Matches in SemOpenAlex for { <https://semopenalex.org/work/W2791448883> ?p ?o ?g. }
- W2791448883 endingPage "29" @default.
- W2791448883 startingPage "29" @default.
- W2791448883 abstract "Knowing the possible structures of individual clusters in nanostructured materials is an important first step in their design. With previous structure prediction data for BaO nanoclusters as a basis, data mining techniques were used to investigate candidate structures for magnesium oxide, calcium oxide and strontium oxide clusters. The lowest-energy structures and analysis of some of their structural properties are presented here. Clusters that are predicted to be ideal targets for synthesis, based on being both the only thermally accessible minimum for their size, and a size that is thermally accessible with respect to neighbouring sizes, include global minima for: sizes 
 
 
 
 n
 =
 9
 ,
 15
 ,
 16
 ,
 18
 
 
 
 and 24 for (MgO)
 
 
 
 
 n
 
 
 
 ; sizes 
 
 
 
 n
 =
 8
 ,
 9
 ,
 12
 ,
 16
 ,
 18
 
 
 
 and 24 for (CaO)
 
 
 
 
 n
 
 
 
 ; the greatest number of sizes of (SrO)
 
 
 
 
 n
 
 
 
 clusters (
 
 
 
 n
 =
 8
 ,
 9
 ,
 10
 ,
 12
 ,
 13
 ,
 15
 ,
 16
 ,
 18
 
 
 
 and 24); and for (BaO)
 
 
 
 
 n
 
 
 
 sizes of 
 
 
 
 n
 =
 8
 ,
 10
 
 
 
 and 16." @default.
- W2791448883 created "2018-03-29" @default.
- W2791448883 creator A5027196334 @default.
- W2791448883 creator A5072875967 @default.
- W2791448883 creator A5079261000 @default.
- W2791448883 creator A5090515130 @default.
- W2791448883 date "2018-02-21" @default.
- W2791448883 modified "2023-09-26" @default.
- W2791448883 title "Synthesis Target Structures for Alkaline Earth Oxide Clusters" @default.
- W2791448883 cites W1573207696 @default.
- W2791448883 cites W1973686331 @default.
- W2791448883 cites W1975066234 @default.
- W2791448883 cites W1979676007 @default.
- W2791448883 cites W1981368803 @default.
- W2791448883 cites W1981471768 @default.
- W2791448883 cites W1983124880 @default.
- W2791448883 cites W1983590641 @default.
- W2791448883 cites W1990866938 @default.
- W2791448883 cites W1992233742 @default.
- W2791448883 cites W2007935247 @default.
- W2791448883 cites W2008433661 @default.
- W2791448883 cites W2016168218 @default.
- W2791448883 cites W2026502989 @default.
- W2791448883 cites W2028056984 @default.
- W2791448883 cites W2040885287 @default.
- W2791448883 cites W2053130975 @default.
- W2791448883 cites W2054704030 @default.
- W2791448883 cites W2059924763 @default.
- W2791448883 cites W2070879191 @default.
- W2791448883 cites W2093422894 @default.
- W2791448883 cites W2097079778 @default.
- W2791448883 cites W2102426844 @default.
- W2791448883 cites W2109089858 @default.
- W2791448883 cites W2142129185 @default.
- W2791448883 cites W2143054775 @default.
- W2791448883 cites W2148424525 @default.
- W2791448883 cites W2167590372 @default.
- W2791448883 cites W2315077903 @default.
- W2791448883 cites W2326041336 @default.
- W2791448883 cites W2575621639 @default.
- W2791448883 cites W2579906828 @default.
- W2791448883 cites W2757579237 @default.
- W2791448883 cites W4235185745 @default.
- W2791448883 doi "https://doi.org/10.3390/inorganics6010029" @default.
- W2791448883 hasPublicationYear "2018" @default.
- W2791448883 type Work @default.
- W2791448883 sameAs 2791448883 @default.
- W2791448883 citedByCount "11" @default.
- W2791448883 countsByYear W27914488832018 @default.
- W2791448883 countsByYear W27914488832019 @default.
- W2791448883 countsByYear W27914488832020 @default.
- W2791448883 countsByYear W27914488832021 @default.
- W2791448883 countsByYear W27914488832022 @default.
- W2791448883 crossrefType "journal-article" @default.
- W2791448883 hasAuthorship W2791448883A5027196334 @default.
- W2791448883 hasAuthorship W2791448883A5072875967 @default.
- W2791448883 hasAuthorship W2791448883A5079261000 @default.
- W2791448883 hasAuthorship W2791448883A5090515130 @default.
- W2791448883 hasBestOaLocation W27914488831 @default.
- W2791448883 hasConcept C171250308 @default.
- W2791448883 hasConcept C178790620 @default.
- W2791448883 hasConcept C185592680 @default.
- W2791448883 hasConcept C191897082 @default.
- W2791448883 hasConcept C192562407 @default.
- W2791448883 hasConcept C2778402822 @default.
- W2791448883 hasConcept C2779187350 @default.
- W2791448883 hasConcept C2779851234 @default.
- W2791448883 hasConcept C518915863 @default.
- W2791448883 hasConcept C544153396 @default.
- W2791448883 hasConcept C62715864 @default.
- W2791448883 hasConcept C8010536 @default.
- W2791448883 hasConceptScore W2791448883C171250308 @default.
- W2791448883 hasConceptScore W2791448883C178790620 @default.
- W2791448883 hasConceptScore W2791448883C185592680 @default.
- W2791448883 hasConceptScore W2791448883C191897082 @default.
- W2791448883 hasConceptScore W2791448883C192562407 @default.
- W2791448883 hasConceptScore W2791448883C2778402822 @default.
- W2791448883 hasConceptScore W2791448883C2779187350 @default.
- W2791448883 hasConceptScore W2791448883C2779851234 @default.
- W2791448883 hasConceptScore W2791448883C518915863 @default.
- W2791448883 hasConceptScore W2791448883C544153396 @default.
- W2791448883 hasConceptScore W2791448883C62715864 @default.
- W2791448883 hasConceptScore W2791448883C8010536 @default.
- W2791448883 hasIssue "1" @default.
- W2791448883 hasLocation W27914488831 @default.
- W2791448883 hasLocation W27914488832 @default.
- W2791448883 hasLocation W27914488833 @default.
- W2791448883 hasOpenAccess W2791448883 @default.
- W2791448883 hasPrimaryLocation W27914488831 @default.
- W2791448883 hasRelatedWork W1997388464 @default.
- W2791448883 hasRelatedWork W2003362030 @default.
- W2791448883 hasRelatedWork W2080162992 @default.
- W2791448883 hasRelatedWork W2162608729 @default.
- W2791448883 hasRelatedWork W2323605050 @default.
- W2791448883 hasRelatedWork W2952071951 @default.
- W2791448883 hasRelatedWork W3137020137 @default.
- W2791448883 hasRelatedWork W4254660464 @default.
- W2791448883 hasRelatedWork W584040234 @default.