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首页> 外文期刊>Advanced Functional Materials >Painting and Direct Writing of Silver Nanostructures on Phosphate Glass with Electron Beam Irradiation
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Painting and Direct Writing of Silver Nanostructures on Phosphate Glass with Electron Beam Irradiation

机译:电子束辐照在磷酸盐玻璃上银纳米结构的涂漆和直接书写

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Surfaces with silver nanostructures are useful, due to their potential to resonate strongly with visible light. This report demonstrates a process for the directed extraction of silver at the surface of a transparent superionic conductor. A focused electron beam incident on superionic AgIAgPO3 glass results in localized negative charge deposition, which is neutralized by the electrochemical reduction of free silver ions. This process was characterized for beam energies ranging from 1 to 12 kV and primary beam fluence ranging from 50 pC m(-2) to 35 nC m(-2). For electron fluence less than 2.5 nC m(-2) the process produces vibrant coloration of the glass which can be tuned throughout the entire visible spectrum. Fluence greater than 2.5 nC m(-2) results in the controlled writing of bulk silver on the surface, with a minimum line width as small as 400 nm and narrow gaps as small as 50 nm. The high ionic conductivity of the substrate is shown to be a vital component to the process, allowing the wide range of colors to be produced along with the controlled, nondendritic growth of silver structures.
机译:具有银纳米结构的表面很有用,因为它们具有与可见光强烈共振的潜力。该报告证明了在透明超离子导体表面上定向提取银的方法。入射在超离子AgIAgPO3玻璃上的聚焦电子束会导致局部负电荷沉积,这种沉积会通过电化学还原游离银离子来中和。此过程的特征是束能量在1到12 kV之间,一次束通量在50 pC m(-2)到35 nC m(-2)之间。对于小于2.5 nC m(-2)的电子通量,该过程会产生鲜明的玻璃着色,可以在整个可见光谱范围内进行调整。通量大于2.5 nC m(-2)会导致表面上大量银的受控书写,最小线宽可小至400 nm,窄间隙可小至50 nm。衬底的高离子电导率被证明是该过程的重要组成部分,它可以产生多种颜色,并且可以控制银结构的非枝晶生长。

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