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具有多个面内开放通道的层状单组分氢键有机框架中的各向异性超质子传导

Anisotropic Superprotonic Conduction in a Layered Single-Component Hydrogen-Bonded Organic Framework with Multiple In-Plane Open Channels.

作者信息

Wang Zhiwei, Yang Lijuan, Chen Qian, Liu Peiyuan, Yang Zhiwei, Li Hai, Huang Xiao, Huang Wei

机构信息

School of Materials Science and Chemical Engineering, Chuzhou University, 1 West Huifeng Road, Chuzhou, 23900, China.

Institute of Advanced Materials (IAM), School of Flexible Electronics (SoFE), Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM), Nanjing Tech University (NanjingTech), 30 South Puzhu Road, Nanjing, 211816, China.

出版信息

Adv Mater. 2024 Oct;36(40):e2409202. doi: 10.1002/adma.202409202. Epub 2024 Aug 23.

DOI:10.1002/adma.202409202
PMID:39180256
Abstract

Hydrogen-bonded organic frameworks (HOFs) are promising proton conductive materials because of their inherent and abundant hydrogen-bonding sites. However, most superprotonic-conductive HOFs are constructed from multiple components to enable favorable framework architectures and structural integrity. In this contribution, layered HOF-TPB-A with a single component is synthesized and exfoliated. The exfoliated nanoplates exhibited anisotropic superprotonic conduction, with in-plane proton conductivities reaching 1.34 × 10 S cm at 296 K and 98% relative humidity (RH). This outperforms the previously reported single-component HOFs and is comparable with the state-of-the-art multiple-component HOFs. The high and anisotropic proton conductive properties can be attributed to the efficient proton transport along multiple open channels parallel to their basal planes. Moreover, an all-solid-state (ASS) proton rectifier device is demonstrated by combining HOF-TPB-A and a hydroxide ion-conducting layered double hydroxide (LDH). This work suggests that single-component HOFs with multiple open channels offer more opportunities as versatile platforms for proton conductors, making them promising candidates for conducting media in protonic devices.

摘要

氢键有机框架(HOFs)因其固有的丰富氢键位点而成为有前景的质子传导材料。然而,大多数超质子传导的HOFs是由多种组分构建而成,以实现良好的框架结构和结构完整性。在本研究中,合成并剥离了具有单一成分的层状HOF-TPB-A。剥离后的纳米片表现出各向异性的超质子传导,在296 K和98%相对湿度(RH)下,面内质子电导率达到1.34×10 S cm。这超过了先前报道的单一组分HOFs,与最先进的多组分HOFs相当。高且各向异性的质子传导特性可归因于质子沿平行于其基面的多个开放通道的高效传输。此外,通过将HOF-TPB-A与氢氧根离子传导层状双氢氧化物(LDH)相结合,展示了一种全固态(ASS)质子整流器装置。这项工作表明,具有多个开放通道的单一组分HOFs作为质子导体的通用平台提供了更多机会,使其成为质子器件中传导介质的有前途的候选者。

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