Microwave assisted synthesis of monodispersed Y2O3 and Y2O3: Eu3+ particles

AM Khachatourian, F Golestani-Fard, H Sarpoolaky… - Ceramics …, 2015 - Elsevier
Monodisperse spherical Y 2 O 3 and Y 2 O 3: Eu 3+ nanocrystalline particles with particle
size between 100 nm and 350 nm were successfully prepared by microwave assisted urea …

Y2O3: Eu3+ hexagonal microprisms: Fast microwave synthesis and photoluminescence properties

S Zhong, J Chen, S Wang, Q Liu, Y Wang… - Journal of alloys and …, 2010 - Elsevier
Y2O3: Eu3+ hexagonal microprisms with uniform morphology and size were successfully
prepared on a large scale via a fast microwave-assisted method followed by a subsequent …

Photolumiscent Properties of Nanorods and Nanoplates Y2O3:Eu3+

AP De Moura, LH De Oliveira, EC Paris, MS Li… - Journal of …, 2011 - Springer
Nanorods and nanoplates of Y 2 O 3: Eu 3+ powders were synthesized through the thermal
decomposition of the Y (OH) 3 precursors using a microwave-hydrothermal method in a very …

[PDF][PDF] Microwave synthesis of monodisperse luminescent Y2− x Eu x O3 powders with spherical particles of predetermined size

AS Vanetsev, EA Karpukhina, IG Chuvashova… - Doklady …, 2010 - academia.edu
EXPERIMENTAL The starting reagents were Y (NO3) 3· 6H2O (chemically pure), Eu (NO3)
3· 6H2O (chemically pure), and (NH2) 2CO (pure). To synthesize Y2 xEuxO3, solutions …

[KİTAP][B] Exploring the role of grain boundary complexions in the sintering of yttria ceramics

S Ma - 2010 - search.proquest.com
A new concept of interface complexions has recently been proposed. It recognizes grain
boundaries as distinct" phases", which have complex and important three-dimensional …

[PDF][PDF] Author's Accepted Manuscript

AM Khachatourian, F Golestani-Fard, H Sarpoolaky… - 2014 - aphys.kth.se
Monodisperse spherical Y2O3 and Y2O3: Eu3+ nanocrystalline particles with particle size
between 100 nm and 350 nm were successfully prepared by microwave assisted urea …

[ALINTI][C] 软化学法合成 Gd_2O_3: Er^(3+) 荧光粉粒径与形貌的控制

肖林久, 万修倩, 谢颖, 崔永**, 汪书东 - **粉体技术, 2016