000186450 001__ 186450 000186450 005__ 20240619092040.0 000186450 0247_ $$2doi$$a10.1039/c3sm50644d 000186450 0247_ $$2ISSN$$a1744-683X 000186450 0247_ $$2ISSN$$a1744-6848 000186450 0247_ $$2WOS$$aWOS:000326287700006 000186450 037__ $$aFZJ-2015-00524 000186450 082__ $$a530 000186450 1001_ $$0P:(DE-Juel1)130646$$aFrielinghaus, Henrich$$b0$$eCorresponding Author$$ufzj 000186450 245__ $$aPolymers in 2-D confinement 000186450 260__ $$aLondon$$bRoyal Soc. of Chemistry$$c2013 000186450 3367_ $$0PUB:(DE-HGF)16$$2PUB:(DE-HGF)$$aJournal Article$$bjournal$$mjournal$$s1421736242_11856 000186450 3367_ $$2DataCite$$aOutput Types/Journal article 000186450 3367_ $$00$$2EndNote$$aJournal Article 000186450 3367_ $$2BibTeX$$aARTICLE 000186450 3367_ $$2ORCID$$aJOURNAL_ARTICLE 000186450 3367_ $$2DRIVER$$aarticle 000186450 520__ $$a2-D confined polymer chains were observed using small angle neutron scattering. The signal of unwanted background needed to be removed, and so the scattering of 2-D confined polymer chains was recorded and interpreted. Due to finite thickness of the polymer layer the concept of self-avoiding trails was applied, contrary to self-avoiding walks for the single layer thickness. The limitations by the finite clay particle diameter were not observed for the larger platelets, but additional confinement effects appeared for the series of smaller clay particles in the lateral direction. 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