Valayil Varghese Tony, Eixenberger Josh, Rajabi-Kouchi Fereshteh, Lazouskaya Maryna, Francis Cadré, Burgoyne Hailey, Wada Katelyn, Subbaraman Harish, Estrada David
Department of Electrical and Computer Engineering, Boise State University, Boise, Idaho 83725, United States.
Micron School of Material Science and Engineering, Boise State University, Boise, Idaho 83725, United States.
ACS Mater Au. 2023 Nov 2;4(1):65-73. doi: 10.1021/acsmaterialsau.3c00058. eCollection 2024 Jan 10.
Conductive and biofriendly gold nanomaterial inks are highly desirable for printed electronics, biosensors, wearable electronics, and electrochemical sensor applications. Here, we demonstrate the scalable synthesis of stable gold nanoparticle inks with low-temperature sintering using simple chemical processing steps. Multiprinter compatible aqueous gold nanomaterial inks were formulated, achieving resistivity as low as ∼10 Ω m for 400 nm thick films sintered at 250 °C. Printed lines with a resolution of <20 μm and minimal overspray were obtained using an aerosol jet printer. The resistivity of the printed patterns reached ∼9.59 ± 1.2 × 10 Ω m after sintering at 400 °C for 45 min. Our aqueous-formulated gold nanomaterial inks are also compatible with inkjet printing, extending the design space and manufacturability of printed and flexible electronics where metal work functions and chemically inert films are important for device applications.
导电且具有生物友好性的金纳米材料墨水在印刷电子、生物传感器、可穿戴电子设备和电化学传感器应用中极具吸引力。在此,我们展示了通过简单的化学处理步骤,可扩展合成具有低温烧结性能的稳定金纳米颗粒墨水。我们配制了与多种打印机兼容的水性金纳米材料墨水,对于在250°C烧结的400nm厚薄膜,其电阻率低至约10Ω·m。使用气溶胶喷射打印机获得了分辨率小于20μm且过喷最小的印刷线路。在400°C烧结45分钟后,印刷图案的电阻率达到约9.59±1.2×10Ω·m。我们以水性形式配制的金纳米材料墨水也与喷墨印刷兼容,扩展了印刷和柔性电子设备的设计空间和可制造性,其中金属功函数和化学惰性薄膜对器件应用很重要。