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Synthesis and Optical Properties of Eu3 + and Tb3 + Doped Gd2O3 Nanotubes

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Lanthanide doped oxides nanotubes have novel physical, chemical, optical and structural properties, and are recently under extensive investigation for application in biology labeling and magnetic resonance imaging contrast enhancement. We report here the synthesis of Eu3+ and Tb3+ doped Gd(OH)3 nanotubes by simple hydrothermal technique and subsequently annealing to get its corresponding doped Gd2O3 oxide tubular nanostructures. Structure determination reveals that Eu3+ and Tb3+ ions effectively incorporate into the lanthanide host. Microscopy characterization illustrates that both type of tubular structures are uniformly distributed, and have straight and smooth morphology as well. Photoluminescence measurement demonstrates the strong red and green emissions through UV excitation with larger life time. The influence of dopants activation on Raman spectra is represented. Our results suggest that Eu3+ and Tb3+ doped Gd2O3 nanotube structures are useful for promising labels and biomedicines.

Keywords: CO-PRECIPITATION; NANOTUBES; PHOTOLUMINESCENCE; RAMAN SPECTRA

Document Type: Research Article

Publication date: 01 May 2012

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  • Science of Advanced Materials (SAM) is an interdisciplinary peer-reviewed journal consolidating research activities in all aspects of advanced materials in the fields of science, engineering and medicine into a single and unique reference source. SAM provides the means for materials scientists, chemists, physicists, biologists, engineers, ceramicists, metallurgists, theoreticians and technocrats to publish original research articles as reviews with author's photo and short biography, full research articles and communications of important new scientific and technological findings, encompassing the fundamental and applied research in all latest aspects of advanced materials.
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