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,* M. Sternberg, X. Wang, N. Szesni, K. Meyer, P. Wasserscheid* Catalysis & Science Technology 2014 , 4 , 936–947 “Toward highly efficient photocatalysis: a flow-through Pt@TiO2@AAO membrane nanoreactor prepared by atomic

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—apatite; SO 3 —organic matter, some gypsum and some pyrite; MgO—dolomite; FeO—iron oxides, TiO 2 —some titanium minerals (anatase); K 2 O—some K-feldspar; and Na 2 O some salt (halite). Table 2 The

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–16302 “Confined Au-Pd ensembles in mesoporous TiO 2 spheres for the photocatalytic oxidation of acetaldehyde”F. Wang, Y. Jiang, * X. Wen, J. Xia, G. Sha, R. Amal * ChemCatChem 2013 , 5 , 3557–3561 “Silver nanoparticles for olefin

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Reaction Kinetics, Mechanisms and Catalysis
Authors:
Viorel Chihaia
,
Karl Sohlberg
,
B. Grzybowska-Świerkosz
,
M. Ruszel
,
R. Grabowski
,
L. Kępiński
,
M. A. Małecka
, and
J. Sobczak

Introduction Numerous studies on catalytic performance in various reactions of nanogold particles dispersed on supports [ 1 – 3 ], which followed Haruta's discovery of high activity of nano Au/TiO 2 in CO oxidation [ 4 , 5

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O 5 –WO 3 (or MoO 3 )/TiO 2 is the most commercially used [ 1 ]. This aftertreatment technology starts to be implemented for truck engines and light vehicles for NO x emission control using urea as ammonia source [ 2 , 3 ]. For this process, the

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.740.11.0332. References 1. Vives , S , Meunier , C 2008 Influence of the synthesis route on sol–gel SiO 2 –TiO 2 (1:1) xerogels and powders . Ceram Int 34 : 37 – 44 10.1016/j.ceramint.2006

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Degrad Stab 92 : 70 – 74 10.1016/j.polymdegradstab.2006.09.012 . 2. Laachachia , A , Cocheza , M , Ferriola , M , Lopez-Cuestab , JM , Leroy , E 2005 Influence of TiO 2 and Fe 2 O

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Journal of Thermal Analysis and Calorimetry
Authors:
J. J. H. Lancastre
,
F. M. A. Margaça
,
L. M. Ferreira
,
A. N. Falcão
,
I. M. Miranda Salvado
,
M. S. M. S. Nabiça
,
M. H. V. Fernandes
, and
L. Almásy

-modified CaO–SiO 2 –TiO 2 hybrids and Tsuru et al. [ 9 ] reported the preparation of PDMS-modified CaO–SiO 2 hybrids that showed apatite forming ability after immersion in a simulated body fluid (SBF). Also, Yabuta et al. [ 10 ] developed PDMS-based porous

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. 6. Barreca , D , Comini , E , Ferrucci , AP , Gasparroto , A , Maccato , C , Maragno , C , Sberveglieri , G , Tondello , E . First example of ZnO–TiO 2 nanocomposites by vapor deposition: structure

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.79(10) 1.8(1) K 2 O 0.61(8) 0.61(8) TiO 2 1.36(2) 1

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