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全纤维素纳米原纤辅助插层及稳定TiCT MXene油墨用于多功能传感和电磁干扰屏蔽应用

Holocellulose Nanofibril-Assisted Intercalation and Stabilization of TiCT MXene Inks for Multifunctional Sensing and EMI Shielding Applications.

作者信息

Chen Yian, Li Yuehu, Liu Yu, Chen Pan, Zhang Cunzhi, Qi Haisong

机构信息

State Key Laboratory of Pulp and Paper Engineering, South China University of Technology, Guangzhou 510641, China.

Department of Materials Engineering, Beijing Institute of Technology, Beijing 100081, China.

出版信息

ACS Appl Mater Interfaces. 2021 Aug 4;13(30):36221-36231. doi: 10.1021/acsami.1c10583. Epub 2021 Jul 21.

Abstract

2D transition-metal carbide/nitride (MXene)-based conductive inks have received tremendous attention due to their high electrical conductivity and other fascinating properties. However, the unstability of MXene-based inks, low fabrication yield of MXene flakes, and poor mechanical properties of printed products strongly limit the proper and large-scale printing of MXene patterns. Here, functioning as a dispersant, an intercalation agent, and reinforcement, sulfated holocellulose nanofibrils (HCNFs) with a unique "core-shell" structure are conducive to the fabrication, storage, and subsequent printing of MXene inks. The MXene/HCNF (MH) ink with high yield (97.2%), good stability, and good homogeneity exhibits excellent printing performance (high resolution and good coverage). It could print various products with adjustable thicknesses and electrical conductivity properties on different substrates. The products printed by the MH ink can be applied as multifunctional sensing materials responding to multiple external stimuli, such as stress/strain, blowing, humidity, and temperature. Furthermore, the resulting products also display a high electromagnetic interference (EMI) shielding effectiveness (SE) of 54.3 dB at a shallow thickness of 100 μm and an excellent specific EMI SE of SSE/ of 7159 dB cm g.

摘要

基于二维过渡金属碳化物/氮化物(MXene)的导电油墨因其高导电性和其他迷人特性而备受关注。然而,基于MXene的油墨的不稳定性、MXene薄片的低制备产率以及印刷产品较差的机械性能,严重限制了MXene图案的正确和大规模印刷。在此,具有独特“核壳”结构的硫酸化全纤维素纳米纤维(HCNF)作为分散剂、插层剂和增强剂,有利于MXene油墨的制备、储存和后续印刷。具有高产率(97.2%)、良好稳定性和良好均匀性的MXene/HCNF(MH)油墨表现出优异的印刷性能(高分辨率和良好覆盖率)。它可以在不同基材上印刷具有可调节厚度和导电性能的各种产品。由MH油墨印刷的产品可作为响应多种外部刺激(如应力/应变、吹气、湿度和温度)的多功能传感材料。此外,所得产品在100μm的浅厚度下还显示出54.3dB的高电磁干扰(EMI)屏蔽效能(SE)和7159dB cm g的优异比EMI SE。

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