纳米技术
材料科学
碳纳米管
基质(水族馆)
纳米材料
织物
数码产品
大气压等离子体
等离子体活化
生物传感器
柔性电子器件
沉积(地质)
印刷电子产品
等离子体
光电子学
化学
墨水池
复合材料
地质学
物理
海洋学
物理化学
沉积物
量子力学
生物
古生物学
作者
Ram P. Gandhiraman,Eric J. Singh,Diana C Díaz-Cartagena,Dennis Nordlund,Jessica E. Koehne,M. Meyyappan
摘要
Recent interest in flexible electronics and wearable devices has created a demand for fast and highly repeatable printing processes suitable for device manufacturing. Robust printing technology is critical for the integration of sensors and other devices on flexible substrates such as paper and textile. An atmospheric pressure plasma-based printing process has been developed to deposit different types of nanomaterials on flexible substrates. Multiwalled carbon nanotubes were deposited on paper to demonstrate site-selective deposition as well as direct printing without any type of patterning. Plasma-printed nanotubes were compared with non-plasma-printed samples under similar gas flow and other experimental conditions and found to be denser with higher conductivity. The utility of the nanotubes on the paper substrate as a biosensor and chemical sensor was demonstrated by the detection of dopamine, a neurotransmitter, and ammonia, respectively.
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