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Fabrication of Elemental Copper by Intense Pulsed Light Processing of a Copper Nitrate Hydroxide Ink

机译:硝酸铜氢氧化物油墨的强脉冲光处理制备单质铜

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摘要

Printed electronics and renewable energy technologies have shown a growing demand for scalable copper and copper precursor inks. An alternative copper precursor ink of copper nitrate hydroxide, Cu-2(OH)(3)NO3, was aqueously synthesized under ambient conditions with copper nitrate and potassium hydroxide reagents. Films were deposited by screen-printing and subsequently processed with intense pulsed light. The Cu-2(OH)(3)NO3 quickly transformed in less than 100 s using 40 (2 ms, 12.8 J cm(-2)) pulses into CuO. At higher energy densities, the sintering improved the bulk film quality. The direct formation of Cu from the Cu-2(OH)(3)NO3 requires a reducing agent; therefore, fructose and glucose were added to the inks. Rather than oxidizing, the thermal decomposition of the sugars led to a reducing environment and direct conversion of the films into elemental copper. The chemical and physical transformations were studied with XRD, SEM, FTIR and UV-vis.
机译:印刷电子和可再生能源技术对可伸缩铜和铜前体油墨的需求不断增长。在环境条件下,用硝酸铜和氢氧化钾试剂水性合成了硝酸铜的另一种铜前体油墨,即Cu-2(OH)(3)NO3。通过丝网印刷沉积膜,然后用强脉冲光处理。使用40(2 ms,12.8 J cm(-2))脉冲在不到100 s的时间内Cu-2(OH)(3)NO3迅速转变为CuO。在较高的能量密度下,烧结改善了体膜质量。由Cu-2(OH)(3)NO3直接形成Cu需要还原剂。因此,将果糖和葡萄糖添加到墨水中。糖的热分解而不是氧化,而是导致还原环境并直接将薄膜转化为元素铜。用XRD,SEM,FTIR和UV-vis研究了化学和物理转化。

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