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Tuning electronic transport in a self-assembled nanocomposite
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Tuning electronic transport in a self-assembled nanocomposite

Wei Sea Chang, Heng-Jui Liu, Vu Thanh Tra, Jhih-Wei Chen, Tzu-Chiao Wei, W.Y. Tzeng, Yuanmin Zhu, Ho-Hung Kuo, Ying-Hui Hsieh, Jheng-Cyuan Lin, …
ACS Nano, 卷.8(6), 頁碼.6242-6249
06/2014

摘要

band diagram interface-to-volume ratio metal-insulator transition nanocomposites self-assembled Materials Science (all) Engineering (all) Physics and Astronomy (all)
Self-assembled nanocomposites with a high interface-to-volume ratio offer an opportunity to overcome limitations in current technology, where intriguing transport behaviors can be tailored by the choice of proper interactions of constituents. Here we integrated metallic perovskite oxide SrRuO 3 -wurzite semiconductor ZnO nanocomposites to investigate the room-temperature metal-insulator transition and its effect on photoresponse. We demonstrate that the band structure at the interface can be tuned by controlling the interface-to-volume ratio of the nanocomposites. Photoinduced carrier injection driven by visible light was detected across the nanocomposites. This work shows the charge interaction of the vertically integrated multiheterostructures by incorporating a controllable interface-to-volume ratio, which is essential for optimization of the design and functionality of electronic devices. © 2014 American Chemical Society.

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