Matches in SemOpenAlex for { <https://semopenalex.org/work/W4281714250> ?p ?o ?g. }
- W4281714250 endingPage "27156" @default.
- W4281714250 startingPage "27149" @default.
- W4281714250 abstract "Hybrid organic–inorganic composites based on organic photochromic crystals embedded in inorganic templates provide a new approach to photomechanical materials. Diarylethene (DAE) nanowire crystals grown in Al2O3 membranes have exhibited reversible photoinduced bending and lifting [Dong, X., Chem. Mater. 2019, 31, 1016−1022]. In this paper, the hybrid approach is extended to porous SiO2 membranes. Despite the different template material (SiO2 instead of Al2O3) and much larger channels (5 μm diameter instead of 0.2 μm diameter), similar photomechanical behavior is observed for this new class of organic–inorganic hybrid actuators. The ability to reuse individual glass templates across different DAE filling cycles allows us to show that the DAE filling step is crucial for determining the mechanical work done by the bending template. The bending curvature also depends quadratically on the template thickness, in good agreement with theory. The light-induced bending can be repeated for up to 150 cycles without loss of performance, suggesting good fatigue resistance. The results in this paper demonstrate that the hybrid organic–inorganic approach can be extended to other host materials and template geometries. They also suggest that optimizing the organic filling and template thickness could improve the work output by an order of magnitude." @default.
- W4281714250 created "2022-06-13" @default.
- W4281714250 creator A5021098993 @default.
- W4281714250 creator A5022391004 @default.
- W4281714250 creator A5030077939 @default.
- W4281714250 creator A5040684383 @default.
- W4281714250 creator A5075125367 @default.
- W4281714250 creator A5082339689 @default.
- W4281714250 date "2022-06-03" @default.
- W4281714250 modified "2023-10-18" @default.
- W4281714250 title "Performance of Composite Glass–Diarylethene Crystal Photomechanical Actuator Membranes" @default.
- W4281714250 cites W1554553734 @default.
- W4281714250 cites W1964285604 @default.
- W4281714250 cites W1975225288 @default.
- W4281714250 cites W1977518783 @default.
- W4281714250 cites W1988704517 @default.
- W4281714250 cites W2015893349 @default.
- W4281714250 cites W2024665490 @default.
- W4281714250 cites W2032758048 @default.
- W4281714250 cites W2039042053 @default.
- W4281714250 cites W2045102664 @default.
- W4281714250 cites W2053669956 @default.
- W4281714250 cites W2063660832 @default.
- W4281714250 cites W2077367065 @default.
- W4281714250 cites W2078412961 @default.
- W4281714250 cites W2081199945 @default.
- W4281714250 cites W2081731065 @default.
- W4281714250 cites W2104135264 @default.
- W4281714250 cites W2114963672 @default.
- W4281714250 cites W2118187909 @default.
- W4281714250 cites W2131663231 @default.
- W4281714250 cites W2134382317 @default.
- W4281714250 cites W2143011344 @default.
- W4281714250 cites W2154112901 @default.
- W4281714250 cites W2160142118 @default.
- W4281714250 cites W2183002639 @default.
- W4281714250 cites W2317581351 @default.
- W4281714250 cites W2318340736 @default.
- W4281714250 cites W2318921584 @default.
- W4281714250 cites W2319228557 @default.
- W4281714250 cites W2319520381 @default.
- W4281714250 cites W2321077391 @default.
- W4281714250 cites W2327528212 @default.
- W4281714250 cites W2327777886 @default.
- W4281714250 cites W2328583773 @default.
- W4281714250 cites W2522503992 @default.
- W4281714250 cites W2621219432 @default.
- W4281714250 cites W2695293459 @default.
- W4281714250 cites W2788655336 @default.
- W4281714250 cites W2805956980 @default.
- W4281714250 cites W2807338173 @default.
- W4281714250 cites W2807769035 @default.
- W4281714250 cites W2908989458 @default.
- W4281714250 cites W2925773523 @default.
- W4281714250 cites W2951251488 @default.
- W4281714250 cites W3004720479 @default.
- W4281714250 cites W3027058706 @default.
- W4281714250 cites W3081248812 @default.
- W4281714250 cites W3090369813 @default.
- W4281714250 cites W3122125856 @default.
- W4281714250 cites W3123051359 @default.
- W4281714250 cites W3138283701 @default.
- W4281714250 cites W3211606364 @default.
- W4281714250 cites W3212153683 @default.
- W4281714250 doi "https://doi.org/10.1021/acsami.2c04112" @default.
- W4281714250 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/35657939" @default.
- W4281714250 hasPublicationYear "2022" @default.
- W4281714250 type Work @default.
- W4281714250 citedByCount "3" @default.
- W4281714250 countsByYear W42817142502023 @default.
- W4281714250 crossrefType "journal-article" @default.
- W4281714250 hasAuthorship W4281714250A5021098993 @default.
- W4281714250 hasAuthorship W4281714250A5022391004 @default.
- W4281714250 hasAuthorship W4281714250A5030077939 @default.
- W4281714250 hasAuthorship W4281714250A5040684383 @default.
- W4281714250 hasAuthorship W4281714250A5075125367 @default.
- W4281714250 hasAuthorship W4281714250A5082339689 @default.
- W4281714250 hasConcept C104779481 @default.
- W4281714250 hasConcept C154945302 @default.
- W4281714250 hasConcept C159985019 @default.
- W4281714250 hasConcept C171250308 @default.
- W4281714250 hasConcept C172707124 @default.
- W4281714250 hasConcept C192562407 @default.
- W4281714250 hasConcept C27019838 @default.
- W4281714250 hasConcept C2780258612 @default.
- W4281714250 hasConcept C41008148 @default.
- W4281714250 hasConcept C41625074 @default.
- W4281714250 hasConcept C54355233 @default.
- W4281714250 hasConcept C81180622 @default.
- W4281714250 hasConcept C82714645 @default.
- W4281714250 hasConcept C86803240 @default.
- W4281714250 hasConcept C87210426 @default.
- W4281714250 hasConceptScore W4281714250C104779481 @default.
- W4281714250 hasConceptScore W4281714250C154945302 @default.
- W4281714250 hasConceptScore W4281714250C159985019 @default.
- W4281714250 hasConceptScore W4281714250C171250308 @default.
- W4281714250 hasConceptScore W4281714250C172707124 @default.
- W4281714250 hasConceptScore W4281714250C192562407 @default.