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Chemical transformation: a powerful route to metal chalcogenide nanowires.
Magda, G. Z. et al. Exfoliation of large-area transition metal chalcogenide single layers.
Rivest, J. B. et al. Evolution of ordered metal chalcogenide architectures through chemical transformations.
Zhao, W., Zhang, C., Geng, F., Zhuo, S. & Zhang, B. Nanoporous hollow transition metal chalcogenide nanosheets synthesized via the anion-exchange reaction of metal hydroxides with chalcogenide ions.
Yordanov, G. G., Yoshimura, H. & Dushkin, C. D. Phosphine-free synthesis of metal chalcogenide quantum dots by means of in situ-generated hydrogen chalcogenides.
In summary, we have determined that no less than three separate mechanisms contribute to the formation of metal chalcogenide bonds during the formation of CdSe and related QDs.
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Kim, J.-Y., Choi, S. M., Seo, W.-S. & Cho, W.-S. Thermal and electronic properties of exfoliated metal chalcogenides.
Specifically the electrosynthesis of metal chalcogenides (In2S3, CdS, and CdTe) is considered.
A significant upper limit for the activity of transition metal chalcogenides is estimated.
Transition metal chalcogenides become emerging materials as electrodes for electrochemical energy storage devices.
[Na5Zn3.5Sn3.5S13]·6H2O represents an interesting example of metal chalcogenides that combines semiconductivity, porosity, and light emission in a single structure.
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