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- W3004773405 endingPage "1093" @default.
- W3004773405 startingPage "1088" @default.
- W3004773405 abstract "Supramolecular co-assembling terpyridine-derivatives with nanoclay (LP) are exploited to acquire efficient amorphous room-temperature phosphorescence (RTP). Experimental and theoretical investigations reveal that this co-assembly not only brings about a configuration transformation from the trans-trans (a) to the cis-trans (a'') form via the protonating process, significantly narrowing the singlet-triplet energy gap, thereby effectively facilitating the single-triplet ISC processes, but also well protects the triplet state and suppresses the nonradiative transitions via restricting molecular rotation and vibration by the hydrogen-bond interactions between them. Additionally, the flexible and transparent films, through co-assembling 1@LP (or 2@LP) with polyvinyl alcohol (PVA), also display excellent phosphorescence performance. Owing to their distinctive RTP performances, the RH sensing and high-level data encryption are achieved." @default.
- W3004773405 created "2020-02-14" @default.
- W3004773405 creator A5014561333 @default.
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- W3004773405 creator A5069858916 @default.
- W3004773405 creator A5078325730 @default.
- W3004773405 creator A5090673855 @default.
- W3004773405 date "2020-03-05" @default.
- W3004773405 modified "2023-10-16" @default.
- W3004773405 title "Proton‐Activated Amorphous Room‐Temperature Phosphorescence for Humidity Sensing and High‐Level Data Encryption" @default.
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- W3004773405 doi "https://doi.org/10.1002/asia.201901747" @default.
- W3004773405 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/32017408" @default.
- W3004773405 hasPublicationYear "2020" @default.
- W3004773405 type Work @default.