TiO2 nanobelts/CdSSe quantum dots nanocomposite

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Abstract

This work presents the successful noncovalent attachment of ∼5 nm diameter cadmium-sulfur-selenium (CdSSe) quantum dots on strips of anatase TiO2 nanobelts. The TiO2 nanobelts were hydrothermally synthesized from a strong alkaline solution and subsequently heat-treated to achieve the anatase phase. The self-assembledmonolayer (SAM) technique was employed to attach the quantum dots onto the nanobelts. Due to the hydrophobic nature of the quantum dots, the surface of the nanobelts was first self-assembled with a layer of hydrophobic organic layer before both mixtures were added together. The resulting nanostructure assembly and composition was confirmed via transmission-electron-microscopy (TEM) imaging, Raman spectroscopy, UV-visible absorption spectroscopy (UV-vis), and X-ray photoelectron spectroscopy (XPS). Both Raman and UV-vis spectroscopies indicate evidence of interactions between the quantum dots and nanobelts. The visible-light sensitizing effect of the quantum dots was demonstrated in photocurrent experiments. © 2007 American Chemical Society.

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Chong, S. V., Suresh, N., Xia, J., Al-Salim, N., & Idriss, H. (2007). TiO2 nanobelts/CdSSe quantum dots nanocomposite. Journal of Physical Chemistry C, 111(28), 10389–10393. https://doi.org/10.1021/jp072579u

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