Heterojunction Based on Rh-Decorated WO<sub>3</sub> Nanorods for Morphological Change and Gas Sensor Application Using the Transition Effect — Young Geun Song (2018) | RDL Network
Heterojunction Based on Rh-Decorated WO<sub>3</sub> Nanorods for Morphological Change and Gas Sensor Application Using the Transition Effect
Article 2018 en
Authors
YS
Young Geun Song
JP
Jae Yeol Park
JS
Jun Min Suh
Abstract
1 min read
The use of heterojunctions based on Rh-decorated WO3 nanorods is an effective strategy for achieving high-performance gas sensors for volatile organic compounds (VOCs), especially acetone (CH3COCH3). Herein, we successfully fabricated Rh-decorated WO3 nanorods with one-dimensional (1D) structures by glancing angle deposition (GLAD). Interestingly, morphological changes characterized by anomalous surfaces with numerous regions of negative curvature were observed upon decoration of the bare WO3 nanorods with Rh, which were systematically investigated on the basis of impeded surface diffusion and trapping effects. The improvements of gas sensing properties were stepwisely demonstrated by synergistic effects involving transition of Rh, high chemical potential of the negative curvature, primary decomposition at the top side, and highly ordered nanostructures. We are confident that the results provide new insight into the synthesis of effective nanostructures and contribute to a variety of applications including battery, solar water splitting, and sensor devices.
Ki Chang Kwon, Kyoung Soon Choi, Chong‐Yun Kang, Hyung‐Gi Byun, Ho Won Jang, Jun Min Suh, Woonbae Sohn, Young-Seok Shim, Jang-Sik Choi, Young Geun Song, Taemin L. Kim, Jong-Myeong Jeon
Jun Min Suh, Young‐Seok Shim, Do Hong Kim, Woonbae Sohn, Youngmo Jung, Seon Yong Lee, Seokhoon Choi, Yeonhoo Kim, Jong‐Myeong Jeon, Kootak Hong, Ki Chang Kwon, Seo Yun Park, Chulki Kim, Jong‐Heun Lee, Chong‐Yun Kang, Ho Won Jang
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