Matches in SemOpenAlex for { <https://semopenalex.org/work/W2128383529> ?p ?o ?g. }
- W2128383529 endingPage "2085" @default.
- W2128383529 startingPage "2078" @default.
- W2128383529 abstract "Direct imaging of nanoparticle solutions by liquid phase transmission electron microscopy has enabled unique in situ studies of nanoparticle motion and growth. In the present work, we report on real-time formation of two-dimensional nanoparticle arrays in the very low diffusive limit, where nanoparticles are mainly driven by capillary forces and solvent fluctuations. We find that superlattice formation appears to be segregated into multiple regimes. Initially, the solvent front drags the nanoparticles, condensing them into an amorphous agglomerate. Subsequently, the nanoparticle crystallization into an array is driven by local fluctuations. Following the crystallization event, superlattice growth can also occur via the addition of individual nanoparticles drawn from outlying regions by different solvent fronts. The dragging mechanism is consistent with simulations based on a coarse-grained lattice gas model at the same limit." @default.
- W2128383529 created "2016-06-24" @default.
- W2128383529 creator A5009848674 @default.
- W2128383529 creator A5030567048 @default.
- W2128383529 creator A5041503459 @default.
- W2128383529 creator A5067699683 @default.
- W2128383529 creator A5078212799 @default.
- W2128383529 creator A5088719301 @default.
- W2128383529 date "2012-03-02" @default.
- W2128383529 modified "2023-09-25" @default.
- W2128383529 title "Direct Observation of Nanoparticle Superlattice Formation by Using Liquid Cell Transmission Electron Microscopy" @default.
- W2128383529 cites W1964273931 @default.
- W2128383529 cites W1965854952 @default.
- W2128383529 cites W1967439316 @default.
- W2128383529 cites W1980492279 @default.
- W2128383529 cites W1982308511 @default.
- W2128383529 cites W1990411685 @default.
- W2128383529 cites W1993350105 @default.
- W2128383529 cites W1993981324 @default.
- W2128383529 cites W1996487727 @default.
- W2128383529 cites W2016007689 @default.
- W2128383529 cites W2017445739 @default.
- W2128383529 cites W2022373767 @default.
- W2128383529 cites W2022451266 @default.
- W2128383529 cites W2023417433 @default.
- W2128383529 cites W2029122958 @default.
- W2128383529 cites W2032895152 @default.
- W2128383529 cites W2033096733 @default.
- W2128383529 cites W2035519311 @default.
- W2128383529 cites W2047086134 @default.
- W2128383529 cites W2047484027 @default.
- W2128383529 cites W2050731896 @default.
- W2128383529 cites W2051247565 @default.
- W2128383529 cites W2066889077 @default.
- W2128383529 cites W2075177837 @default.
- W2128383529 cites W2083201436 @default.
- W2128383529 cites W2084273768 @default.
- W2128383529 cites W2087202652 @default.
- W2128383529 cites W2090765164 @default.
- W2128383529 cites W2092204065 @default.
- W2128383529 cites W2096375787 @default.
- W2128383529 cites W2107579461 @default.
- W2128383529 cites W2107606224 @default.
- W2128383529 cites W2113020843 @default.
- W2128383529 cites W2113684890 @default.
- W2128383529 cites W2117274978 @default.
- W2128383529 cites W2119970356 @default.
- W2128383529 cites W2133934213 @default.
- W2128383529 cites W2148874560 @default.
- W2128383529 cites W2152534072 @default.
- W2128383529 cites W2155430461 @default.
- W2128383529 cites W2157001218 @default.
- W2128383529 cites W2159437491 @default.
- W2128383529 cites W2162704535 @default.
- W2128383529 cites W3103603412 @default.
- W2128383529 doi "https://doi.org/10.1021/nn203837m" @default.
- W2128383529 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/22360715" @default.
- W2128383529 hasPublicationYear "2012" @default.
- W2128383529 type Work @default.
- W2128383529 sameAs 2128383529 @default.
- W2128383529 citedByCount "150" @default.
- W2128383529 countsByYear W21283835292012 @default.
- W2128383529 countsByYear W21283835292013 @default.
- W2128383529 countsByYear W21283835292014 @default.
- W2128383529 countsByYear W21283835292015 @default.
- W2128383529 countsByYear W21283835292016 @default.
- W2128383529 countsByYear W21283835292017 @default.
- W2128383529 countsByYear W21283835292018 @default.
- W2128383529 countsByYear W21283835292019 @default.
- W2128383529 countsByYear W21283835292020 @default.
- W2128383529 countsByYear W21283835292021 @default.
- W2128383529 countsByYear W21283835292022 @default.
- W2128383529 countsByYear W21283835292023 @default.
- W2128383529 crossrefType "journal-article" @default.
- W2128383529 hasAuthorship W2128383529A5009848674 @default.
- W2128383529 hasAuthorship W2128383529A5030567048 @default.
- W2128383529 hasAuthorship W2128383529A5041503459 @default.
- W2128383529 hasAuthorship W2128383529A5067699683 @default.
- W2128383529 hasAuthorship W2128383529A5078212799 @default.
- W2128383529 hasAuthorship W2128383529A5088719301 @default.
- W2128383529 hasConcept C105382558 @default.
- W2128383529 hasConcept C127413603 @default.
- W2128383529 hasConcept C129955480 @default.
- W2128383529 hasConcept C146088050 @default.
- W2128383529 hasConcept C155672457 @default.
- W2128383529 hasConcept C159467904 @default.
- W2128383529 hasConcept C159985019 @default.
- W2128383529 hasConcept C171250308 @default.
- W2128383529 hasConcept C185592680 @default.
- W2128383529 hasConcept C192562407 @default.
- W2128383529 hasConcept C203036418 @default.
- W2128383529 hasConcept C42360764 @default.
- W2128383529 hasConcept C49040817 @default.
- W2128383529 hasConcept C56052488 @default.
- W2128383529 hasConcept C8010536 @default.
- W2128383529 hasConceptScore W2128383529C105382558 @default.
- W2128383529 hasConceptScore W2128383529C127413603 @default.
- W2128383529 hasConceptScore W2128383529C129955480 @default.