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带有中孔的端到端穿孔碳纳米片

End-to-End Pierced Carbon Nanosheets with Meso-Holes.

作者信息

Kim Minjun, Nara Hiroki, Asakura Yusuke, Hamada Takashi, Yan Peng, Earnshaw Jacob, An Meng, Eguchi Miharu, Yamauchi Yusuke

机构信息

Australian Institute for Bioengineering and Nanotechnology (AIBN), The University of Queensland, Queensland, 4072, Australia.

Faculty of Science and Engineering and Waseda Research Institute for Science and Engineering, Waseda University, 3-4-1 Okubo, Shinjuku, Tokyo, 169-8555, Japan.

出版信息

Adv Sci (Weinh). 2025 Jan;12(3):e2409546. doi: 10.1002/advs.202409546. Epub 2024 Nov 25.

Abstract

The remarkable properties of 2D nanomaterials are well known. However, their high interfacial adhesion energy often leads to restacking issues, limiting their potential in various applications. A strategic synthetic approach is presented to overcome this challenge. Specifically, the study first demonstrates the use of layered aluminosilicate as a sacrificial 2D template to allow the growth of highly ordered meso-holey polymeric layers, which can be subsequently exfoliated upon the removal of aluminosilicate and thermally converted to perpendicularly open meso-holey carbon (POMC). On the other hand, perpendicularly blocked meso-holey carbon (PBMC) is obtained with non-sacrificial 2D template of graphene oxide. When both POMC and PBMC are evaluated by operando hydrodynamic electrochemical impedance spectroscopy and transmission line model analysis for electrochemical reduction of oxygen, POMC achieves a remarkable improvement of charge transfer and mass transfer by up to 4.1 and 7.9 times, respectively, as compared to PBMC. This study therefore highlights the importance of perpendicularly open 2D nanoarchitectures in circumventing the restacking effect, offering valuable insights for leveraging 2D nanomaterials with open meso-holes in various applications.

摘要

二维纳米材料的卓越性能是众所周知的。然而,它们较高的界面粘附能常常导致重新堆叠问题,限制了其在各种应用中的潜力。本文提出了一种策略性的合成方法来克服这一挑战。具体而言,该研究首先展示了使用层状硅铝酸盐作为牺牲性二维模板,以实现高度有序的介观多孔聚合物层的生长,随后在去除硅铝酸盐后可将其剥离,并热转化为垂直开放的介观多孔碳(POMC)。另一方面,使用氧化石墨烯的非牺牲性二维模板可获得垂直封闭的介观多孔碳(PBMC)。当通过操作流体动力学电化学阻抗谱和传输线模型分析对POMC和PBMC进行氧电化学还原评估时,与PBMC相比,POMC的电荷转移和传质分别显著提高了4.1倍和7.9倍。因此,本研究突出了垂直开放的二维纳米结构在规避重新堆叠效应方面的重要性,为在各种应用中利用具有开放介观孔的二维纳米材料提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9240/11744651/767c676af14e/ADVS-12-2409546-g002.jpg

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