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具有近乎均匀亚微米域的双连续界面堵塞乳液凝胶调节了共溶剂的去除。

Bicontinuous interfacially jammed emulsion gels with nearly uniform sub-micrometer domains regulated co-solvent removal.

作者信息

Wang Tiancheng, Riggleman Robert A, Lee Daeyeon, Stebe Kathleen J

机构信息

Department of Chemical and Biomolecular Engineering, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

Mater Horiz. 2023 Apr 3;10(4):1385-1391. doi: 10.1039/d2mh01479c.

Abstract

Porous materials possess numerous useful functions because of their high surface area and ability to modulate the transport of heat, mass, fluids, and electromagnetic waves. Unlike highly ordered structures, disordered porous structures offer the advantages of ease of fabrication and high fault tolerance. Bicontinuous interfacially jammed emulsion gels (bijels) are kinetically trapped disordered biphasic materials that can be converted to porous materials with tunable features. Current methods of bijel fabrication result in domains that are micrometers or larger, and non-uniform in size, limiting their surface area, mechanical strength, and interaction with electromagnetic waves. In this work, scalable synthesis of bijels with uniform and sub-micrometer domains is achieved a two-step solvent removal process. The resulting bijels are characterized quantitatively to verify the uniformity and sub-micrometer scale of the domains. Moreover, these bijels have structures that resemble the microstructure of the scale of the white beetle Cyphochilus. We find that such bijel films with relatively small thicknesses (<150 μm) exhibit strong solar reflectance as well as high brightness and whiteness in the visible range. Considering their scalability in manufacturing, we believe that VIPS-STRIPS bijels have great potential in large-scale applications including passive cooling, solar cells, and light emitting diodes (LEDs).

摘要

多孔材料由于其高表面积以及调节热、质量、流体和电磁波传输的能力而具有许多有用的功能。与高度有序的结构不同,无序多孔结构具有易于制造和高容错性的优点。双连续界面堵塞乳液凝胶(bijels)是动力学捕获的无序双相材料,可以转化为具有可调特征的多孔材料。目前的bijel制造方法会产生微米级或更大尺寸的区域,且尺寸不均匀,这限制了它们的表面积、机械强度以及与电磁波的相互作用。在这项工作中,通过两步溶剂去除工艺实现了具有均匀亚微米区域的bijel的可扩展合成。对所得的bijels进行定量表征,以验证区域的均匀性和亚微米尺度。此外,这些bijels具有类似于白色甲虫Cyphochilus鳞片微观结构的结构。我们发现,这种厚度相对较小(<150μm)的bijel薄膜在可见光范围内表现出强烈的太阳反射率以及高亮度和白度。考虑到它们在制造方面的可扩展性,我们相信VIPS-STRIPS bijels在包括被动冷却、太阳能电池和发光二极管(LED)在内的大规模应用中具有巨大潜力。

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