Research Institute for Sustainable Chemistry, National Institute of Advanced Industrial Science and Technology (AIST) , Central 5-2, 1-1-1 Higashi, Tsukuba 305-8565, Japan.
ACS Appl Mater Interfaces. 2017 Sep 13;9(36):30805-30811. doi: 10.1021/acsami.7b07184. Epub 2017 Sep 1.
A simple fabrication method for patterned carbon nanotube (CNT) films is presented, using the concept of light-induced dispersibility switching with a photoresponsive dispersant. A comparison with other dispersants highlights the important role played by an azobenzene-derived cationic molecule as a photoisomerizable dispersant in the successful manufacture of patterned CNT films. Upon UV irradiation for a short time (∼0.5 min), a dispersion composed of CNTs and photoresponsive dispersant exhibited a dispersibility change due to the photoisomerization of the photoresponsive dispersant, and then the dispersant detached-CNT deposited onto the substrate. Our method enables patterned CNT films to be obtained directly from CNT dispersions onto various substrates such as glass, polyethylene terephthalate, and silicone rubber, expanding the possible applications of CNT films. Furthermore, the process minimizes the amount of the residual dispersant in the fabricated CNT film, reducing the amount of impurities, and improving the quality of the patterned CNT film.
提出了一种简单的图案化碳纳米管(CNT)薄膜的制备方法,利用光致分散性开关的概念和光响应分散剂。与其他分散剂的比较突出了作为光致变色分散剂的偶氮苯衍生阳离子分子在成功制备图案化 CNT 薄膜中的重要作用。在短时间(约 0.5 分钟)的紫外光照射下,由 CNT 和光响应分散剂组成的分散体由于光响应分散剂的光致异构化而表现出分散性变化,然后分散剂与 CNT 一起沉积在基底上。我们的方法能够直接从 CNT 分散体到各种基底(如玻璃、聚对苯二甲酸乙二醇酯和硅橡胶)上获得图案化 CNT 薄膜,扩展了 CNT 薄膜的可能应用。此外,该工艺最大限度地减少了所制备的 CNT 薄膜中残留分散剂的量,减少了杂质的含量,并提高了图案化 CNT 薄膜的质量。