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通过简单的冷冻干燥和后交联方法制备的不可燃藻酸盐纳米复合气凝胶

Nonflammable Alginate Nanocomposite Aerogels Prepared by a Simple Freeze-Drying and Post-Cross-Linking Method.

作者信息

Shang Ke, Liao Wang, Wang Juan, Wang Yu-Tao, Wang Yu-Zhong, Schiraldi David A

机构信息

Center for Degradable and Flame-Retardant Polymeric Materials, National Engineering Laboratory of Eco-Friendly Polymeric Materials (Sichuan), State Key Laboratory of Polymer Materials Engineering, College of Chemistry, Sichuan University , Chengdu 610064, China.

Department of Macromolecular Science and Engineering, Case Western Reserve University , Cleveland, Ohio 44106-7202, United States.

出版信息

ACS Appl Mater Interfaces. 2016 Jan 13;8(1):643-50. doi: 10.1021/acsami.5b09768. Epub 2015 Dec 24.

Abstract

Nonflammable materials based on renewable ammonium alginate and nano fillers (nanoscale magnesium hydroxide, nanoscale aluminum hydroxide, layered double hydroxide, sodium montmorillonite, and Kaolin) were fabricated through a simple, environmentally friendly freeze-drying process, in which water was used as a solvent. A simple and economic post-cross-linking method was used to obtain homogeneous samples. The microstructure of the cross-linked alginate aerogels show three-dimensional networks. These materials exhibit low densities (0.064-0.116 g cm(-3)), low thermal conductivities (0.024-0.046 W/m K), and useful mechanical strengths (0.7-3.5 MPa). The aerogels also exhibit high thermal stabilities and achieve inherent nonflammability with limiting oxygen indexes (LOI) higher than 60. Related properties were conducted and analyzed by cone calorimeter (CC), thermogravimetric analysis (TGA), scanning electron microscopy (SEM), and X-ray photoelectron spectroscopy (XPS). These results combine to suggest promising prospects for use of these aerogel nanocomposites in a range of applications.

摘要

基于可再生海藻酸铵和纳米填料(纳米级氢氧化镁、纳米级氢氧化铝、层状双氢氧化物、钠蒙脱石和高岭土)的非易燃材料通过一种简单、环保的冷冻干燥工艺制备而成,该工艺以水作为溶剂。采用一种简单且经济的后交联方法来获得均匀的样品。交联海藻酸气凝胶的微观结构呈现三维网络。这些材料具有低密度(0.064 - 0.116 g/cm³)、低导热率(0.024 - 0.046 W/m·K)以及有用的机械强度(0.7 - 3.5 MPa)。气凝胶还具有高的热稳定性,并通过高于60的极限氧指数(LOI)实现了固有非易燃性。通过锥形量热仪(CC)、热重分析(TGA)、扫描电子显微镜(SEM)和X射线光电子能谱(XPS)对相关性能进行了测试和分析。这些结果共同表明这些气凝胶纳米复合材料在一系列应用中具有广阔的应用前景。

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