Glucose-doped titania electrodes were prepared from titanium alkoxide sols containing glucose in order to examine the validity of the fuel material concentrated on the photocatalyst surface. The observed photocurrent and CO(2) and H(2)O productions indicated that the oxidation of the glucose enhanced the generation of electricity during the UV irradiation. Steam treatment of the electrodes improved the glucose oxidation and the photocurrent. However, refluxing of the precursor sol did not improve them. Not only the titania conductivity, but also the contact between the glucose and titania is important in order to obtain a high photofuel electric conversion. The concentration of the fuel material on the photocatalyst surface improved the ene...
Titania has been the focus of attention for several decades owing to its chemical stability, non-tox...
Dye-dispersing allophane-titania composite electrodes were prepared from titanium alkoxide sols cont...
SSCI-VIDE+CARE:CDFA+IBD:FDA:MET:CGU:NESInternational audienceIn order to find alternatives to the fo...
Glucose-doped titania electrodes were prepared from titanium alkoxide sols containing glucose in ord...
Benzoic acid-doped titania electrodes were prepared from titanium alkoxide sols containing benzoic a...
Allophane-titania nanocomposite electrodes for photofuel cells were prepared from titanium alkoxide ...
Influences of the titania nanostructure and dye dispersion in a dye-doped titania electrode on its p...
Dye-dispersing titania electrodes were prepared from the dye-containing titanium alkoxide sols by a ...
Hydrogen production has been investigated through the photoreforming of glucose, as model molecule r...
Amorphous dye-containing titania gel films were prepared on ITO electrodes coated with a crystalline...
Summarization: Photocatalytic mineralization of ethanol in the presence of oxygen has been studied i...
The visible-light mediated selective photo-oxidation of glucose using unmodified TiO2 as a catalyst ...
We analyze the main nanochemistry factors affecting photovoltaic performance in TiO2 employed as wid...
The titania and dye-dispersing titania electrodes were prepared by a nitric acid-catalyzed sol-gel p...
Multiwalled carbon nanotubes (MWCNTs) were incorporated into amorphous dye-doped titania gel by the ...
Titania has been the focus of attention for several decades owing to its chemical stability, non-tox...
Dye-dispersing allophane-titania composite electrodes were prepared from titanium alkoxide sols cont...
SSCI-VIDE+CARE:CDFA+IBD:FDA:MET:CGU:NESInternational audienceIn order to find alternatives to the fo...
Glucose-doped titania electrodes were prepared from titanium alkoxide sols containing glucose in ord...
Benzoic acid-doped titania electrodes were prepared from titanium alkoxide sols containing benzoic a...
Allophane-titania nanocomposite electrodes for photofuel cells were prepared from titanium alkoxide ...
Influences of the titania nanostructure and dye dispersion in a dye-doped titania electrode on its p...
Dye-dispersing titania electrodes were prepared from the dye-containing titanium alkoxide sols by a ...
Hydrogen production has been investigated through the photoreforming of glucose, as model molecule r...
Amorphous dye-containing titania gel films were prepared on ITO electrodes coated with a crystalline...
Summarization: Photocatalytic mineralization of ethanol in the presence of oxygen has been studied i...
The visible-light mediated selective photo-oxidation of glucose using unmodified TiO2 as a catalyst ...
We analyze the main nanochemistry factors affecting photovoltaic performance in TiO2 employed as wid...
The titania and dye-dispersing titania electrodes were prepared by a nitric acid-catalyzed sol-gel p...
Multiwalled carbon nanotubes (MWCNTs) were incorporated into amorphous dye-doped titania gel by the ...
Titania has been the focus of attention for several decades owing to its chemical stability, non-tox...
Dye-dispersing allophane-titania composite electrodes were prepared from titanium alkoxide sols cont...
SSCI-VIDE+CARE:CDFA+IBD:FDA:MET:CGU:NESInternational audienceIn order to find alternatives to the fo...