首页> 外文期刊>Journal of Materials Science >Low-density, high-strength and large-scaled monolithic carbon aerogels fabricated via modified ambient pressure drying
【24h】

Low-density, high-strength and large-scaled monolithic carbon aerogels fabricated via modified ambient pressure drying

机译:通过改进的环境压力干燥制备的低密度、高强度和大规模单片碳气凝胶

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Abstract A low-density, high-specific surface area, high-strength and large-sized carbon aerogel preparation process is a key technology in the industrial application of aerogel science. In recent years, ingenious nanostructure design, along with salt templates, drying optimization and other strategies have been applied by numerous scientists. As a result, the specific surface area of carbon aerogel has significantly increased and the density reduced. However, the preparation of high-strength and large-sized intact carbon aerogel at low cost is still a challenge due to the limitations of thermal treatment equipment and drying process. In this study, we propose an improved preparation method of ambient pressure solvothermal polymerization and auxiliary ambient pressure drying by the principle of acid–base two-step catalysis using resorcinol and furfural as raw materials. Resultantly, the condensation and cross-linking reaction process is stabilized by the ambient pressure solvothermal polymerization, which effectively reinforces the interfacial bonding between primary particles and forms a high-strength skeleton. The breaking strength of the aerogels reach up to 9.74 MPa. The auxiliary ambient pressure drying can greatly reduce the drying shrinkage and density of the aerogel and solve the problems of drying deformation and cracking of large-sized carbon aerogel. The drying shrinkage and density of the obtained carbon aerogels are reduced to 3.22 and 0.203 g/cm3, respectively, and the specific surface area reaches 675.057 m2/g. Moreover, the large-sized sample (70 mm (d) × 25 mm (h)) can also be prepared by this method since the strength of skeleton can resist the capillary force of pore structure, and the nanoporous architecture can be perfectly retained. Therefore, this study provides a new preparation scheme for the industrial large-scale production and application of carbon aerogel.
机译:摘要 一种低密度、高比表面积、高强度、大尺寸的碳气凝胶制备工艺是气凝胶科学产业化应用的关键技术。近年来,巧妙的纳米结构设计,以及盐模板、干燥优化和其他策略已被众多科学家应用。结果,碳气凝胶的比表面积显著增加,密度降低。然而,由于热处理设备和干燥工艺的局限性,低成本制备高强度、大尺寸完整的碳气凝胶仍然是一个挑战。本研究提出了一种以间苯二酚和糠醛为原料的酸碱两步催化原理,改进的常压溶剂热聚合和辅助常压干燥的制备方法。结果,通过常压溶剂热聚合法稳定了缩合和交联反应过程,有效地加强了初级颗粒之间的界面键合,形成了高强度骨架。气凝胶的断裂强度可达9.74 MPa。辅助常压干燥可以大大降低气凝胶的干燥收缩率和密度,解决大尺寸碳气凝胶的干燥变形和开裂问题。所制得的碳气凝胶的干燥收缩率和密度分别降低到3.22%和0.203 g/cm3,比表面积达到675.057 m2/g。此外,由于骨架的强度可以抵抗孔隙结构的毛细作用力,并且可以完美地保留纳米多孔结构,因此也可以通过这种方法制备大尺寸样品(70 mm (d) × 25 mm (h))。因此,本研究为碳气凝胶的工业规模化生产和应用提供了新的制备方案。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号