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Ambient Pressure Drying of Freeze-Cast Ceramics from Aqueous Suspension

Gao, Yu-Cheng; Qin, Bing; Wen, Shao-Meng; You, Yang; Xue, Jingzhe; Yin, Yi-Chen; Ma, Zhi-Yuan; Dong, Kang; Meng, Yu-Feng; Manke, Ingo; Zhang, Si-Chao; Yu, Zhi-Long*; Yu, Shu-Hong*
Science Citation Index Expanded
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摘要

Freeze-casting has been wildly exploited to construct porous ceramics but usually requires costly and demanding freeze-drying (high vacuum, size limit, and supercooled chamber), which can be avoided by the ambient pressure drying (APD) technique. However, applying APD to freeze-cast ceramic based on an aqueous suspension is still challenging due to inert surface chemistry. Herein, a modified APD strategy is developed to improve the drying process of freeze-cast ceramics by exploiting the simultaneous ice etching, ionic cross-linking, and solvent exchange under mild conditions (-10-0 degrees C, ambient pressure). This versatile strategy is applicable to various ceramic species, metal ions, and freezing techniques. The incorporated metal ions not only enhance liquid-phase sintering, producing ceramics with higher density and mechanical properties than freeze-cast counterparts, but also render customizable coloration and antibacterial property. The cost-/time-efficient APD is promising for mass production and even successive production of large-size freeze-cast ceramics that exceed the size of commercial freeze-dryers.

关键词

Ambient pressure drying freeze-cast ceramic ionic cross-linking solvent exchange large-sizesample