材料科学
化学工程
溶剂
干扰
相(物质)
对偶(语法数字)
有机溶剂
复合材料
过程(计算)
分离(统计)
聚合物
工作(物理)
作者
Minke Yang,Guang Gao,Xin Shu,Ye Lu,Orlando J. Rojas
标识
DOI:10.1021/acsami.6c04985
摘要
Bicontinuous nanoparticle-stabilized emulsions are formed by mixing two immiscible liquids with a cosolvent, followed by inducing phase separation within the spinodal regime and kinetically arresting the evolving morphology with colloidal nanoparticles. Here, we demonstrate that biobased, rod-like cellulose nanocrystals (CNCs) can stabilize bicontinuous emulsion gels at a low particle loading of 3 wt % through combined inter- and intraphase jamming, yielding characteristic domain sizes of approximately 10 μm. The use of 1-propanol as a cosolvent promotes CNC dispersion prior to and during solvent transfer, enabling the continuous production of CNC-stabilized bicontinuous emulsion gels as the segmented fibers (1-2 cm) and continuous filaments exceeding 25 cm in length. A key finding is that surfactant-specific access to near-neutral wetting is identified as a practical control lever for CNC, and DDAB enables the robust filament formation. The resulting porous, biphasic CNC network supports efficient crossflow mass transfer, providing a promising platform for interfacial transport and reaction processes. This work established a scalable route to sustainable material design from anisotropic nanoparticles.
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