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Hierarchically Porous Ceramics via Direct Writing of Binary Colloidal Gel Foams

机译:通过直接写入二元胶体凝胶泡沫的分层多孔陶瓷

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Hierarchically porous ceramics with a high specific surface area and interconnected porosity may find potential application as particulate filters, catalyst supports, and battery electrodes. We report the design and programmable assembly of cellular ceramic architectures with controlled pore size, volume, and interconnectivity across multiple length scales via direct foam writing. Specifically, binary colloidal gel foams are created that contain entrained bubbles stabilized by the irreversible adsorption of attractive alumina and carbon (porogen) particles at their air–water interfaces. Composition effects on foam ink rheology and printing behavior are investigated. Sintered ceramic foams exhibited specific permeabilities that increased from 2 × 10~(–13) to 1 × 10~(–12) m~(2) and compressive strengths that decreased from 40 to 1 MPa, respectively, with increasing specific interfacial area. Using direct foam writing, 3D ceramic lattices composed of open-cell foam struts were fabricated with tailored mechanical properties and interconnected porosity across multiple length scales.
机译:具有高比表面积和互连孔隙率的分层多孔陶瓷可能会被用作颗粒过滤器、催化剂载体和电池电极。我们报告了多孔陶瓷结构的设计和可编程组装,通过直接泡沫书写,控制孔径、体积和跨多个长度尺度的互连。具体地说,二元胶体凝胶泡沫是通过在空气-水界面上不可逆地吸附有吸引力的氧化铝和碳(致孔剂)颗粒而形成的,其中包含夹带的气泡。研究了组成对泡沫油墨流变性和印刷性能的影响。随着比界面面积的增加,烧结泡沫陶瓷的比渗透率从2×10~(-13)增加到1×10~(-12)m2,抗压强度从40降低到1mpa。采用直接泡沫书写技术,制备了由开孔泡沫支柱组成的三维陶瓷晶格,具有定制的力学性能和跨多个长度尺度的互连孔隙率。

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