Light-Responsive Nanoemulsion-Guided Assembly of Honeycomb Hierarchically Macro/mesoporous Metal–Organic Framework Nanoarchitectures

IF 12.1 2区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Small Pub Date : 2025-03-03 DOI:10.1002/smll.202411525
Hui Lv, Nan Li, Jieling Zhang, Yawen Hou, Xinyu Fan, Xiaoran Liu, Fuquan Dang
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Abstract

Despite that soft template pathways are promising avenues for synthesizing hierarchically porous metal–organic framework (MOF) nanoparticles, smart-responsive-directed assembly strategies have been rarely extended to fabricate well-defined hierarchical macro/mesoporosities in MOF architectures. Herein, a novel light-responsive nanoemulsion-guided strategy is reported to prepare honeycomb hierarchically porous UiO-66 nanoparticles (UiO-66 HHPNPs) with macro/mesoporosities transition using poly(ethylene oxide-b-propylene oxide-b-ethylene oxide) (F127, PEO106PPO70PEO106) and azobenzene (Azo) as a light-responsive soft template. By facilely tuning the concentration of Azo and light irradiation (e.g., 365 nm ultraviolet light), the assembled UiO-66 HHPNPs varies from microporous architectures to macro/mesoporous dendritic architectures with an average pore size expanding from 14 to 135 nm. It is worth noting that the cis–trans configuration transformation of Azo under the irradiation of 475 nm blue light results in the shrunken micelles and thus rapid template removal from macro/mesoporous architectures of UiO-66 HHPNPs. Additionally, a light-responsive soft template can also alter the pore structures of other MOF nanoparticles (e.g., zirconium-based UiO-66). Importantly, the resultant macro/mesoporous UiO-66 HHPNPs reveal superior catalytic activity than the microporous UiO-66 HHPNPs in the 3,3′,5,5′-tetramethylbenzidine catalytic reaction system. This newfangled light-induced template assembly technique paves an attractive way for the rational design of multimodal macro/mesoporous architectures and thus renders them broad applications.

Abstract Image

蜂窝状宏观/介孔金属-有机骨架纳米结构的光响应纳米乳液引导组装
尽管软模板途径是合成分层多孔金属有机框架(MOF)纳米颗粒的有希望的途径,但智能响应定向组装策略很少扩展到在MOF体系结构中制造明确定义的分层宏观/介孔。本文报道了一种新型的光响应纳米乳液引导策略,以聚(环氧乙烷-b-环氧丙烷-b-环氧乙烷)(F127, PEO106PPO70PEO106)和偶氮苯(Azo)作为光响应软模板,制备了具有宏介孔过渡的蜂窝级多孔UiO-66纳米颗粒(UiO-66 HHPNPs)。通过调节偶氮浓度和光照射(如365 nm紫外光),组装的uuo -66 HHPNPs从微孔结构转变为宏/介孔结构,平均孔径从14 ~ 135 nm不等。值得注意的是,在475 nm蓝光照射下,偶氮的顺反构型转变导致胶束收缩,从而使UiO-66 HHPNPs的宏/介孔结构中的模板快速去除。此外,光响应软模板也可以改变其他MOF纳米颗粒的孔隙结构(例如,锆基UiO-66)。重要的是,在3,3 ',5,5 ' -四甲基联苯胺催化反应体系中,合成的大孔/中孔UiO-66 HHPNPs的催化活性优于微孔UiO-66 HHPNPs。这种新型的光诱导模板组装技术为多模态宏/介孔结构的合理设计铺平了一条有吸引力的道路,从而使其具有广泛的应用前景。
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来源期刊
Small
Small 工程技术-材料科学:综合
CiteScore
17.70
自引率
3.80%
发文量
1830
审稿时长
2.1 months
期刊介绍: Small serves as an exceptional platform for both experimental and theoretical studies in fundamental and applied interdisciplinary research at the nano- and microscale. The journal offers a compelling mix of peer-reviewed Research Articles, Reviews, Perspectives, and Comments. With a remarkable 2022 Journal Impact Factor of 13.3 (Journal Citation Reports from Clarivate Analytics, 2023), Small remains among the top multidisciplinary journals, covering a wide range of topics at the interface of materials science, chemistry, physics, engineering, medicine, and biology. Small's readership includes biochemists, biologists, biomedical scientists, chemists, engineers, information technologists, materials scientists, physicists, and theoreticians alike.
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