In this work, we demonstrate that the martensitic t m phase transformation of ZrO2 powder stabilized with Eu3+ and Eu3+/Y3+ ions, can be effectively monitored by photoluminescence (PL) spectroscopy. As the luminescent properties of Eu3+ from within a host lattice are strongly influenced by the coordination geometry of the ion, we used the emission spectrum to monitor structural changes of ZrO2. We synthesized Eu3+-doped and Eu3+/Y3+-codoped samples via the coprecipitation method, followed by calcination. We promoted the martensitic transformation by applying mechanical compression cycles with an increasing pressure, and deduced the consequential structural changes from the relative intensities of the (D0F2)-D-5-F-7 hypersensitive transition...
Praseodymium doped zirconia powder (ZrO2: (0.53 at%) Pr3+) was prepared by a co-precipitation techni...
Eu3(+)-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods...
Novel crystalline tetragonal ZrO2: Eu3+ phosphors were prepared by a facile and efficient low temper...
In this work, we demonstrate that the martensitic t m phase transformation of ZrO2 powder stabilized...
In this work, we demonstrate that the martensitic t m phase transformation of ZrO2 powder stabilized...
In this work, we demonstrate that the martensitic t m phase transformation of ZrO2 powder stabilized...
In this work, we demonstrate that the martensitic t m phase transformation of ZrO2 powder stabilized...
In this work, we demonstrate that the martensitic t m phase transformation of ZrO2 powder stabilized...
Rare-earth (RE) element-based materials for optical applications have received increasing attention ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Praseodymium doped zirconia powder (ZrO2: (0.53 at%) Pr3+) was prepared by a co-precipitation techni...
Eu3(+)-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods...
Novel crystalline tetragonal ZrO2: Eu3+ phosphors were prepared by a facile and efficient low temper...
In this work, we demonstrate that the martensitic t m phase transformation of ZrO2 powder stabilized...
In this work, we demonstrate that the martensitic t m phase transformation of ZrO2 powder stabilized...
In this work, we demonstrate that the martensitic t m phase transformation of ZrO2 powder stabilized...
In this work, we demonstrate that the martensitic t m phase transformation of ZrO2 powder stabilized...
In this work, we demonstrate that the martensitic t m phase transformation of ZrO2 powder stabilized...
Rare-earth (RE) element-based materials for optical applications have received increasing attention ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Eu3+-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods, ...
Praseodymium doped zirconia powder (ZrO2: (0.53 at%) Pr3+) was prepared by a co-precipitation techni...
Eu3(+)-doped zirconia nanopowders were prepared by the sol-gel technique using two different methods...
Novel crystalline tetragonal ZrO2: Eu3+ phosphors were prepared by a facile and efficient low temper...