Cao Ge, Hao Changxiang, Gao Xiaolan, Lu Junyi, Xue Wei, Meng Yuan, Cheng Chun, Tian Yanqing
School of Materials Science and Engineering, Harbin Institute of Technology, Nangang District, Harbin 150001, China.
Department of Materials Science and Engineering, Southern University of Science and Technology, Xili, Nanshan District, Shenzhen 518055, China.
ACS Omega. 2019 Feb 25;4(2):4169-4175. doi: 10.1021/acsomega.8b03684. eCollection 2019 Feb 28.
In this study, a simple solution-mixing method is used to develop a kind of excellent flexible, electrically conductive adhesives (ECAs). Carbon nanotubes (CNTs) and carbon blacks (CBs) as cofillers were added into Ag-based pastes. The use of the two fillers is due to the consideration that these two materials may provide positive synergistic effects for improving the conductivity of ECAs. The conductivity, flexibility, cyclability, and oxidation resistance of ECAs with different contents of carbon fillers were studied. It was found that a small amount of CNTs or CBs can dramatically improve the ECAs' conductivity. Solution-mixing method brings excellent carbon nanofiller dispersion in polymer matrix. Highly dispersed CNTs and CBs among the Ag flakes formed three-dimensional conducting networks to improve the conductivity of ECAs. The conductivity of ternary hybrid ECAs (with addition of 3 wt % CNTs and 2 wt % CBs) with a low content of 55 wt % Ag flakes is higher than that of the ECAs filled with only the Ag content over 65 wt %. Meanwhile, by selecting thermoplastic polyurethane resin as the matrix, the ECAs exhibited excellent mechanical compliance. The resistivity did not change when the ECAs were bended at a 60% flexural strain or pressed under 1200 kPa. Additionally, the adhesion strength of the new composited ECAs is better than that of a commercial ECA (Abletherm 3188). Further, no obvious conductivity change was observed when the sample was stored in ambient air condition at 80 °C and 60% relative humidity (60%) for 15 days.
在本研究中,采用一种简单的溶液混合方法来制备一种优异的柔性导电粘合剂(ECA)。将碳纳米管(CNT)和炭黑(CB)作为共填料添加到银基浆料中。使用这两种填料是考虑到这两种材料可能对提高ECA的导电性产生积极的协同效应。研究了不同碳填料含量的ECA的导电性、柔韧性、循环稳定性和抗氧化性。发现少量的CNT或CB能显著提高ECA的导电性。溶液混合法使碳纳米填料在聚合物基体中具有优异的分散性。高度分散在银片之间的CNT和CB形成三维导电网络,提高了ECA的导电性。含55 wt%低含量银片的三元混合ECA(添加3 wt% CNT和2 wt% CB)的导电性高于仅填充65 wt%以上银含量的ECA。同时,通过选择热塑性聚氨酯树脂作为基体,ECA表现出优异的机械柔韧性。当ECA在60%的弯曲应变下弯曲或在1200 kPa压力下压制时,电阻率不变。此外,新复合ECA的粘附强度优于市售ECA(Abletherm 3188)。此外,当样品在80°C和60%相对湿度(60%)的环境空气中储存15天时,未观察到明显的导电性变化。