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Phosphorus containing group and lignin toward intrinsically flame retardant cellulose nanofibril-based film with enhanced mechanical properties

机译:含磷基团和木质素朝向本质阻燃纤维素纳米纤维的薄膜,具有增强的机械性能

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摘要

Cellulose-based film material, due to its remarkable physicochemical properties, environmentally friend and low cost, has been widely applied in many high-end areas. However, the lack of functional properties (e.g., flame resistance) except poor mechanical performance severely hinders their further applications. Herein, bamboo-based phosphorylated cellulose nanofibrils (B-PCNFs) were prepared through a simple two-step method composed of phosphorylation and mechanical grinding process. The resultant film prepared via solvent casting process shows an excellent mechanical strength of 115.9 MPa, remarkable elongation at break of 53.1%, high Young's modulus of 2.5 GPa and impressive work of fracture up to 41.8 MJ m(-3), respectively, which should be contributed to the formation of dense and homogeneous polymer networks reinforced by enhanced multiple interactions. When burned against the flame of alcohol lamp (700-800 degrees C), BHL-PCNF film also delivers appealing structural stability even over 25s, demonstrating a prominent flame resistance. Meanwhile, compared to original one, the peak heat release rate (PHRR) and total heat released (THR) of BHL-PCNF film produce a dramatical reduction, i.e., 87.3% and 86.6% for PHRR and THR, respectively. Based on the evolution of morphological and chemical structure, the highly improved flame resistance is strongly contributed to the synergy of phosphorus containing group and lignin, resulting in a protective layer composed of PxOy compound and carbon layer. The proposed mechanism for the enhanced flame retardant property is also declared and clarified. Thereby, this phosphorylated cellulose-based film that integrates outstanding mechanical performance and excellent intrinsically flame resistance holds promising potential candidate in practical applications, such as flame-retardant packaging materials.
机译:基于纤维素的薄膜材料,由于其卓越的物理化学性质,环保性和低成本,已广泛应用于许多高端区域。然而,除了机械性能差的功能性质(例如,阻燃)缺乏功能性质(例如,阻燃)严重阻碍了其进一步的应用。这里,通过构成的磷酸化和机械研磨工艺组成的简单两步方法制备竹制磷酸化纤维素纳米纤维(B-PCNF)。通过溶剂浇铸方法制备的所得薄膜显示出115.9MPa的优异机械强度,突破的显着伸长率为53.1%,杨氏模量高2.5GPa,分别令人印象深刻的骨折工作,高达41.8 MJ M(-3),应该有助于通过增强多种相互作用来形成致密和均匀的聚合物网络。当燃烧含酒精灯的火焰(700-800摄氏度)时,即使超过25秒,BHL-PCNF薄膜也会提供吸引力的结构稳定性,表明了突出的阻燃性。同时,与原版相比,BHL-PCNF薄膜的峰值热释放率(PHRR)和总热量(THR)分别产生显着降低,即PHRR和THR的显着减少。基于形态学和化学结构的演变,高度提高的阻燃性强烈促成了含磷组和木质素的协同作用,导致由Pxoy化合物和碳层组成的保护层。还宣布并澄清了增强阻燃性财产的提出机制。因此,这种基于磷酸化的纤维素的薄膜,其整合出突出的机械性能和优异的本质阻燃性,在实际应用中保持有希望的潜在候选者,例如阻燃包装材料。

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  • 来源
    《Composites. B, Engineering》 |2021年第1期|108699.1-108699.12|共12页
  • 作者单位

    Zhejiang A&F Univ Sch Engn Hangzhou 311300 Peoples R China;

    Zhejiang A&F Univ Sch Engn Hangzhou 311300 Peoples R China|Zhejiang Prov Collaborat Innovat Ctr Bamboo Resou Hangzhou 311300 Peoples R China;

    Zhejiang A&F Univ Sch Engn Hangzhou 311300 Peoples R China|Zhejiang Prov Collaborat Innovat Ctr Bamboo Resou Hangzhou 311300 Peoples R China;

    Zhejiang A&F Univ Sch Engn Hangzhou 311300 Peoples R China;

    Zhejiang A&F Univ Sch Engn Hangzhou 311300 Peoples R China;

    Zhejiang A&F Univ Sch Engn Hangzhou 311300 Peoples R China;

    Zhejiang A&F Univ Sch Engn Hangzhou 311300 Peoples R China;

    Univ Tennessee Ctr Renewable Carbon Knoxville TN 37996 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Phosphorylated cellulose nanofibrils; Film; Mechanical properties; Flame retardancy; Synergistic effect;

    机译:磷酸化纤维素纳米纤维;薄膜;机械性能;阻燃性;协同效应;
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