Matches in SemOpenAlex for { <https://semopenalex.org/work/W2021928056> ?p ?o ?g. }
- W2021928056 endingPage "9078" @default.
- W2021928056 startingPage "9072" @default.
- W2021928056 abstract "Striation defects in spin-coated thin films are a result of unfavorable capillary forces that develop due to the physical processes commonly involved in the spin-coating technique. Solvent evaporation during spinning causes slight compositional changes in the coating during drying, and these changes lead to instability in the surface tension, which causes lateral motions of the drying fluid up to the point where it gels and freezes in the thickness variations. In an earlier publication, we looked at the case where evaporation happens fast enough that the compositional depletion is mostly a surface effect. In terms of the mass transport rate competition within the coating solution, that work covered the thick film limit of this instability problem. However, in many cases, the coatings are thin enough or diffusion of solvent within the coating is fast enough to require a different solvent mixing strategy, which is developed here. A simple perturbation analysis of surface roughness is developed, and evaporation is allowed in the thin film limit. The perturbation analysis allows for a simple rubric to be laid out for cosolvent additions that can reduce the Marangoni effect during the later stages of coating deposition and drying when the thin film limit applies." @default.
- W2021928056 created "2016-06-24" @default.
- W2021928056 creator A5070810289 @default.
- W2021928056 date "2013-07-11" @default.
- W2021928056 modified "2023-09-25" @default.
- W2021928056 title "A Model for Drying Control Cosolvent Selection for Spin-Coating Uniformity: The Thin Film Limit" @default.
- W2021928056 cites W136428962 @default.
- W2021928056 cites W1480410166 @default.
- W2021928056 cites W1963796851 @default.
- W2021928056 cites W1964903986 @default.
- W2021928056 cites W1967467920 @default.
- W2021928056 cites W1971723555 @default.
- W2021928056 cites W1973647135 @default.
- W2021928056 cites W1979341802 @default.
- W2021928056 cites W1981585563 @default.
- W2021928056 cites W1992488129 @default.
- W2021928056 cites W1994021132 @default.
- W2021928056 cites W1995830193 @default.
- W2021928056 cites W2000790045 @default.
- W2021928056 cites W2003115865 @default.
- W2021928056 cites W2007416410 @default.
- W2021928056 cites W2014792970 @default.
- W2021928056 cites W2016007031 @default.
- W2021928056 cites W2017787310 @default.
- W2021928056 cites W2025064062 @default.
- W2021928056 cites W2026412605 @default.
- W2021928056 cites W2026666005 @default.
- W2021928056 cites W2033146977 @default.
- W2021928056 cites W2038623030 @default.
- W2021928056 cites W2039502347 @default.
- W2021928056 cites W2041383593 @default.
- W2021928056 cites W2042060584 @default.
- W2021928056 cites W2055753051 @default.
- W2021928056 cites W2068625397 @default.
- W2021928056 cites W2073045661 @default.
- W2021928056 cites W2075162511 @default.
- W2021928056 cites W2075425282 @default.
- W2021928056 cites W2078778165 @default.
- W2021928056 cites W2080185508 @default.
- W2021928056 cites W2080355103 @default.
- W2021928056 cites W2083187087 @default.
- W2021928056 cites W2087516279 @default.
- W2021928056 cites W2090955920 @default.
- W2021928056 cites W210208243 @default.
- W2021928056 cites W2103801946 @default.
- W2021928056 cites W2107484526 @default.
- W2021928056 cites W2107558437 @default.
- W2021928056 cites W2131149160 @default.
- W2021928056 cites W2132937391 @default.
- W2021928056 cites W2133333651 @default.
- W2021928056 cites W2134918207 @default.
- W2021928056 cites W2139505783 @default.
- W2021928056 cites W2155919274 @default.
- W2021928056 cites W2165676649 @default.
- W2021928056 cites W2223341099 @default.
- W2021928056 cites W22365629 @default.
- W2021928056 cites W2318370559 @default.
- W2021928056 cites W2331308056 @default.
- W2021928056 cites W2332750569 @default.
- W2021928056 cites W391543931 @default.
- W2021928056 doi "https://doi.org/10.1021/la401106z" @default.
- W2021928056 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/23808408" @default.
- W2021928056 hasPublicationYear "2013" @default.
- W2021928056 type Work @default.
- W2021928056 sameAs 2021928056 @default.
- W2021928056 citedByCount "45" @default.
- W2021928056 countsByYear W20219280562013 @default.
- W2021928056 countsByYear W20219280562014 @default.
- W2021928056 countsByYear W20219280562015 @default.
- W2021928056 countsByYear W20219280562016 @default.
- W2021928056 countsByYear W20219280562017 @default.
- W2021928056 countsByYear W20219280562018 @default.
- W2021928056 countsByYear W20219280562019 @default.
- W2021928056 countsByYear W20219280562020 @default.
- W2021928056 countsByYear W20219280562021 @default.
- W2021928056 countsByYear W20219280562022 @default.
- W2021928056 countsByYear W20219280562023 @default.
- W2021928056 crossrefType "journal-article" @default.
- W2021928056 hasAuthorship W2021928056A5070810289 @default.
- W2021928056 hasConcept C107365816 @default.
- W2021928056 hasConcept C115196108 @default.
- W2021928056 hasConcept C121332964 @default.
- W2021928056 hasConcept C127413603 @default.
- W2021928056 hasConcept C154815118 @default.
- W2021928056 hasConcept C159985019 @default.
- W2021928056 hasConcept C171250308 @default.
- W2021928056 hasConcept C185592680 @default.
- W2021928056 hasConcept C19067145 @default.
- W2021928056 hasConcept C192562407 @default.
- W2021928056 hasConcept C196806460 @default.
- W2021928056 hasConcept C2781448156 @default.
- W2021928056 hasConcept C42360764 @default.
- W2021928056 hasConcept C61441594 @default.
- W2021928056 hasConcept C63219958 @default.
- W2021928056 hasConcept C8892853 @default.
- W2021928056 hasConcept C97355855 @default.
- W2021928056 hasConceptScore W2021928056C107365816 @default.
- W2021928056 hasConceptScore W2021928056C115196108 @default.