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Nano- and micro-sized rare-earth carbonates and their use as precursors and sacrificial templates for the synthesis of new innovative materials

Anna Kaczmarek (UGent) , Kristof Van Hecke (UGent) and Rik Van Deun (UGent)
(2015) CHEMICAL SOCIETY REVIEWS. 44(8). p.2032-2059
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Abstract
This review focuses on rare-earth carbonate materials of nano- and micro-size. It discusses in depth the different types of rare-earth carbonate compounds, diverse synthetic approaches and possibilities for chemical tuning of the size, shape and morphology. The interesting luminescence properties of lanthanide doped rare-earth carbonates and their potential applications for example as efficient white light sources and biolabels are reviewed. Additionally the use of these materials as precursors for the synthesis of nano-/micro-sized oxides, and their application as sacrificial templates for morphology-controlled synthesis of other materials such as YVO4, LaF3, NaYF4 and others is overviewed.
Keywords
GD2O3-EU PHOSPHOR PARTICLES, HIERARCHICAL HOLLOW SPHERES, SHAPE-CONTROLLED SYNTHESIS, SINGLE-CRYSTAL CE(OH)CO3, HYDROTHERMAL SYNTHESIS, LUMINESCENCE PROPERTIES, FORMATION MECHANISM, THERMAL-CONVERSION, GROWTH-MECHANISM, BASIC CARBONATE

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MLA
Kaczmarek, Anna, et al. “Nano- and Micro-Sized Rare-Earth Carbonates and Their Use as Precursors and Sacrificial Templates for the Synthesis of New Innovative Materials.” CHEMICAL SOCIETY REVIEWS, vol. 44, no. 8, 2015, pp. 2032–59.
APA
Kaczmarek, A., Van Hecke, K., & Van Deun, R. (2015). Nano- and micro-sized rare-earth carbonates and their use as precursors and sacrificial templates for the synthesis of new innovative materials. CHEMICAL SOCIETY REVIEWS, 44(8), 2032–2059.
Chicago author-date
Kaczmarek, Anna, Kristof Van Hecke, and Rik Van Deun. 2015. “Nano- and Micro-Sized Rare-Earth Carbonates and Their Use as Precursors and Sacrificial Templates for the Synthesis of New Innovative Materials.” CHEMICAL SOCIETY REVIEWS 44 (8): 2032–59.
Chicago author-date (all authors)
Kaczmarek, Anna, Kristof Van Hecke, and Rik Van Deun. 2015. “Nano- and Micro-Sized Rare-Earth Carbonates and Their Use as Precursors and Sacrificial Templates for the Synthesis of New Innovative Materials.” CHEMICAL SOCIETY REVIEWS 44 (8): 2032–2059.
Vancouver
1.
Kaczmarek A, Van Hecke K, Van Deun R. Nano- and micro-sized rare-earth carbonates and their use as precursors and sacrificial templates for the synthesis of new innovative materials. CHEMICAL SOCIETY REVIEWS. 2015;44(8):2032–59.
IEEE
[1]
A. Kaczmarek, K. Van Hecke, and R. Van Deun, “Nano- and micro-sized rare-earth carbonates and their use as precursors and sacrificial templates for the synthesis of new innovative materials,” CHEMICAL SOCIETY REVIEWS, vol. 44, no. 8, pp. 2032–2059, 2015.
@article{5916563,
  abstract     = {This review focuses on rare-earth carbonate materials of nano- and micro-size. It discusses in depth the different types of rare-earth carbonate compounds, diverse synthetic approaches and possibilities for chemical tuning of the size, shape and morphology. The interesting luminescence properties of lanthanide doped rare-earth carbonates and their potential applications for example as efficient white light sources and biolabels are reviewed. Additionally the use of these materials as precursors for the synthesis of nano-/micro-sized oxides, and their application as sacrificial templates for morphology-controlled synthesis of other materials such as YVO4, LaF3, NaYF4 and others is overviewed.},
  author       = {Kaczmarek, Anna and Van Hecke, Kristof and Van Deun, Rik},
  issn         = {0306-0012},
  journal      = {CHEMICAL SOCIETY REVIEWS},
  keywords     = {GD2O3-EU PHOSPHOR PARTICLES,HIERARCHICAL HOLLOW SPHERES,SHAPE-CONTROLLED SYNTHESIS,SINGLE-CRYSTAL CE(OH)CO3,HYDROTHERMAL SYNTHESIS,LUMINESCENCE PROPERTIES,FORMATION MECHANISM,THERMAL-CONVERSION,GROWTH-MECHANISM,BASIC CARBONATE},
  language     = {eng},
  number       = {8},
  pages        = {2032--2059},
  title        = {Nano- and micro-sized rare-earth carbonates and their use as precursors and sacrificial templates for the synthesis of new innovative materials},
  url          = {http://dx.doi.org/10.1039/c4cs00433g},
  volume       = {44},
  year         = {2015},
}

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