材料科学
分散性
微流控
介孔材料
纳米技术
微球
纳米结构
热液循环
多孔性
介孔二氧化硅
形态学(生物学)
纳米颗粒
粒子(生态学)
共聚物
自组装
化学工程
粒径
纳米材料
泰坦(火箭家族)
水热合成
药物输送
多孔介质
介孔有机硅
制作
模板
作者
Juxing Zeng,Hanchen Cao,Kaiyue Sun,Zhuoheng Zhou,Lin Lin Lv,Jikai Chen,Xiangyu Huang,Xiaofei Wang,Bo Zhang
标识
DOI:10.1038/s41467-026-68362-y
摘要
Concurrent precision architecture of morphology and nanostructure in mesoporous microspheres is pivotal for high performance separations. Herein, we develop a template-in-template assembly nanostructuring (TiTAN) strategy to precisely synthesize monodisperse microspheres with ordered mesoporous nanostructure. Microfluidic droplet templating ensures uniform particle morphology (CV = 3%), while structure-directing agents within droplets enable tailored pore configurations, including 2D hexagonal, body-centered cubic, face-centered cubic, and cubic double gyroidal mesostructures. Through regulating hydrothermal conditions, structural parameters can be fined-tuned with 2 Å spatial resolution. By extending this manufacturing capability to a variety of material chemistries, chromatographic materials can now be de novo architectured with rationales, with the performance demonstrated by the solution of a classical separation challenge: resolving critical pairs (whose selectivity, α, infinitely approaching to 1), and with the shortest possible time. Beyond separation medium, the TiTAN strategy also suggests a route towards general synthesis of porous material with precision macroscopic morphology and microscopic nanostructure.
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