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Enhanced photolysis stability of Cu2O grown on Cu nanowires with nanoscale twin boundaries
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Enhanced photolysis stability of Cu2O grown on Cu nanowires with nanoscale twin boundaries

Chun-Lung Huang, Wei-Lun Weng, Yan-Syun HuangChien-Neng Liao
Nanoscale, 卷.11(29), 頁碼.13709-13713
08/2019
PMID: 31194206

摘要

Materials Science (all)
Cuprous oxide (Cu O) that has a direct bandgap corresponding to visible-light absorption exhibits versatile functionalities, which are appealing to solar cell, photocatalyst, bio-sensing and water splitting applications. However, photolysis stability has long been a problem for Cu O under light exposure and a humid environment. Here, we found that the Cu O layer grown on Cu nanowires (CuNWs) with high-density nanoscale twin boundaries can maintain the integrity of Cu/Cu O core-shell structure under ambient air conditions for more than one year. The Cu O on nanotwinned CuNWs also demonstrates much higher stability in humid air and water with light exposure than its counterpart on nanocrystalline CuNWs. The superior photolysis stability of Cu O is attributed to (1) photoelectrons drained to the Cu core, (2) limited vacancy sources in the Cu O layer and (3) the suppressed out-diffusion of Cu cations through the oxide layer. It is suggested that the presence of nanoscale twin boundaries modifies the atomic surface structure of the CuNWs and alters the photolysis reaction of Cu O.

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