Langley D P, Lagrange M, Giusti G, Jiménez C, Bréchet Y, Nguyen N D, Bellet D
Univ. Grenoble Alpes, LMGP, F-38000 Grenoble, France.
Nanoscale. 2014 Nov 21;6(22):13535-43. doi: 10.1039/c4nr04151h.
Metallic nanowire networks have huge potential in devices requiring transparent electrodes. This article describes how the electrical resistance of metal nanowire networks evolve under thermal annealing. Understanding the behavior of such films is crucial for the optimization of transparent electrodes which find many applications. An in-depth investigation of silver nanowire networks under different annealing conditions provides a case study demonstrating that several mechanisms, namely local sintering and desorption of organic residues, are responsible for the reduction of the systems electrical resistance. Optimization of the annealing led to specimens with transmittance of 90% (at 550 nm) and sheet resistance of 9.5 Ω sq(-1). Quantized steps in resistance were observed and a model is proposed which provides good agreement with the experimental results. In terms of thermal behavior, we demonstrate that there is a maximum thermal budget that these electrodes can tolerate due to spheroidization of the nanowires. This budget is determined by two main factors: the thermal loading and the wire diameter. This result enables the fabrication and optimization of transparent metal nanowire electrodes for solar cells, organic electronics and flexible displays.
金属纳米线网络在需要透明电极的器件中具有巨大潜力。本文描述了金属纳米线网络的电阻在热退火过程中是如何演变的。了解此类薄膜的行为对于优化有许多应用的透明电极至关重要。对不同退火条件下的银纳米线网络进行深入研究提供了一个案例,表明几种机制,即局部烧结和有机残留物的解吸,是导致系统电阻降低的原因。退火优化后得到的样品在550nm处的透过率为90%,方阻为9.5Ω sq(-1)。观察到电阻的量化步骤,并提出了一个与实验结果吻合良好的模型。在热行为方面,我们证明由于纳米线的球化,这些电极存在一个能够耐受的最大热预算。这个预算由两个主要因素决定:热负荷和线径。这一结果有助于制造和优化用于太阳能电池、有机电子器件和柔性显示器的透明金属纳米线电极。