthorship W2024263181A5041710712 @default.
- W2024263181 hasAuthorship W2024263181A5064138666 @default.
- W2024263181 hasAuthorship W2024263181A5088635289 @default.
- W2024263181 hasConcept C103824480 @default.
- W2024263181 hasConcept C115196108 @default.
- W2024263181 hasConcept C120665830 @default.
- W2024263181 hasConcept C121332964 @default.
- W2024263181 hasConcept C147789679 @default.
- W2024263181 hasConcept C159985019 @default.
- W2024263181 hasConcept C17525397 @default.
- W2024263181 hasConcept C182610534 @default.
- W2024263181 hasConcept C185592680 @default.
- W2024263181 hasConcept C192562407 @default.
- W2024263181 hasConcept C2776026197 @default.
- W2024263181 hasConcept C2778925768 @default.
- W2024263181 hasConcept C2779227376 @default.
- W2024263181 hasConcept C2780824857 @default.
- W2024263181 hasConcept C2781448156 @default.
- W2024263181 hasConcept C3020368824 @default.
- W2024263181 hasConcept C31972630 @default.
- W2024263181 hasConcept C41008148 @default.
- W2024263181 hasConcept C49040817 @default.
- W2024263181 hasConcept C521977710 @default.
- W2024263181 hasConcept C60799052 @default.
- W2024263181 hasConcept C62520636 @default.
- W2024263181 hasConcept C66187686 @default.
- W2024263181 hasConcept C79794668 @default.
- W2024263181 hasConcept C87359718 @default.
- W2024263181 hasConceptScore W2024263181C103824480 @default.
- W2024263181 hasConceptScore W2024263181C115196108 @default.
- W2024263181 hasConceptScore W2024263181C120665830 @default.
- W2024263181 hasConceptScore W2024263181C121332964 @default.
- W2024263181 hasConceptScore W2024263181C147789679 @default.
- W2024263181 hasConceptScore W2024263181C159985019 @default.
- W2024263181 hasConceptScore W2024263181C17525397 @default.
- W2024263181 hasConceptScore W2024263181C182610534 @default.
- W2024263181 hasConceptScore W2024263181C185592680 @default.
- W2024263181 hasConceptScore W2024263181C192562407 @default.