Matches in SemOpenAlex for { <https://semopenalex.org/work/W2901871337> ?p ?o ?g. }
- W2901871337 abstract "The role of grain boundaries in limiting irradiation damage in nanocrystalline materials is often correlated with the grain boundary sink efficiency. Here, we demonstrate on a tungsten material system (which has very distinct vacancy and interstitial mobilities) that sink efficiency does not unequivocally describe how grain boundaries impact irradiation damage. Rather, it reflects a particular defect diffusion equation that can change if any of the bulk conditions change. Even when denuded zone formation does not occur and grain boundaries have zero sink efficiencies, grain boundaries still impact the performance of nanocrystalline materials under irradiation by acting as a saturable defect storage site. However, denuded zone formation can occur under a necessary requirement of extra defect recombination at the grain boundaries (which, for example, is not possible when vacancy migration does not occur). These insights provide answers to several outstanding questions regarding the sink efficiency of a grain boundary and assist in parametrizing the role of grain boundaries in limiting irradiation damage in nanocrystalline materials." @default.
- W2901871337 created "2018-11-29" @default.
- W2901871337 creator A5010358439 @default.
- W2901871337 creator A5041305461 @default.
- W2901871337 creator A5052965968 @default.
- W2901871337 creator A5053531698 @default.
- W2901871337 creator A5068684608 @default.
- W2901871337 creator A5068805217 @default.
- W2901871337 creator A5074792155 @default.
- W2901871337 creator A5082491160 @default.
- W2901871337 date "2018-11-21" @default.
- W2901871337 modified "2023-10-02" @default.
- W2901871337 title "Does sink efficiency unequivocally characterize how grain boundaries impact radiation damage?" @default.
- W2901871337 cites W1640819085 @default.
- W2901871337 cites W1973205381 @default.
- W2901871337 cites W1973824882 @default.
- W2901871337 cites W1976453625 @default.
- W2901871337 cites W1980393966 @default.
- W2901871337 cites W1980881833 @default.
- W2901871337 cites W1982381330 @default.
- W2901871337 cites W1982769197 @default.
- W2901871337 cites W1984529134 @default.
- W2901871337 cites W1986616826 @default.
- W2901871337 cites W1988782399 @default.
- W2901871337 cites W1988861084 @default.
- W2901871337 cites W1992367394 @default.
- W2901871337 cites W1998141434 @default.
- W2901871337 cites W2005733417 @default.
- W2901871337 cites W2006230061 @default.
- W2901871337 cites W2008390632 @default.
- W2901871337 cites W2011418881 @default.
- W2901871337 cites W2013406056 @default.
- W2901871337 cites W2016622504 @default.
- W2901871337 cites W2022142500 @default.
- W2901871337 cites W2024723884 @default.
- W2901871337 cites W2028585826 @default.
- W2901871337 cites W2034907959 @default.
- W2901871337 cites W2038958116 @default.
- W2901871337 cites W2039391347 @default.
- W2901871337 cites W2041223409 @default.
- W2901871337 cites W2043052205 @default.
- W2901871337 cites W2045950384 @default.
- W2901871337 cites W2049647679 @default.
- W2901871337 cites W2054103510 @default.
- W2901871337 cites W2057618188 @default.
- W2901871337 cites W2059294989 @default.
- W2901871337 cites W2063210077 @default.
- W2901871337 cites W2064885808 @default.
- W2901871337 cites W2066902743 @default.
- W2901871337 cites W2068537161 @default.
- W2901871337 cites W2072024713 @default.
- W2901871337 cites W2075406992 @default.
- W2901871337 cites W2077285706 @default.
- W2901871337 cites W2078396948 @default.
- W2901871337 cites W2082956678 @default.
- W2901871337 cites W2083663250 @default.
- W2901871337 cites W2084732626 @default.
- W2901871337 cites W2086385914 @default.
- W2901871337 cites W2086529289 @default.
- W2901871337 cites W2088311068 @default.
- W2901871337 cites W2090162514 @default.
- W2901871337 cites W2095921114 @default.
- W2901871337 cites W2099540110 @default.
- W2901871337 cites W2126906385 @default.
- W2901871337 cites W2139016421 @default.
- W2901871337 cites W2314795867 @default.
- W2901871337 cites W2326235843 @default.
- W2901871337 cites W2333051120 @default.
- W2901871337 cites W2337304677 @default.
- W2901871337 cites W2345583626 @default.
- W2901871337 cites W2410146685 @default.
- W2901871337 cites W2511334329 @default.
- W2901871337 cites W2537179401 @default.
- W2901871337 cites W2560851124 @default.
- W2901871337 cites W2590617961 @default.
- W2901871337 cites W2604223361 @default.
- W2901871337 cites W2613443072 @default.
- W2901871337 cites W2623320099 @default.
- W2901871337 cites W2791711486 @default.
- W2901871337 cites W644063332 @default.
- W2901871337 doi "https://doi.org/10.1103/physrevmaterials.2.113604" @default.
- W2901871337 hasPublicationYear "2018" @default.
- W2901871337 type Work @default.
- W2901871337 sameAs 2901871337 @default.
- W2901871337 citedByCount "5" @default.
- W2901871337 countsByYear W29018713372019 @default.
- W2901871337 countsByYear W29018713372021 @default.
- W2901871337 countsByYear W29018713372022 @default.
- W2901871337 countsByYear W29018713372023 @default.
- W2901871337 crossrefType "journal-article" @default.
- W2901871337 hasAuthorship W2901871337A5010358439 @default.
- W2901871337 hasAuthorship W2901871337A5041305461 @default.
- W2901871337 hasAuthorship W2901871337A5052965968 @default.
- W2901871337 hasAuthorship W2901871337A5053531698 @default.
- W2901871337 hasAuthorship W2901871337A5068684608 @default.
- W2901871337 hasAuthorship W2901871337A5068805217 @default.
- W2901871337 hasAuthorship W2901871337A5074792155 @default.
- W2901871337 hasAuthorship W2901871337A5082491160 @default.
- W2901871337 hasBestOaLocation W29018713371 @default.
- W2901871337 hasConcept C121332964 @default.