Skip to content
RDL
Network
Ekosistem
Uygulama değiştir
EN
Hakkımızda
SSS
Giriş yap
Başla
General Route to Homogeneous, Mesoporous, Multicomponent Oxides Based on the Thermolytic Transformation of Molecular Precursors in Non-polar Media — Joshua W. Kriesel (2001) | RDL Network
Back
Cite
Save
Save for later
Share
Home
Publications
General Route to Homogeneous, Mesoporous, Multicomponent Oxides Based on the Thermolytic Transformation of Molecular Precursors in Non-polar Media
Shared by
T Don Tilley
University of California, Berkeley
General Route to Homogeneous, Mesoporous, Multicomponent Oxides Based on the Thermolytic Transformation of Molecular Precursors in Non-polar Media
Article
2001
en
Authors
JK
Joshua W. Kriesel
MS
Melissa Sander
T Don Tilley
University of California, Berkeley
Discussion
(0)
Sign in
to like and join the discussion.
No comments yet. Be the first to comment.
Related publications
Article
2001
Block Copolymer-Assisted Synthesis of Mesoporous, Multicomponent Oxides by Nonhydrolytic, Thermolytic Decomposition of Molecular Precursors in Nonpolar Media
Joshua W. Kriesel
,
Melissa Sander
,
T Don Tilley
Article
2001
Thermolytic Transformation of Tris(alkoxy)siloxychromium(IV) Single-Source Molecular Precursors to Catalytic Chromia−Silica Materials
Kyle L. Fujdala
,
T Don Tilley
Article
2000
Thermolytic Molecular Precursor Route to Active and Selective Vanadia–Zirconia Catalysts for the Oxidative Dehydrogenation of Propane
Jonathan L. Male
,
Heiko G. Niessen
,
Alexis Bell
,
T Don Tilley
Article
2006
Thermolytic molecular precursor route to site-isolated vanadia–silica materials and their catalytic performance in methane selective oxidation
Daniel A. Ruddy
,
Nicholas Ohler
,
Alexis Bell
,
T Don Tilley
Article
2005
A fluoride-catalyzed sol–gel route to catalytically active non-ordered mesoporous silica materials in the absence of surfactants
Elena Reale
,
Antonio Leyva‐Pérez
,
Avelino Avelino
,
Cristina Martı́nez
,
Hermenegildo Garcı́a
,
Fernando Rey
Journal of Materials Chemistry
Discussion(0)
No comments yet. Be the first to comment.