TY - JOUR
T1 - One pot synthesis of mesostructured non-silica oxides nanocrystallites
AU - Chen, Hangrong
AU - Yan, Jina
AU - Ye, Zhengqing
AU - Zhang, Liangxia
AU - Gao, Jianhua
AU - Shi, Jianlin
AU - Yan, Dongsheng
PY - 2009
Y1 - 2009
N2 - Some typical worm-like mesoporous non-silica oxides, titania, zirconia, and dopants-incorporated zirconia oxides, with homogeneous nanocrystalline framework and narrow pore-size distribution have been synthesized via a facile process templated from composite surfactant of a long chain poly block copolymer combined with non-ionic alkyl-PEO surfactant (Brij56) under the hydrothermal condition. Bi- or even multi-component zirconia-based composites with further addition of other oxide compositions can also be obtained with well-defined mesoporous structure and nanocrystalline framework. These mesostructured oxides/composite oxides show high surface area, well-crystallization framework, and high thermal stability. XRD, nitrogen adsorption analysis, TEM, and EDX were used for the structural characterizations. The use of non-ionic block-copolymer surfactant is believed to be responsible for the crystallization of mesoporous framework and high thermal stability at high temperature without structural collapse.
AB - Some typical worm-like mesoporous non-silica oxides, titania, zirconia, and dopants-incorporated zirconia oxides, with homogeneous nanocrystalline framework and narrow pore-size distribution have been synthesized via a facile process templated from composite surfactant of a long chain poly block copolymer combined with non-ionic alkyl-PEO surfactant (Brij56) under the hydrothermal condition. Bi- or even multi-component zirconia-based composites with further addition of other oxide compositions can also be obtained with well-defined mesoporous structure and nanocrystalline framework. These mesostructured oxides/composite oxides show high surface area, well-crystallization framework, and high thermal stability. XRD, nitrogen adsorption analysis, TEM, and EDX were used for the structural characterizations. The use of non-ionic block-copolymer surfactant is believed to be responsible for the crystallization of mesoporous framework and high thermal stability at high temperature without structural collapse.
UR - https://www.scopus.com/pages/publications/72049111748
U2 - 10.1007/s10853-009-3598-1
DO - 10.1007/s10853-009-3598-1
M3 - 文章
AN - SCOPUS:72049111748
SN - 0022-2461
VL - 44
SP - 6531
EP - 6537
JO - Journal of Materials Science
JF - Journal of Materials Science
IS - 24
ER -