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Sustainable Chitin Nanofibrils Provide Outstanding Flame-Retardant Nanopapers

机译:可持续的甲壳素纳米纤维提供出色的阻燃纳米粉

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摘要

Sustainable polysaccharide nanofibrils formed from chitin or cellulose are emerging biobased nanomaterials for advanced materials requiring high mechanical performance, barrier properties, for bioactive materials, or other functionalities. Here, we demonstrate a single-step, waterborne approach to prepare additive-free flame-retardant and self-extinguishing, mechanical high-performance nanopapers based purely on surface-deacetylated chitin nanofibrils (ChNFs). We show that the flammability can be critically reduced by exchanging the counterions, e.g. to the phosphate type, using the respective acid providing electrostatic stabilization in the preparation of the ChNFs. This exchange renders beneficial elemental combinations of high contents of N/P (nitrogen/phosphorus) in the final nanopapers, known to provide outstanding performance in halogen- and heavy metal-free flame-retardant materials. Full fire barrier nanopapers can even be obtained by hybridizing the ChNF with nanoclay. Comprehensive fire retardancy tests, including vertical and horizontal flame tests and microscale cone combustion calorimetry, as well as fire breakthrough tests elucidate excellent flame-retardant properties and high structural integrity when being burned. The intrinsic elemental composition of chitin, containing nitrogen, and the simple modification of the counterions to include phosphorus provides key advantages over related, but flammable nanocellulose materials that often require significant chemical modifications and additives to become fire-retardant. By activating a global food waste, this study presents a critical advance for bioinspired, green, and mechanical high-performance materials with extraordinary flame-retardant and fire barrier properties based on sustainable feedstock, using benign water-based room temperature processing, and by avoiding heavy metals and halogen atoms in their composition.
机译:由几丁质或纤维素形成的可持续多糖纳米纤维是出现生物化的纳米材料,用于需要高机械性能,屏障性能,用于生物活性物质或其他功能的先进材料。在这里,我们证明了一种单步,水性方法,以制备无纯于表面脱乙酰化甲蛋白纳米纤维(CHNFS)的无添加剂阻燃剂和自灭火,机械高性能纳米粉刺。我们表明,通过交换抗衡离子,可以令人难以降低燃烧性。对于磷酸盐型,使用各自的酸提供静电稳定化在制备CHNF。该交易所在最终纳米粉覆盖物中使高含量的N / P(氮/磷)的有益元素组合,已知在卤素和重金属的阻燃材料中提供出色的性能。甚至可以通过将CHNF与纳米粘土杂交来获得全火阻挡纳米粉刺。综合防火试验,包括垂直和水平火焰试验和微观锥形燃烧量热法,以及火灾突破性试验燃烧时阐明了出色的阻燃性和高结构完整性。含氮的内在元素组成,含氮,以及包括磷的抗衡层的简单改性提供了与相关的关键优势,但易燃纳米纤维素材料通常需要显着的化学修饰和添加剂以成为阻燃剂。通过激活全球食物垃圾,本研究提出了基于可持续原料的基于可持续原料的非凡阻燃和防火屏障特性的生物悬浮,绿色和机械高性能材料的关键进展,并使用良性水基室温处理,并通过避免其组成中的重金属和卤素原子。

著录项

  • 来源
    《Nature reviews neuroscience》 |2019年第2期|共11页
  • 作者单位

    Univ Freiburg Inst Macromol Chem Stefan Meier Str 31 D-79104 Freiburg Germany;

    Univ Freiburg Inst Macromol Chem Stefan Meier Str 31 D-79104 Freiburg Germany;

    Univ Freiburg Inst Macromol Chem Stefan Meier Str 31 D-79104 Freiburg Germany;

    DWI Leibniz Inst Interact Mat Forckenbeckstr 50 D-52056 Aachen Germany;

    Tottori Univ Grad Sch Engn Minami Ku 101-4 Koyama Cho Tottori 6808502 Japan;

    Univ Freiburg Inst Macromol Chem Stefan Meier Str 31 D-79104 Freiburg Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经生理学;
  • 关键词

  • 入库时间 2022-08-20 04:23:50

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