4.8 Article

Structural materials with afterglow room temperature phosphorescence activated by lignin oxidation

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NATURE COMMUNICATIONS
卷 13, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41467-022-33273-1

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资金

  1. National Natural Science Foundation of China [31890774, 21878288]
  2. National Key R&D Program of China [2020YFA0709900]
  3. Natural Science Funding of Heilong Jiang province for Excellent Young Scholar [YQ2020C017]
  4. Science and Technology Bureau of Dalian city [2021RT04]
  5. Royal Society
  6. open Research Fund of the School of Chemistry and Chemical Engineering
  7. Henan Normal University [2020ZD01]

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In this study, an oxidation strategy was developed to convert lignin into long-lived phosphorescent materials. By modifying the structure of wood, sustainable wood materials with afterglow emission were successfully prepared, providing a new approach for the development of sustainable phosphorescent materials and structural materials.
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 similar to 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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