Matches in SemOpenAlex for { <https://semopenalex.org/work/W2170998840> ?p ?o ?g. }
- W2170998840 endingPage "989" @default.
- W2170998840 startingPage "977" @default.
- W2170998840 abstract "Much of the interesting behavior that has been observed in supercooled liquids appears to be related to dynamic heterogeneity, the presence of distinct dynamic environments – with no apparent underlying structural basis – in these systems. To most directly interrogate these environments, proposed to span regions just a few nanometers across, molecular length scale probes are required. Single molecule fluorescent microscopy was introduced to the field a decade ago and has provided strong evidence of dynamic heterogeneity in supercooled systems. However, only more recently has the full set of challenges associated with interpreting results of these experiments been described. With a fuller understanding of these challenges in hand, single molecule measurements can be employed to provide a more precise picture of dynamic heterogeneity in supercooled liquids and other complex systems. In this tutorial review, experimental and data analysis details are presented for the most commonly employed single molecule approach to studying supercooled liquids, the measurement of rotational dynamics of single molecule probes. Guidance is provided in experimental set-up and probe selection, with a focus on choices that affect data interpretation and probe sensitivity to dynamic heterogeneity." @default.
- W2170998840 created "2016-06-24" @default.
- W2170998840 creator A5007423508 @default.
- W2170998840 creator A5056578133 @default.
- W2170998840 date "2014-01-01" @default.
- W2170998840 modified "2023-10-17" @default.
- W2170998840 title "Single molecule rotational probing of supercooled liquids" @default.
- W2170998840 cites W1965977395 @default.
- W2170998840 cites W1973348710 @default.
- W2170998840 cites W1976227579 @default.
- W2170998840 cites W1976323431 @default.
- W2170998840 cites W1976799229 @default.
- W2170998840 cites W1979161091 @default.
- W2170998840 cites W1983998946 @default.
- W2170998840 cites W1985187224 @default.
- W2170998840 cites W1985344485 @default.
- W2170998840 cites W1985449951 @default.
- W2170998840 cites W1992265543 @default.
- W2170998840 cites W1997539989 @default.
- W2170998840 cites W1999706778 @default.
- W2170998840 cites W2004069345 @default.
- W2170998840 cites W2011681741 @default.
- W2170998840 cites W2012557305 @default.
- W2170998840 cites W2023984416 @default.
- W2170998840 cites W2025859023 @default.
- W2170998840 cites W2029252969 @default.
- W2170998840 cites W2033612923 @default.
- W2170998840 cites W2035605408 @default.
- W2170998840 cites W2046523098 @default.
- W2170998840 cites W2053909414 @default.
- W2170998840 cites W2059794350 @default.
- W2170998840 cites W2061534913 @default.
- W2170998840 cites W2062552264 @default.
- W2170998840 cites W2065720471 @default.
- W2170998840 cites W2068781419 @default.
- W2170998840 cites W2077344934 @default.
- W2170998840 cites W2079114500 @default.
- W2170998840 cites W2084726798 @default.
- W2170998840 cites W2087239905 @default.
- W2170998840 cites W2091009575 @default.
- W2170998840 cites W2093108890 @default.
- W2170998840 cites W2093919954 @default.
- W2170998840 cites W2094750794 @default.
- W2170998840 cites W2097952819 @default.
- W2170998840 cites W2098027284 @default.
- W2170998840 cites W2106427547 @default.
- W2170998840 cites W2117470013 @default.
- W2170998840 cites W2123663993 @default.
- W2170998840 cites W2128220160 @default.
- W2170998840 cites W2137598820 @default.
- W2170998840 cites W2148597801 @default.
- W2170998840 cites W2158036413 @default.
- W2170998840 cites W2160340689 @default.
- W2170998840 cites W2166737019 @default.
- W2170998840 cites W2170797104 @default.
- W2170998840 cites W2327723680 @default.
- W2170998840 doi "https://doi.org/10.1039/c3cs60186b" @default.
- W2170998840 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/23949681" @default.
- W2170998840 hasPublicationYear "2014" @default.
- W2170998840 type Work @default.
- W2170998840 sameAs 2170998840 @default.
- W2170998840 citedByCount "37" @default.
- W2170998840 countsByYear W21709988402014 @default.
- W2170998840 countsByYear W21709988402015 @default.
- W2170998840 countsByYear W21709988402016 @default.
- W2170998840 countsByYear W21709988402017 @default.
- W2170998840 countsByYear W21709988402018 @default.
- W2170998840 countsByYear W21709988402019 @default.
- W2170998840 countsByYear W21709988402020 @default.
- W2170998840 countsByYear W21709988402021 @default.
- W2170998840 countsByYear W21709988402022 @default.
- W2170998840 countsByYear W21709988402023 @default.
- W2170998840 crossrefType "journal-article" @default.
- W2170998840 hasAuthorship W2170998840A5007423508 @default.
- W2170998840 hasAuthorship W2170998840A5056578133 @default.
- W2170998840 hasConcept C112964491 @default.
- W2170998840 hasConcept C121332964 @default.
- W2170998840 hasConcept C147597530 @default.
- W2170998840 hasConcept C159467904 @default.
- W2170998840 hasConcept C171250308 @default.
- W2170998840 hasConcept C178790620 @default.
- W2170998840 hasConcept C185592680 @default.
- W2170998840 hasConcept C186060115 @default.
- W2170998840 hasConcept C192562407 @default.
- W2170998840 hasConcept C2992358367 @default.
- W2170998840 hasConcept C32909587 @default.
- W2170998840 hasConcept C59593255 @default.
- W2170998840 hasConcept C86803240 @default.
- W2170998840 hasConcept C97355855 @default.
- W2170998840 hasConceptScore W2170998840C112964491 @default.
- W2170998840 hasConceptScore W2170998840C121332964 @default.
- W2170998840 hasConceptScore W2170998840C147597530 @default.
- W2170998840 hasConceptScore W2170998840C159467904 @default.
- W2170998840 hasConceptScore W2170998840C171250308 @default.
- W2170998840 hasConceptScore W2170998840C178790620 @default.
- W2170998840 hasConceptScore W2170998840C185592680 @default.
- W2170998840 hasConceptScore W2170998840C186060115 @default.
- W2170998840 hasConceptScore W2170998840C192562407 @default.