Matches in SemOpenAlex for { <https://semopenalex.org/work/W2014707125> ?p ?o ?g. }
- W2014707125 endingPage "A411" @default.
- W2014707125 startingPage "A411" @default.
- W2014707125 abstract "This paper reports our latest results using colloidal CuInSe₂ nanocrystal inks to prepare photovoltaic (PV) devices. Thus far, devices with nanocrystal layers processed under ambient conditions with no post-deposition treatment have achieved power conversion efficiencies of up to 3.1%. Device efficiency is largely limited by charge carrier trapping in the nanocrystal layer, and the highest device efficiencies are obtained with very thin layers-less than 150 nm-absorbing only a fraction of the incident light. Devices with thicker nanocrystal layers had lower power conversion efficiency, despite the increased photon absorption, because the internal quantum efficiency of the devices decreased significantly. The thin, most efficient devices exhibited internal quantum efficiencies as high as 40%, across a wide spectrum. Mott-Schottky measurements revealed that the active region thickness in the devices is approximately 50 nm." @default.
- W2014707125 created "2016-06-24" @default.
- W2014707125 creator A5024096252 @default.
- W2014707125 creator A5030067057 @default.
- W2014707125 creator A5052717459 @default.
- W2014707125 creator A5055235163 @default.
- W2014707125 creator A5074382714 @default.
- W2014707125 date "2010-08-20" @default.
- W2014707125 modified "2023-10-14" @default.
- W2014707125 title "Thickness-limited performance of CuInSe_2 nanocrystal photovoltaic devices" @default.
- W2014707125 cites W1973020979 @default.
- W2014707125 cites W1981828234 @default.
- W2014707125 cites W1987346293 @default.
- W2014707125 cites W1995809167 @default.
- W2014707125 cites W1997541696 @default.
- W2014707125 cites W2000403122 @default.
- W2014707125 cites W2004870983 @default.
- W2014707125 cites W2016316384 @default.
- W2014707125 cites W2022195827 @default.
- W2014707125 cites W2036643557 @default.
- W2014707125 cites W2049589172 @default.
- W2014707125 cites W2063569844 @default.
- W2014707125 cites W2077120385 @default.
- W2014707125 cites W2084537801 @default.
- W2014707125 cites W2086851542 @default.
- W2014707125 cites W2097795991 @default.
- W2014707125 cites W2120549400 @default.
- W2014707125 cites W2127371360 @default.
- W2014707125 cites W2138117892 @default.
- W2014707125 cites W2151776902 @default.
- W2014707125 cites W2155729199 @default.
- W2014707125 cites W3023298159 @default.
- W2014707125 doi "https://doi.org/10.1364/oe.18.00a411" @default.
- W2014707125 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/21165071" @default.
- W2014707125 hasPublicationYear "2010" @default.
- W2014707125 type Work @default.
- W2014707125 sameAs 2014707125 @default.
- W2014707125 citedByCount "70" @default.
- W2014707125 countsByYear W20147071252012 @default.
- W2014707125 countsByYear W20147071252013 @default.
- W2014707125 countsByYear W20147071252014 @default.
- W2014707125 countsByYear W20147071252015 @default.
- W2014707125 countsByYear W20147071252016 @default.
- W2014707125 countsByYear W20147071252017 @default.
- W2014707125 countsByYear W20147071252018 @default.
- W2014707125 countsByYear W20147071252019 @default.
- W2014707125 countsByYear W20147071252020 @default.
- W2014707125 countsByYear W20147071252021 @default.
- W2014707125 countsByYear W20147071252022 @default.
- W2014707125 crossrefType "journal-article" @default.
- W2014707125 hasAuthorship W2014707125A5024096252 @default.
- W2014707125 hasAuthorship W2014707125A5030067057 @default.
- W2014707125 hasAuthorship W2014707125A5052717459 @default.
- W2014707125 hasAuthorship W2014707125A5055235163 @default.
- W2014707125 hasAuthorship W2014707125A5074382714 @default.
- W2014707125 hasBestOaLocation W20147071251 @default.
- W2014707125 hasConcept C120665830 @default.
- W2014707125 hasConcept C121332964 @default.
- W2014707125 hasConcept C125287762 @default.
- W2014707125 hasConcept C159985019 @default.
- W2014707125 hasConcept C171250308 @default.
- W2014707125 hasConcept C175854130 @default.
- W2014707125 hasConcept C18903297 @default.
- W2014707125 hasConcept C19067145 @default.
- W2014707125 hasConcept C192562407 @default.
- W2014707125 hasConcept C205507967 @default.
- W2014707125 hasConcept C206991015 @default.
- W2014707125 hasConcept C41291067 @default.
- W2014707125 hasConcept C49040817 @default.
- W2014707125 hasConcept C86803240 @default.
- W2014707125 hasConceptScore W2014707125C120665830 @default.
- W2014707125 hasConceptScore W2014707125C121332964 @default.
- W2014707125 hasConceptScore W2014707125C125287762 @default.
- W2014707125 hasConceptScore W2014707125C159985019 @default.
- W2014707125 hasConceptScore W2014707125C171250308 @default.
- W2014707125 hasConceptScore W2014707125C175854130 @default.
- W2014707125 hasConceptScore W2014707125C18903297 @default.
- W2014707125 hasConceptScore W2014707125C19067145 @default.
- W2014707125 hasConceptScore W2014707125C192562407 @default.
- W2014707125 hasConceptScore W2014707125C205507967 @default.
- W2014707125 hasConceptScore W2014707125C206991015 @default.
- W2014707125 hasConceptScore W2014707125C41291067 @default.
- W2014707125 hasConceptScore W2014707125C49040817 @default.
- W2014707125 hasConceptScore W2014707125C86803240 @default.
- W2014707125 hasIssue "S3" @default.
- W2014707125 hasLocation W20147071251 @default.
- W2014707125 hasLocation W20147071252 @default.
- W2014707125 hasOpenAccess W2014707125 @default.
- W2014707125 hasPrimaryLocation W20147071251 @default.
- W2014707125 hasRelatedWork W1965190991 @default.
- W2014707125 hasRelatedWork W1973619782 @default.
- W2014707125 hasRelatedWork W1986324126 @default.
- W2014707125 hasRelatedWork W1997236399 @default.
- W2014707125 hasRelatedWork W2098834777 @default.
- W2014707125 hasRelatedWork W2219592022 @default.
- W2014707125 hasRelatedWork W2399397734 @default.
- W2014707125 hasRelatedWork W2907038057 @default.
- W2014707125 hasRelatedWork W3198864425 @default.