Poplar-based thermochromic composites that change colour at 38 °C to 46 °C
Abstract The red thermochromic dye (R-TD) is the tetradecanoic acid tetradecyl ester (C28H56O2) and methyl red (C15H15N3O2) mixture that has better permeability enabling its infiltration into wood and better thermochromic properties changing its colour at above 30 °C after about 0.5 min. Thicker pop...
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2021-08-01
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doaj-ed7ac595a2ce4ae59c52738e0fb046522021-08-22T11:25:53ZengNature Publishing GroupScientific Reports2045-23222021-08-011111910.1038/s41598-021-95274-2Poplar-based thermochromic composites that change colour at 38 °C to 46 °CWeihua Zou0Zimu Li1Zhangheng Wang2Delin Sun3Pingfang Zhang4Central South University of Forestry and TechnologyCentral South University of Forestry and TechnologyCentral South University of Forestry and TechnologyCentral South University of Forestry and TechnologyCentral South University of Forestry and TechnologyAbstract The red thermochromic dye (R-TD) is the tetradecanoic acid tetradecyl ester (C28H56O2) and methyl red (C15H15N3O2) mixture that has better permeability enabling its infiltration into wood and better thermochromic properties changing its colour at above 30 °C after about 0.5 min. Thicker poplar-based thermochromic composite specimens (R-PTC, thickness: 5.0 mm) were prepared by filling the R-TD into pre-treated poplar veneer (thickness: 5.0 mm) thus allowing better penetration after pre-treatment. After R-TD infiltration, the R-PTC samples were covered by polypropylene wax for preventing R-TD from overflowing from R-PTC under the action of phase-change temperature. This R-PTC, whose colour can change from light-red to dark-red at 38 °C to 46 °C, can recover to light-red at below 38 °C after about 14 h, and the peak of colour change is at about 42 °C. R-PTC will be suitable for materials used in thermochromic furniture that can indicate the surface temperature to potential users, thus allowing assessment of likely scalded pain when used the furniture.https://doi.org/10.1038/s41598-021-95274-2 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Weihua Zou Zimu Li Zhangheng Wang Delin Sun Pingfang Zhang |
spellingShingle |
Weihua Zou Zimu Li Zhangheng Wang Delin Sun Pingfang Zhang Poplar-based thermochromic composites that change colour at 38 °C to 46 °C Scientific Reports |
author_facet |
Weihua Zou Zimu Li Zhangheng Wang Delin Sun Pingfang Zhang |
author_sort |
Weihua Zou |
title |
Poplar-based thermochromic composites that change colour at 38 °C to 46 °C |
title_short |
Poplar-based thermochromic composites that change colour at 38 °C to 46 °C |
title_full |
Poplar-based thermochromic composites that change colour at 38 °C to 46 °C |
title_fullStr |
Poplar-based thermochromic composites that change colour at 38 °C to 46 °C |
title_full_unstemmed |
Poplar-based thermochromic composites that change colour at 38 °C to 46 °C |
title_sort |
poplar-based thermochromic composites that change colour at 38 °c to 46 °c |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2021-08-01 |
description |
Abstract The red thermochromic dye (R-TD) is the tetradecanoic acid tetradecyl ester (C28H56O2) and methyl red (C15H15N3O2) mixture that has better permeability enabling its infiltration into wood and better thermochromic properties changing its colour at above 30 °C after about 0.5 min. Thicker poplar-based thermochromic composite specimens (R-PTC, thickness: 5.0 mm) were prepared by filling the R-TD into pre-treated poplar veneer (thickness: 5.0 mm) thus allowing better penetration after pre-treatment. After R-TD infiltration, the R-PTC samples were covered by polypropylene wax for preventing R-TD from overflowing from R-PTC under the action of phase-change temperature. This R-PTC, whose colour can change from light-red to dark-red at 38 °C to 46 °C, can recover to light-red at below 38 °C after about 14 h, and the peak of colour change is at about 42 °C. R-PTC will be suitable for materials used in thermochromic furniture that can indicate the surface temperature to potential users, thus allowing assessment of likely scalded pain when used the furniture. |
url |
https://doi.org/10.1038/s41598-021-95274-2 |
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