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基于聚合物立方液晶相的多功能合成平台用于制备高度有序的纳米多孔金属氧化物颗粒库。

A Versatile Synthesis Platform Based on Polymer Cubosomes for a Library of Highly Ordered Nanoporous Metal Oxides Particles.

作者信息

Xie Wenhe, Huang Xinyu, Zhu Chengcheng, Jiang Fengluan, Deng Yu, Yu Bingjie, Wu Limin, Yue Qin, Deng Yonghui

机构信息

Department of Chemistry, Shanghai Stomatological Hospital & School of Stomatology, State Key Laboratory of Molecular Engineering of Polymers, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, Collaborative Innovation Center of Chemistry for Energy Material (iChEM), Fudan University, Shanghai, 200433, China.

State Key Lab of Transducer Technology, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai, 200050, China.

出版信息

Adv Mater. 2024 Jul;36(27):e2313920. doi: 10.1002/adma.202313920. Epub 2024 Apr 28.

Abstract

Polymer cubosomes (PCs) have well-defined inverse bicontinuous cubic mesophases formed by amphiphilic block copolymer bilayers. The open hydrophilic channels, large periods, and robust physical properties of PCs are advantageous to many host-guest interactions and yet not fully exploited, especially in the fields of functional nanomaterials. Here, the self-assembly of poly(ethylene oxide)-block-polystyrene block copolymers is systematically investigated and a series of robust PCs is developed via a cosolvent method. Ordered nanoporous metal oxide particles are obtained by selectively filling the hydrophilic channels of PCs via an impregnation strategy, followed by a two-step thermal treatment. Based on this versatile PC platform, the general synthesis of a library of ordered porous particles with different pore structures , tunable large pore size (18-78 nm), high specific surface areas (up to 123.3 m g for WO) and diverse framework compositions, such as transition and non-transition metal oxides, rare earth chloride oxides, perovskite, pyrochlore, and high-entropy metal oxides is demonstrated. As typical materials obtained via this method, ordered porous WO particles have the advantages of open continuous structure and semiconducting properties, thus showing superior gas sensing performances toward hydrogen sulfide.

摘要

聚合物立方相液晶纳米粒(PCs)具有由两亲性嵌段共聚物双层形成的明确的反相双连续立方中间相。PCs的开放亲水通道、大周期和强大的物理性质有利于许多主客体相互作用,但尚未得到充分利用,尤其是在功能纳米材料领域。在此,系统研究了聚环氧乙烷-嵌段-聚苯乙烯嵌段共聚物的自组装,并通过助溶剂法制备了一系列稳定的PCs。通过浸渍策略选择性地填充PCs的亲水通道,然后进行两步热处理,获得了有序的纳米多孔金属氧化物颗粒。基于这个通用的PC平台,展示了具有不同孔结构、可调大孔径(18-78nm)、高比表面积(WO高达123.3m²/g)以及多种骨架组成(如过渡和非过渡金属氧化物、稀土氯氧化物、钙钛矿、烧绿石和高熵金属氧化物)的有序多孔颗粒库的通用合成方法。作为通过该方法获得的典型材料,有序多孔WO颗粒具有开放连续结构和半导体性质的优点,因此对硫化氢表现出优异的气敏性能。

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