Bio-Inspired nacre-like nanolignocellulose-poly (vinyl alcohol)-TiO2 composite with superior mechanical and photocatalytic properties
Abstract Nacre, the gold standard for biomimicry, provides an excellent example and guideline for assembling high-performance composites. Inspired by the layered structure and extraordinary strength and toughness of natural nacre, nacre-like nanolignocellulose/poly (vinyl alcohol)/TiO2 composites po...
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Nature Portfolio
2017
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oai:doaj.org-article:f61755e624ae428693c9bd9ae74ef7332021-12-02T11:40:34ZBio-Inspired nacre-like nanolignocellulose-poly (vinyl alcohol)-TiO2 composite with superior mechanical and photocatalytic properties10.1038/s41598-017-02082-82045-2322https://doaj.org/article/f61755e624ae428693c9bd9ae74ef7332017-05-01T00:00:00Zhttps://doi.org/10.1038/s41598-017-02082-8https://doaj.org/toc/2045-2322Abstract Nacre, the gold standard for biomimicry, provides an excellent example and guideline for assembling high-performance composites. Inspired by the layered structure and extraordinary strength and toughness of natural nacre, nacre-like nanolignocellulose/poly (vinyl alcohol)/TiO2 composites possessed the similar layered structure of natural nacre were constructed through hot-pressing process. Poly (vinyl alcohol) and TiO2 nanoparticles have been used as nanofillers to improve the mechanical performance and synchronously endow the superior photocatalytic activity of the composites. This research would be provided a promising candidate for the photooxidation of volatile organic compounds also combined with outstanding mechanical property.Yipeng ChenHanwei WangBaokang DangYe XiongQiufang YaoChao WangQingfeng SunChunde JinNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 7, Iss 1, Pp 1-9 (2017) |
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Medicine R Science Q Yipeng Chen Hanwei Wang Baokang Dang Ye Xiong Qiufang Yao Chao Wang Qingfeng Sun Chunde Jin Bio-Inspired nacre-like nanolignocellulose-poly (vinyl alcohol)-TiO2 composite with superior mechanical and photocatalytic properties |
description |
Abstract Nacre, the gold standard for biomimicry, provides an excellent example and guideline for assembling high-performance composites. Inspired by the layered structure and extraordinary strength and toughness of natural nacre, nacre-like nanolignocellulose/poly (vinyl alcohol)/TiO2 composites possessed the similar layered structure of natural nacre were constructed through hot-pressing process. Poly (vinyl alcohol) and TiO2 nanoparticles have been used as nanofillers to improve the mechanical performance and synchronously endow the superior photocatalytic activity of the composites. This research would be provided a promising candidate for the photooxidation of volatile organic compounds also combined with outstanding mechanical property. |
format |
article |
author |
Yipeng Chen Hanwei Wang Baokang Dang Ye Xiong Qiufang Yao Chao Wang Qingfeng Sun Chunde Jin |
author_facet |
Yipeng Chen Hanwei Wang Baokang Dang Ye Xiong Qiufang Yao Chao Wang Qingfeng Sun Chunde Jin |
author_sort |
Yipeng Chen |
title |
Bio-Inspired nacre-like nanolignocellulose-poly (vinyl alcohol)-TiO2 composite with superior mechanical and photocatalytic properties |
title_short |
Bio-Inspired nacre-like nanolignocellulose-poly (vinyl alcohol)-TiO2 composite with superior mechanical and photocatalytic properties |
title_full |
Bio-Inspired nacre-like nanolignocellulose-poly (vinyl alcohol)-TiO2 composite with superior mechanical and photocatalytic properties |
title_fullStr |
Bio-Inspired nacre-like nanolignocellulose-poly (vinyl alcohol)-TiO2 composite with superior mechanical and photocatalytic properties |
title_full_unstemmed |
Bio-Inspired nacre-like nanolignocellulose-poly (vinyl alcohol)-TiO2 composite with superior mechanical and photocatalytic properties |
title_sort |
bio-inspired nacre-like nanolignocellulose-poly (vinyl alcohol)-tio2 composite with superior mechanical and photocatalytic properties |
publisher |
Nature Portfolio |
publishDate |
2017 |
url |
https://doaj.org/article/f61755e624ae428693c9bd9ae74ef733 |
work_keys_str_mv |
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1718395618813018112 |