Exploration of photocatalytic activities of titanosilicate ETS-10 and transition metal incorporated ETS-10

Microporous titanium silicate [ETS-10, (Na,K) 2TiSi 5O 13] and transition metal ions incorporated titanium silicates were investigated for the photocatalytic decomposition of acetaldehyde. ETS-10 with a photoexcitable linear chain of titanium and oxygen decomposed acetaldehyde under UV radiation and...

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Published inMicroporous and mesoporous materials Vol. 67; no. 2; pp. 181 - 187
Main Authors Uma, Sitharaman, Rodrigues, Shalini, Martyanov, Igor N., Klabunde, Kenneth J.
Format Journal Article
LanguageEnglish
Published Amsterdam Elsevier Inc 06.02.2004
Elsevier
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Abstract Microporous titanium silicate [ETS-10, (Na,K) 2TiSi 5O 13] and transition metal ions incorporated titanium silicates were investigated for the photocatalytic decomposition of acetaldehyde. ETS-10 with a photoexcitable linear chain of titanium and oxygen decomposed acetaldehyde under UV radiation and the rate constant for the decrease of acetaldehyde (0.010 m −1) is comparable to that of pure TiO 2 (0.013 m −1). Interesting visible ( λ>420 nm) and UV light activity was found for ETS-10 samples incorporated with Cr and Co [ETS-10 with Cr(or)Co/Ti=0.05] and for materials synthesized by ion-exchange reactions such as Co-ETS-10 and Ag-ETS-10. All other ion-exchanged (Na,K) 2− x M ′ x TiSi 5O 13 (M ′=Cr(III), Mn(II), Fe(III), Co(II), Ni(II), and Cu(II)) samples were found to be active photocatalysts that can decompose acetaldehyde under UV radiation. Materials synthesized were characterized by a variety of techniques such as powder X-ray diffraction, BET surface area and UV–VIS diffuse reflectance measurements.
AbstractList Microporous titanium silicate [ETS-10, (Na,K) 2TiSi 5O 13] and transition metal ions incorporated titanium silicates were investigated for the photocatalytic decomposition of acetaldehyde. ETS-10 with a photoexcitable linear chain of titanium and oxygen decomposed acetaldehyde under UV radiation and the rate constant for the decrease of acetaldehyde (0.010 m −1) is comparable to that of pure TiO 2 (0.013 m −1). Interesting visible ( λ>420 nm) and UV light activity was found for ETS-10 samples incorporated with Cr and Co [ETS-10 with Cr(or)Co/Ti=0.05] and for materials synthesized by ion-exchange reactions such as Co-ETS-10 and Ag-ETS-10. All other ion-exchanged (Na,K) 2− x M ′ x TiSi 5O 13 (M ′=Cr(III), Mn(II), Fe(III), Co(II), Ni(II), and Cu(II)) samples were found to be active photocatalysts that can decompose acetaldehyde under UV radiation. Materials synthesized were characterized by a variety of techniques such as powder X-ray diffraction, BET surface area and UV–VIS diffuse reflectance measurements.
Author Martyanov, Igor N.
Uma, Sitharaman
Klabunde, Kenneth J.
Rodrigues, Shalini
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Issue 2
Keywords Ion-exchange
Transition metal
ETS-10
Decomposition of acetaldehyde
Photocatalysis
Carbon dioxide
Aldehyde
Porous material
Acetaldehyde
Heterogeneous catalysis
Microporosity
Ultraviolet radiation
Titanium silicate
Transition metal Ions
Preparation
Visible radiation
Oxidation
Gaseous phase reaction
Modified material
Language English
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Snippet Microporous titanium silicate [ETS-10, (Na,K) 2TiSi 5O 13] and transition metal ions incorporated titanium silicates were investigated for the photocatalytic...
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SubjectTerms Chemistry
Decomposition of acetaldehyde
ETS-10
Exact sciences and technology
General and physical chemistry
Ion-exchange
Photocatalysis
Photochemistry
Physical chemistry of induced reactions (with radiations, particles and ultrasonics)
Transition metal
Title Exploration of photocatalytic activities of titanosilicate ETS-10 and transition metal incorporated ETS-10
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