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纤维素纳米晶体稳定的液态金属皮克林乳液作为光热和导电直写墨水

Cellulose Nanocrystal Stabilized Liquid Metal Pickering Emulsion as Photothermal and Conductive Direct-Writing Ink.

作者信息

Sun Wang, Zhang Zhen, Wang Mengen, Zeng Jiaqi, Feng Liu, Wang Xiaojing, Hu Yali, Ma Chao, Zhou Guofu

机构信息

SCNU-TUE Joint Lab of Device Integrated Responsive Materials (DIRM), National Center for International Research on Green Optoelectronics, South China Normal University, Guangzhou, 510006, China.

Guangdong Provincial Key Laboratory of Optical Information Materials and Technology & Institute of Electronic Paper Displays, South China Academy of Advanced Optoelectronics, South China Normal University, Guangzhou, 510006, China.

出版信息

Small. 2025 Jun;21(24):e2501598. doi: 10.1002/smll.202501598. Epub 2025 Apr 22.

Abstract

Gallium-based liquid metal (LM) has attracted great attention for constructing flexible electronic devices due to its excellent deformability and electrical conductivity. However, its large surface tension makes it difficult to be uniformly dispersed in polymers, which severely limits its wide applications. Hence, a surfactant-free approach is proposed to prepare stable LM microspheres against precipitation and coalesce by facile ultrasonication via cellulose nanocrystal (CNC) stabilized LM-in-water Pickering emulsion (PE), where CNCs are employed as Pickering emulsifiers due their partial wettability with both LM and water phases, strong electrostatic adsorption and hydrogen bonding interactions with LM. So far, reports about LM PE and CNC-stabilized inorganic material PE are still rare. CNC/LM PE is employed as direct-writing inks on various substrates for delicate patterns. The pristine CNC/LM patterns show excellent photothermal conversion due to localized surface plasma resonance effect of CNC/LM microspheres. After activation by friction sintering, the LM patterns are highly electric conductive (1666.7 S m) due to the formation of LM connection. The activated LM patterns also displayed excellent Joule heating (83.2 °C at 0.9 V) and electromagnetic interference (EMI) shielding ability (585.7 dB mm) in X-band range.

摘要

基于镓的液态金属(LM)因其出色的可变形性和导电性,在构建柔性电子器件方面备受关注。然而,其较大的表面张力使其难以在聚合物中均匀分散,这严重限制了其广泛应用。因此,提出了一种无表面活性剂的方法,通过纤维素纳米晶体(CNC)稳定的水包LM型皮克林乳液(PE),利用简便的超声处理制备稳定的LM微球,以防止沉淀和聚结。在此,CNC因其与LM和水相的部分润湿性、与LM的强静电吸附和氢键相互作用,被用作皮克林乳化剂。到目前为止,关于LM PE和CNC稳定的无机材料PE的报道仍然很少。CNC/LM PE被用作在各种基材上进行直接书写以形成精致图案的墨水。由于CNC/LM微球的局域表面等离子体共振效应,原始的CNC/LM图案表现出优异的光热转换性能。通过摩擦烧结激活后,由于形成了LM连接,LM图案具有高导电性(1666.7 S m)。激活后的LM图案在X波段范围内还表现出优异的焦耳热效应(0.9 V时为83.2°C)和电磁干扰(EMI)屏蔽能力(585.7 dB mm)。

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