首页> 美国卫生研究院文献>Nanomaterials >Easily Synthesized Polyaniline@Cellulose Nanowhiskers Better Tune Network Structures in Ag-Based Adhesives: Examining the Improvements in Conductivity Stability and Flexibility
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Easily Synthesized Polyaniline@Cellulose Nanowhiskers Better Tune Network Structures in Ag-Based Adhesives: Examining the Improvements in Conductivity Stability and Flexibility

机译:易于合成的聚苯胺@纤维素纳米晶须在基于Ag的胶粘剂中更好地调节网络结构:研究电导率稳定性和柔性的改进

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摘要

It is essential to develop a novel and versatile strategy for constructing electrically conductive adhesives (ECAs) that have superior conductivity and high mechanical properties. In this work, easily synthesized polyaniline@cellulose (PANI@CNs) nanowhiskers with a high aspect ratio and excellent solubility in 1,4-dioxane were prepared and added to conventional Ag-containing adhesives. A small amount of PANI@CNs can dramatically tune the structure of the ECAs’ conductive network and significantly improve the conductivity of the ECAs. Good solubility of PANI@CNs in solvents brings excellent dispersion in the polymer matrix. Thus, a three-dimensional (3D) conducting network formed with dispersed PANI@CNs and Ag flakes can enhance the conductivity of ECAs. The conductivity of the ECAs (with 1.5 wt% PANI@CNs and 55 wt% Ag flakes) showed three orders of magnitude higher than that of the ECAs filled with 55 wt% Ag flakes and 65 wt% Ag flakes. Meanwhile, the integration of PANI@CNs with Ag flakes in polymer matrices also significantly enhanced the mechanical compliance of the resulted ECAs. The resistivity remained unchanged after rolling the PANI@CNs-containing ECAs’ film into a 4 mm bending radius for over 1500 cycles. A bendable printed circuit was fabricated using the above PANI@CNs-containing ECAs, which demonstrated their future potential in the field of flexible electronics.
机译:必须开发一种新颖而通用的策略来构造具有优异导电性和高机械性能的导电胶(ECA)。在这项工作中,制备了易于合成的高纵横比且在1,4-二恶烷中具有优异溶解度的聚苯胺纤维素(PANI @ CNs)纳米晶须,并将其添加到常规的含Ag粘合剂中。少量的PANI @ CN可以显着调整ECA导电网络的结构,并显着提高ECA的导电性。 PANI @ CNs在溶剂中的良好溶解性使其在聚合物基质中具有出色的分散性。因此,由分散的PANI @ CN和Ag薄片形成的三维(3D)导电网络可以增强ECA的电导率。 ECA(含1.5 wt%PANI @ CN和55 wt%Ag薄片)的电导率比填充了55 wt%Ag薄片和65 wt%Ag薄片的ECA的电导率高三个数量级。同时,将PANI @ CN与Ag薄片在聚合物基质中的整合也显着增强了所得ECA的机械柔韧性。将含PANI @ CNs的ECA薄膜卷成4mm弯曲半径,经过1500个循环后,电阻率保持不变。使用上述含PANI @ CNs的ECA制造了可弯曲的印刷电路,这证明了它们在柔性电子领域的未来潜力。

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