Cite this article:
Hu Jing-Yu, Li Jing, Zhang Si-Jia, Zhao Hao-Fei, Zhang Qing-Hua, Yao Yuan, Zhao Qing, Shi Li-Jie, Zou Bing-Suo, Li Yan-Chun, Li Xiao-Dong, Liu Jing, Zhu Ke, Liu Yu-Long, Jin Chang-Qing, Yu Ri-Cheng. Pressure-induced phase transitions in single-crystalline Cu4Bi4S9 nanoribbonsJ. Chin. Phys. B, 2013, 22(11): 116201.
| Hu Jing-Yu, Li Jing, Zhang Si-Jia, Zhao Hao-Fei, Zhang Qing-Hua, Yao Yuan, Zhao Qing, Shi Li-Jie, Zou Bing-Suo, Li Yan-Chun, Li Xiao-Dong, Liu Jing, Zhu Ke, Liu Yu-Long, Jin Chang-Qing, Yu Ri-Cheng. Pressure-induced phase transitions in single-crystalline Cu4Bi4S9 nanoribbonsJ. Chin. Phys. B, 2013, 22(11): 116201. |
Pressure-induced phase transitions in single-crystalline Cu4Bi4S9 nanoribbons
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Abstract
In situ angle dispersive synchrotron X-ray diffraction and Raman scattering measurements under pressure are employed to study the structural evolution of Cu4Bi4S9 nanoribbons, which are fabricated by using a facile solvothermal method. Both experiments show that a structural phase transition occurs near 14.5 GPa, and there is a pressure-induced reversible amorphization at about 25.6 GPa. The electrical transport property of a single Cu4Bi4S9 nanoribbon under different pressures is also investigated. -
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