具有定制拓扑空心结构的非对称智能纳米车辆的动力学调节界面选择超组装

Dr. Lei Xie, Tianyi Liu, Dr. Yanjun He, Jie Zeng, Dr. Wei Zhang, Qirui Liang, Zilin Huang, Prof. Jinyao Tang, Prof. Kang Liang, Prof. Lei Jiang, Prof. Osamu Terasaki, Prof. Dongyuan Zhao, Prof. Biao Kong
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引用次数: 0

摘要

具有空间和化学特异性的可调结构的空心纳米粒子是一个重要的研究方向。然而,设计和合成具有可控拓扑结构的不对称纳米粒子仍然是一个重大挑战。在这里,展示了一种多功能动力学调节的协同聚合诱导界面选择性超组装策略,以构建一系列具有可调直径,结构和成分的不对称空心多孔复合材料(AHPCs)。前驱体和催化剂的含量可以精确地控制Janus纳米颗粒上贴片的大小和数量。值得注意的是,AHPCs在近红外(NIR)激光照射下表现出优异的光热转换性能。因此,AHPCs被用作近红外光触发的纳米交通工具,货物可以被控制地释放。简而言之,这种通用的超级组装方法为设计各种不对称中空多孔复合材料提供了一种流线型和强大的工具集。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Kinetics-Regulated Interfacial Selective Superassembly of Asymmetric Smart Nanovehicles with Tailored Topological Hollow Architectures

Kinetics-Regulated Interfacial Selective Superassembly of Asymmetric Smart Nanovehicles with Tailored Topological Hollow Architectures

Hollow nanoparticles featuring tunable structures with spatial and chemical specificity are of fundamental interest. However, it remains a significant challenge to design and synthesize asymmetric nanoparticles with controllable topological hollow architecture. Here, a versatile kinetics-regulated cooperative polymerization induced interfacial selective superassembly strategy is demonstrated to construct a series of asymmetric hollow porous composites (AHPCs) with tunable diameters, architectures and components. The size and number of patches on Janus nanoparticles can be precisely manipulated by the precursor and catalyst content. Notably, AHPCs exhibit excellent photothermal conversion performance under the irradiation of a near infrared (NIR) laser. Thus, AHPCs are utilized as NIR light-triggered nanovehicles and cargos can be controllably released. In brief, this versatile superassembly approach offers a streamlined and powerful toolset to design diverse asymmetric hollow porous composites.

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来源期刊
Angewandte Chemie
Angewandte Chemie 化学科学, 有机化学, 有机合成
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