Matches in SemOpenAlex for { <https://semopenalex.org/work/W3201715536> ?p ?o ?g. }
- W3201715536 endingPage "17471" @default.
- W3201715536 startingPage "17463" @default.
- W3201715536 abstract "Chiral-structured nanoscale materials exhibit chiroptical properties with preferential absorptions of circularly polarized light. The distinctive optical responses of chiral materials have great potential for advanced optical and biomedical applications. However, the fabrication of three-dimensional structures with mirrored nanoscale geometry is still challenging. This study introduces chiral plasmonic nanopatterns in wavy shapes based on the unidirectional alignment of block copolymer thin films and their tilted transfer, combined with buckling processes. The cylindrical nanodomains of polystyrene-block-poly(2-vinylpyridine) thin films were unidirectionally aligned over a large area by the shear-rolling process. The aligned block copolymer thin films were transferred onto uniaxially prestrained polydimethylsiloxane films at certain angles relative to the stretching directions. The strain was then released to induce buckling. The aligned nanopatterns across the axis of the formed microwrinkles were selectively infiltrated with gold ions. After reduction by plasma treatment, chiral plasmonic nanowave patterns were fabricated with the presence of mirror-reflected circular dichroism spectra. This fabrication method does not require any lithography processing or innately chiral biomaterials, which can be advantageous over other conventional fabrication methods for artificial nanoscale chiral materials." @default.
- W3201715536 created "2021-10-11" @default.
- W3201715536 creator A5016833240 @default.
- W3201715536 creator A5024116734 @default.
- W3201715536 creator A5031459693 @default.
- W3201715536 creator A5034718692 @default.
- W3201715536 creator A5046426478 @default.
- W3201715536 creator A5053237930 @default.
- W3201715536 creator A5080502670 @default.
- W3201715536 date "2021-10-04" @default.
- W3201715536 modified "2023-10-09" @default.
- W3201715536 title "Chiral Plasmonic Nanowaves by Tilted Assembly of Unidirectionally Aligned Block Copolymers with Buckling-Induced Microwrinkles" @default.
- W3201715536 cites W1918480390 @default.
- W3201715536 cites W1963646080 @default.
- W3201715536 cites W1967710255 @default.
- W3201715536 cites W1967980347 @default.
- W3201715536 cites W1974374350 @default.
- W3201715536 cites W1978496982 @default.
- W3201715536 cites W1992420596 @default.
- W3201715536 cites W2006760095 @default.
- W3201715536 cites W2049721533 @default.
- W3201715536 cites W2071666523 @default.
- W3201715536 cites W2073938237 @default.
- W3201715536 cites W2082097221 @default.
- W3201715536 cites W2083926174 @default.
- W3201715536 cites W2089155137 @default.
- W3201715536 cites W2091784395 @default.
- W3201715536 cites W2095334240 @default.
- W3201715536 cites W2140088505 @default.
- W3201715536 cites W2146753791 @default.
- W3201715536 cites W2161812676 @default.
- W3201715536 cites W2245649859 @default.
- W3201715536 cites W2265850105 @default.
- W3201715536 cites W2268991000 @default.
- W3201715536 cites W2281974112 @default.
- W3201715536 cites W2606784917 @default.
- W3201715536 cites W2622002712 @default.
- W3201715536 cites W2765373334 @default.
- W3201715536 cites W2766714276 @default.
- W3201715536 cites W2768505755 @default.
- W3201715536 cites W2795081303 @default.
- W3201715536 cites W2797295904 @default.
- W3201715536 cites W2807337796 @default.
- W3201715536 cites W2880870049 @default.
- W3201715536 cites W2896522109 @default.
- W3201715536 cites W2897487656 @default.
- W3201715536 cites W2939468952 @default.
- W3201715536 cites W2951453805 @default.
- W3201715536 cites W2953831121 @default.
- W3201715536 cites W2955559713 @default.
- W3201715536 cites W2967005571 @default.
- W3201715536 cites W2993716402 @default.
- W3201715536 cites W3082804787 @default.
- W3201715536 cites W3109595987 @default.
- W3201715536 cites W3112761985 @default.
- W3201715536 cites W3115625514 @default.
- W3201715536 cites W3128002357 @default.
- W3201715536 cites W3139953835 @default.
- W3201715536 cites W3159559447 @default.
- W3201715536 cites W3161662690 @default.
- W3201715536 doi "https://doi.org/10.1021/acsnano.1c03752" @default.
- W3201715536 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/34606232" @default.
- W3201715536 hasPublicationYear "2021" @default.
- W3201715536 type Work @default.
- W3201715536 sameAs 3201715536 @default.
- W3201715536 citedByCount "4" @default.
- W3201715536 countsByYear W32017155362022 @default.
- W3201715536 countsByYear W32017155362023 @default.
- W3201715536 crossrefType "journal-article" @default.
- W3201715536 hasAuthorship W3201715536A5016833240 @default.
- W3201715536 hasAuthorship W3201715536A5024116734 @default.
- W3201715536 hasAuthorship W3201715536A5031459693 @default.
- W3201715536 hasAuthorship W3201715536A5034718692 @default.
- W3201715536 hasAuthorship W3201715536A5046426478 @default.
- W3201715536 hasAuthorship W3201715536A5053237930 @default.
- W3201715536 hasAuthorship W3201715536A5080502670 @default.
- W3201715536 hasConcept C110879396 @default.
- W3201715536 hasConcept C136525101 @default.
- W3201715536 hasConcept C142724271 @default.
- W3201715536 hasConcept C15920480 @default.
- W3201715536 hasConcept C159985019 @default.
- W3201715536 hasConcept C171250308 @default.
- W3201715536 hasConcept C186187911 @default.
- W3201715536 hasConcept C19067145 @default.
- W3201715536 hasConcept C192562407 @default.
- W3201715536 hasConcept C204223013 @default.
- W3201715536 hasConcept C204787440 @default.
- W3201715536 hasConcept C2777922577 @default.
- W3201715536 hasConcept C2779849746 @default.
- W3201715536 hasConcept C45206210 @default.
- W3201715536 hasConcept C49040817 @default.
- W3201715536 hasConcept C521977710 @default.
- W3201715536 hasConcept C71924100 @default.
- W3201715536 hasConcept C85476182 @default.
- W3201715536 hasConceptScore W3201715536C110879396 @default.
- W3201715536 hasConceptScore W3201715536C136525101 @default.
- W3201715536 hasConceptScore W3201715536C142724271 @default.
- W3201715536 hasConceptScore W3201715536C15920480 @default.