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用于气溶胶喷射打印的石墨烯油墨配方的系统设计。

Systematic Design of a Graphene Ink Formulation for Aerosol Jet Printing.

作者信息

Gamba Livio, Johnson Zachary T, Atterberg Jackie, Diaz-Arauzo Santiago, Downing Julia R, Claussen Jonathan C, Hersam Mark C, Secor Ethan B

机构信息

Department of Mechanical Engineering, Iowa State University, Ames, Iowa 50010, United States.

Department of Materials Science and Engineering, Northwestern University, Evanston, Illinois 60208, United States.

出版信息

ACS Appl Mater Interfaces. 2023 Jan 18;15(2):3325-3335. doi: 10.1021/acsami.2c18838. Epub 2023 Jan 6.

Abstract

Aerosol jet printing is a noncontact, digital, additive manufacturing technique compatible with a wide variety of functional materials. Although promising, development of new materials and devices using this technique remains hindered by limited rational ink formulation, with most recent studies focused on device demonstration rather than foundational process science. In the present work, a systematic approach to formulating a polymer-stabilized graphene ink is reported, which considers the effect of solvent composition on dispersion, rheology, wetting, drying, and phase separation characteristics that drive process outcomes. It was found that a four-component solvent mixture composed of isobutyl acetate, diglyme, dihydrolevoglucosenone, and glycerol supported efficient ink atomization and controlled in-line drying to reduce overspray and wetting instabilities while maintaining high resolution and electrical conductivity, thus overcoming a trade-off in deposition rate and resolution common to aerosol jet printing. Biochemical sensors were printed for amperometric detection of the pesticide parathion, exhibiting a detection limit of 732 nM and a sensitivity of 34 nA μM, demonstrating the viability of this graphene ink for fabricating functional electronic devices.

摘要

气溶胶喷射打印是一种与多种功能材料兼容的非接触式、数字化增材制造技术。尽管前景广阔,但使用该技术开发新材料和器件仍然受到合理油墨配方有限的阻碍,最近的研究大多集中在器件演示而非基础工艺科学上。在本工作中,报道了一种系统的聚合物稳定石墨烯油墨配方方法,该方法考虑了溶剂组成对分散、流变、润湿、干燥以及驱动工艺结果的相分离特性的影响。研究发现,由乙酸异丁酯、二甘醇二甲醚、二氢左旋葡萄糖酮和甘油组成的四组分溶剂混合物支持高效的油墨雾化并控制在线干燥,以减少过喷和润湿不稳定性,同时保持高分辨率和电导率,从而克服了气溶胶喷射打印中常见的沉积速率和分辨率之间的权衡。印刷了用于安培检测农药对硫磷的生化传感器,检测限为732 nM,灵敏度为34 nA μM,证明了这种石墨烯油墨用于制造功能性电子器件的可行性。

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