Phillips Chris, Al-Ahmadi Awadh, Potts Sarah-Jane, Claypole Tim, Deganello Davide
Welsh Centre for Printing and Coating, College of Engineering, Swansea University, Bay Campus, Crymlyn Burrows, Swansea, SA1 8EN UK.
J Mater Sci. 2017;52(16):9520-9530. doi: 10.1007/s10853-017-1114-6. Epub 2017 Apr 27.
Conductive inks based on graphite and carbon black are used in a host of applications including energy storage, energy harvesting, electrochemical sensors and printed heaters. This requires accurate control of electrical properties tailored to the application; ink formulation is a fundamental element of this. Data on how formulation relates to properties have tended to apply to only single types of conductor at any time, with data on mixed types of carbon only empirical thus far. Therefore, screen printable carbon inks with differing graphite, carbon black and vinyl polymer content were formulated and printed to establish the effect on rheology, deposition and conductivity. The study found that at a higher total carbon loading ink of 29.4% by mass, optimal conductivity (0.029 Ω cm) was achieved at a graphite to carbon black ratio of 2.6 to 1. For a lower total carbon loading (21.7 mass %), this ratio was reduced to 1.8 to 1. Formulation affected viscosity and hence ink transfer and also surface roughness due to retention of features from the screen printing mesh and the inherent roughness of the carbon components, as well as the ability of features to be reproduced consistently.
基于石墨和炭黑的导电油墨被应用于许多领域,包括能量存储、能量收集、电化学传感器和印刷加热器。这需要根据应用精确控制电学性能;油墨配方是其中的一个基本要素。关于配方与性能之间关系的数据往往在任何时候都只适用于单一类型的导体,到目前为止,关于混合类型碳的数据仅为经验性的。因此,配制并印刷了具有不同石墨、炭黑和乙烯基聚合物含量的可丝网印刷碳油墨,以确定其对流变学、沉积和导电性的影响。研究发现,在总碳负载量较高(质量分数为29.4%)的油墨中,当石墨与炭黑的比例为2.6比1时,可实现最佳导电性(0.029Ω·cm)。对于总碳负载量较低(21.7质量%)的情况,该比例降至1.8比1。配方会影响粘度,进而影响油墨转移,还会影响表面粗糙度,这是由于丝网印刷网版的特征保留以及碳成分的固有粗糙度,以及特征能否一致再现。