Matches in SemOpenAlex for { <https://semopenalex.org/work/W4214867178> ?p ?o ?g. }
- W4214867178 endingPage "837" @default.
- W4214867178 startingPage "837" @default.
- W4214867178 abstract "Herein, we find that TiN sputter-deposited on GaN displayed the desired optical properties for plasmonic applications. While this is a positive result indicating the possible use of p- or n-type GaN as a collector of plasmonically generated hot carriers, the interfacial properties differed considerably depending on doping conditions. On p-type GaN, a distinct Schottky barrier was formed with a barrier height of ~0.56 eV, which will enable effective separation of photogenerated electrons and holes, a typical approach used to extend their lifetimes. On the other hand, no transport barrier was found for TiN on n-type GaN. While the lack of spontaneous carrier separation in this system will likely reduce unprompted hot carrier collection efficiencies, it enables a bias-dependent response whereby charges of the desired type (e.g., electrons) could be directed into the semiconductor or sequestered in the plasmonic material. The specific application of interest would determine which of these conditions is most desirable." @default.
- W4214867178 created "2022-03-05" @default.
- W4214867178 creator A5022296308 @default.
- W4214867178 creator A5043998013 @default.
- W4214867178 creator A5070622757 @default.
- W4214867178 date "2022-03-02" @default.
- W4214867178 modified "2023-10-12" @default.
- W4214867178 title "Potential of TiN/GaN Heterostructures for Hot Carrier Generation and Collection" @default.
- W4214867178 cites W1570883143 @default.
- W4214867178 cites W1966978795 @default.
- W4214867178 cites W1971102529 @default.
- W4214867178 cites W1974600865 @default.
- W4214867178 cites W1984618730 @default.
- W4214867178 cites W1996782351 @default.
- W4214867178 cites W2015921271 @default.
- W4214867178 cites W2030716173 @default.
- W4214867178 cites W2045222372 @default.
- W4214867178 cites W2049531392 @default.
- W4214867178 cites W2055114585 @default.
- W4214867178 cites W2056327721 @default.
- W4214867178 cites W2058054498 @default.
- W4214867178 cites W2074210088 @default.
- W4214867178 cites W2075329515 @default.
- W4214867178 cites W2075693479 @default.
- W4214867178 cites W2080376276 @default.
- W4214867178 cites W2086514778 @default.
- W4214867178 cites W2089645946 @default.
- W4214867178 cites W2095978718 @default.
- W4214867178 cites W2097596407 @default.
- W4214867178 cites W2110914751 @default.
- W4214867178 cites W2137001207 @default.
- W4214867178 cites W2157169527 @default.
- W4214867178 cites W2161245088 @default.
- W4214867178 cites W2280512410 @default.
- W4214867178 cites W2340378496 @default.
- W4214867178 cites W2394942498 @default.
- W4214867178 cites W2581302775 @default.
- W4214867178 cites W2592752843 @default.
- W4214867178 cites W2609570686 @default.
- W4214867178 cites W2616412598 @default.
- W4214867178 cites W2739319833 @default.
- W4214867178 cites W2773330802 @default.
- W4214867178 cites W2782399364 @default.
- W4214867178 cites W2796041890 @default.
- W4214867178 cites W2808391706 @default.
- W4214867178 cites W2890236305 @default.
- W4214867178 cites W2890472354 @default.
- W4214867178 cites W2897976832 @default.
- W4214867178 cites W2920016730 @default.
- W4214867178 cites W2945989247 @default.
- W4214867178 cites W2955362525 @default.
- W4214867178 cites W3003468091 @default.
- W4214867178 cites W3088771654 @default.
- W4214867178 cites W3111776882 @default.
- W4214867178 cites W4205517143 @default.
- W4214867178 doi "https://doi.org/10.3390/nano12050837" @default.
- W4214867178 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/35269325" @default.
- W4214867178 hasPublicationYear "2022" @default.
- W4214867178 type Work @default.
- W4214867178 citedByCount "3" @default.
- W4214867178 countsByYear W42148671782022 @default.
- W4214867178 crossrefType "journal-article" @default.
- W4214867178 hasAuthorship W4214867178A5022296308 @default.
- W4214867178 hasAuthorship W4214867178A5043998013 @default.
- W4214867178 hasAuthorship W4214867178A5070622757 @default.
- W4214867178 hasBestOaLocation W42148671781 @default.
- W4214867178 hasConcept C108225325 @default.
- W4214867178 hasConcept C110879396 @default.
- W4214867178 hasConcept C121332964 @default.
- W4214867178 hasConcept C147120987 @default.
- W4214867178 hasConcept C16115445 @default.
- W4214867178 hasConcept C171250308 @default.
- W4214867178 hasConcept C189278905 @default.
- W4214867178 hasConcept C19067145 @default.
- W4214867178 hasConcept C191897082 @default.
- W4214867178 hasConcept C192562407 @default.
- W4214867178 hasConcept C22423302 @default.
- W4214867178 hasConcept C2994096175 @default.
- W4214867178 hasConcept C49040817 @default.
- W4214867178 hasConcept C525849907 @default.
- W4214867178 hasConcept C57863236 @default.
- W4214867178 hasConcept C62520636 @default.
- W4214867178 hasConcept C78434282 @default.
- W4214867178 hasConcept C79794668 @default.
- W4214867178 hasConceptScore W4214867178C108225325 @default.
- W4214867178 hasConceptScore W4214867178C110879396 @default.
- W4214867178 hasConceptScore W4214867178C121332964 @default.
- W4214867178 hasConceptScore W4214867178C147120987 @default.
- W4214867178 hasConceptScore W4214867178C16115445 @default.
- W4214867178 hasConceptScore W4214867178C171250308 @default.
- W4214867178 hasConceptScore W4214867178C189278905 @default.
- W4214867178 hasConceptScore W4214867178C19067145 @default.
- W4214867178 hasConceptScore W4214867178C191897082 @default.
- W4214867178 hasConceptScore W4214867178C192562407 @default.
- W4214867178 hasConceptScore W4214867178C22423302 @default.
- W4214867178 hasConceptScore W4214867178C2994096175 @default.
- W4214867178 hasConceptScore W4214867178C49040817 @default.
- W4214867178 hasConceptScore W4214867178C525849907 @default.