@article{Zhang2015, 
author = {Yongliang Zhang and Jing Cai and Tianpei Ji and Qiang Wu and Yuyang Xu and Xizhang Wang and Tao Sun and Lijun Yang and Zheng Hu},
title = {Superionic conductor-mediated growth of ternary ZnCdS nanorods over a wide composition range},
year = {2015},
journal = {Nano Research},
volume = {8},
number = {2},
pages = {584-591},
keywords = {superionic conductor, solution-solid-solid growth, ternary ZnxCd1-xS, bandgap engineering},
url = {https://www.sciopen.com/article/10.1007/s12274-015-0708-z},
doi = {10.1007/s12274-015-0708-z},
abstract = {Composition regulation of semiconductors can engineer their bandgaps and hence tune their properties. Herein, we report the first synthesis of ternary ZnxCd1-xS semiconductor nanorods by superionic conductor (Ag2S)-mediated growth with [(C4H9)2NCS2]2M (M = Zn, Cd) as single-source precursors. The compositions of the ZnxCd1-xS nanorods are conveniently tuned over a wide range by adjusting the molar ratio of the corresponding precursors, leading to tunable bandgaps and hence the progressive evolution of the light absorption and photoluminescence spectra. The nanorods present well-distributed size and length, which are controlled by the uniform Ag2S nanoparticles and the fixed amount of the precursors. The results suggest the great potential of superionic conductor-mediated growth in composition regulation and bandgap engineering of chalcogenide nanowires/nanorods.}
}