Chromatic Change in Copper Oxide Layers Irradiated with Low Energy Ions

IF 1.3 Q3 INSTRUMENTS & INSTRUMENTATION
Takuya Kobayashi, F. Nishiyama, K. Takahiro
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引用次数: 1

Abstract

The color of a thin copper oxide layer formed on a copper plate was transformed from reddish-brown into dark blue-purple by irradiation with 5 keV Ar+ ions to a fluence as low as 1 × 1015 Ar+ cm−2. In the unirradiated copper oxide layer, the copper valence state of Cu2+ and Cu+ and/or Cu0 was included as indicated by the presence of a shake-up satellite line in a photoemission spectrum. While for the irradiated one, the satellite line decreased in intensity, indicating that irradiation resulted in the reduction from Cu2+ to Cu+ and/or Cu0. Furthermore, nuclear reaction analysis using a 16O(d, p)17O reaction with 0.85 MeV deuterons revealed a significant loss of oxygen (5 × 1015 O atoms cm−2) in the irradiated layer. Thus, the chromatic change observed in the present work originated in the irradiation-induced reduction of a copper oxide.
低能离子辐照氧化铜层的色度变化
通过用5keV Ar+离子照射到低至1×1015Ar+cm−2的通量,在铜板上形成的薄氧化铜层的颜色从红棕色转变为深蓝色紫色。在未辐照的氧化铜层中,包括Cu2+和Cu+和/或Cu0的铜价态,如光电发射光谱中抖动卫星线的存在所示。而对于辐照的,卫星线的强度降低,表明辐照导致Cu2+还原为Cu+和/或Cu0。此外,使用具有0.85 MeV氘的16O(d,p)17O反应进行的核反应分析显示,辐照层中的氧(5×1015 O原子cm−2)显著损失。因此,在本工作中观察到的颜色变化起源于氧化铜的辐照诱导还原。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.80
自引率
28.60%
发文量
27
审稿时长
11 weeks
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