An optimized protocol for the analysis of time-resolved elastic scattering experiments

Author(s)Calabrese, Michelle A.
Author(s)Wagner, Norman J.
Author(s)Rogers, Simon A.
Ordered AuthorMichelle A. Calabrese, Norman J. Wagner and Simon A. Rogers
UD AuthorCalabrese, Michelle A.en_US
UD AuthorWagner, Norman J.en_US
UD AuthorRogers, Simon A.en_US
Date Accessioned2016-05-12T19:54:43Z
Date Available2016-05-12T19:54:43Z
Copyright DateCopyright © The Royal Society of Chemistry 2016.en_US
Publication Date2016-01-12
DescriptionPublisher's PDFen_US
AbstractA deconvolution protocol is developed for obtaining material responses from time-resolved small-angle scattering data from light (SALS), X-rays (SAXS), or neutrons (SANS). Previously used methods convolve material responses with information from the procedure used to group data into discrete time intervals, known as binning. We demonstrate that enhanced signal resolution can be obtained by using methods of signal processing to analyze time-resolved scattering data. The method is illustrated for a time-resolved rheo-SANS measurement of a complex, structured surfactant solution under oscillatory shear flow. We show how the underlying material response can be clearly decoupled from the binning procedure. This method greatly reduces the experimental acquisition time, by approximately one-third for the aforementioned rheo-SANS experiment.en_US
DepartmentUniversity of Delaware. Department of Chemical & Biomolecular Engineering.en_US
CitationCalabrese, Michelle A., Norman J. Wagner, and Simon A. Rogers. "An optimized protocol for the analysis of time-resolved elastic scattering experiments." Soft Matter, 2016, 12, 2301-2308.en_US
DOI10.1039/C5SM03039Ken_US
ISSN1744-683X ; e- 1744-6848en_US
URLhttp://udspace.udel.edu/handle/19716/17712
Languageen_USen_US
PublisherRoyal Society of Chemistryen_US
dc.rights©The Royal Society of Chemistry 2016en_US
dc.rightsCC BY 3.0 Unported License.en_US
dc.sourceSoft Matteren_US
dc.source.urihttp://pubs.rsc.org/en/journals/journalissues/sm#!recentarticles&adven_US
TitleAn optimized protocol for the analysis of time-resolved elastic scattering experimentsen_US
TypeArticleen_US
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