State Key Laboratory for Mechanical Behavior of Materials , Xi'an Jiaotong University , Xi'an , 710049 , People's Republic of China.
ACS Nano. 2018 Apr 24;12(4):3103-3111. doi: 10.1021/acsnano.7b08577. Epub 2018 Mar 7.
Ultralight ceramic aerogels with the property combination of recoverable compressibility and excellent high-temperature stability are attractive for use in harsh environments. However, conventional ceramic aerogels are usually constructed by oxide ceramic nanoparticles, and their practical applications have always been limited by the brittle nature of ceramics and volume shrinkage at high temperature. Silicon carbide (SiC) nanowire offers the integrated properties of elasticity and flexibility of one-dimensional (1D) nanomaterials and superior high-temperature thermal and chemical stability of SiC ceramics, which makes it a promising building block for compressible ceramic nanowire aerogels (NWAs). Here, we report the fabrication and properties of a highly porous three-dimensional (3D) SiC NWA assembled by a large number of interweaving 3C-SiC nanowires of 20-50 nm diameter and tens to hundreds of micrometers in length. The SiC NWA possesses ultralow density (∼5 mg cm), excellent mechanical properties of large recoverable compression strain (>70%) and fatigue resistance, refractory property, oxidation and high-temperature resistance, and thermal insulating property (0.026 W m K at room temperature in N). When used as absorbents, the SiC NWAs exhibit an adsorption selectivity of low-viscosity organic solvents with high absorption capacity (130-237 g g). The successful fabrication of such an attractive material may provide promising perspectives to the design and fabrication of other compressible and multifunctional ceramic NWAs.
具有可恢复压缩性和优异高温稳定性的超轻陶瓷气凝胶在苛刻环境下的应用极具吸引力。然而,传统的陶瓷气凝胶通常由氧化物陶瓷纳米颗粒构建,其实际应用一直受到陶瓷的脆性和高温下体积收缩的限制。碳化硅 (SiC) 纳米线具有一维 (1D) 纳米材料的弹性和柔韧性以及 SiC 陶瓷的优异高温热稳定性和化学稳定性的综合特性,使其成为可压缩陶瓷纳米线气凝胶 (NWAs) 的有前途的构建块。在这里,我们报告了由大量相互交织的 20-50nm 直径和数十到数百微米长的 3C-SiC 纳米线组装的高度多孔三维 (3D) SiC NWA 的制造和性能。SiC NWA 具有超低密度(约 5mg cm)、大可恢复压缩应变 (>70%) 和抗疲劳性、耐火性、抗氧化性和耐高温性以及隔热性(室温下为 0.026 W m K 在 N 中)的优异机械性能。作为吸收剂,SiC NWAs 表现出对低粘度有机溶剂的吸附选择性和高吸收能力(130-237gg)。这种有吸引力的材料的成功制造可能为设计和制造其他可压缩和多功能陶瓷 NWAs 提供有前景的视角。