Structural materials with afterglow room temperature phosphorescence activated by lignin oxidation

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作者
Keliang Wan
Bing Tian
Yingxiang Zhai
Yuxuan Liu
He Wang
Shouxin Liu
Shujun Li
Wenpeng Ye
Zhongfu An
Changzhi Li
Jian Li
Tony D. James
Zhijun Chen
机构
[1] Northeast Forestry University,Engineering Research Center of Advanced Wooden Materials and Key Laboratory of Bio
[2] Ministry of Education,based Material Science & Technology
[3] Chinese Academy of Sciences,CAS Key Laboratory of Science and Technology on Applied Catalysis, Dalian Institute of Chemical Physics
[4] Nanjing Tech University,Key Laboratory of Flexible Electronics & Institute of Advanced Materials
[5] University of Bath,Department of Chemistry
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摘要
Sustainable afterglow room temperature phosphorescence (RTP) materials, especially afterglow RTP structural materials, are crucial but remain difficult to achieve. Here, an oxidation strategy is developed to convert lignin to afterglow materials with a lifetime of ~ 408 ms. Specifically, lignin is oxidized to give aromatic chromophores and fatty acids using H2O2. The aromatic chromophores are locked by a fatty acid-based matrix by hydrogen bonds, triggering enhanced spin orbit coupling and long afterglow emission. More interestingly, motivated by this discovery, an auto fabrication line is built to convert wood (natural structural materials) to wood with afterglow RTP emission (RTP wood) via in situ oxidation of naturally-occurring lignin located in the wood cell walls to oxidized lignin (OL). The as-prepared RTP wood exhibits great potential for the construction of sustainable afterglow furniture. With this research we provide a new strategy to promote the sustainability of afterglow RTP materials and structural materials.
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