Photocatalysts
Nanotechnology

US Patent Links and Articles Links
From 8/25/2008

 

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US Patents

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Journal Articles

7/18/2008

Preparation of titanium dioxide photocatalyst loaded onto activated carbon support using chemical vapor deposition: A review paper
(209-219) Journal of Hazardous Materials 157  #2-3 (2008)

Efficacy of titanium dioxide photocatalyst for inhibition of bacterial colonization on percutaneous implants 
(p 530-540)
Journal of Biomedical Materials Research 86B #2 (2008)
Abstract

Visible-Light-Induced Photocatalyst Based on Nickel Titanate Nanoparticles
(4750 – 4753) Industrial & Engineering Chemistry Research 47 #14 (2008)
Abstract 

Hierarchical WO3 Hollow Shells: Dendrite, Sphere, Dumbbell, and Their Photocatalytic Properties
(p 1922-1928)
Advanced Functional Materials 18  #13 (2008)
Abstract

7/11/2008

The origins of photocatalysis
(311-314) Journal of Porous Materials 15 #3 (2008)

6/20/2008

Exchanged zeolites with transition metals of the first period as photocatalyts for n-hexadecane degradation
(52-57) Journal of Molecular Catalysis A: Chemical 288 #1-2 (2008)

Visible light induced photocatalytic activity of rare earth titania nanocomposites
(151-158) Journal of Molecular Catalysis A: Chemical 287 #1-2 (2008)

Silicon Quantum Dots: A General Photocatalyst for Reduction, Decomposition, and Selective Oxidation Reactions
(12090 – 12091) Journal of the American  Chemical Society 130 #40 (2008)
Abstract  

Photocatalytic Oxidation of Aqueous Ammonia over Microwave-Induced Titanate Nanotubes
(4507 – 4512) Environmental  Science & Technology 42 #12 (2008)
Abstract 

Study on preparation of nano-TiO2 by W/O microemulsion reactor and it photocatalytic degradation of air pollution
(392-395) Colloid Journal 70 #3 (2008)

Gold Nanoparticle Incorporation into Porous Titania Networks Using an Agarose Gel Templating Technique for Photocatalytic Applications
(3917 – 3926) Chemistry of  Materials 20 #12 (2008)
Abstract 

6/13/2008

Photocatalytic activity of polymer-modified ZnO under visible light irradiation
(80-85) Journal of Hazardous Materials 156  #1-3 (2008)

Photocatalytic degradation of organic dyes with manganese-doped ZnO nanoparticles
(194-200) Journal of Hazardous Materials 156  #1-3 (2008)

Effect of Fe-doped TiO2 nanoparticle derived from modified hydrothermal process on the photocatalytic degradation performance on methylene blue
(590-594) Journal of Hazardous Materials 155  #3 (2008)

Development of photocatalytic TiO2 nanofibers by electrospinning and its application to degradation of dye pollutants
(118-127) Journal of Hazardous Materials 154  #1-3 (2008)  

Photocatalytic degradation of methyl red dye by silica nanoparticles
(245-253) Journal of Hazardous Materials 154  #1-3 (2008)  

Apatite-Coated Ag/AgBr/TiO2 Visible-Light Photocatalyst for Destruction of Bacteria
(9552 – 9553) Journal of the American  Chemical Society 130 #31 (2008)
Abstract 

Fabrication of a TiO2/carbon nanowall heterojunction and its photocatalytic ability
(1126-1132) Carbon 46 #8 (2008)

6/6/2008

Temperature tunability of size in CdS nanoparticles and size dependent photocatalytic degradation of nitroaromatics
(128-135) Journal of Colloid and Interface Science 322 #1 (2008)

Laponite-supported titania photocatalysts
(190-195) Journal of Colloid and Interface Science 322 #1 (2008)

Mesoporous Titania Spheres with Tunable Chamber Stucture and Enhanced Photocatalytic Activity
(8406 – 8407) Journal of the American  Chemical Society 130 #27 (2008)
Abstract  

5/23/2008

Fabrication of a TiO2−BDD Heterojunction and its Application As a Photocatalyst for the Simultaneous Oxidation of an Azo Dye and Reduction of Cr(VI)
(3791 – 3796) Environmental  Science & Technology 42 #10 (2008)
Abstract 

Dramatic Visible Photocatalytic Degradation Performances Due to Synergetic Effect of TiO2 with PANI
(3803 – 3807) Environmental  Science & Technology 42 #10 (2008)
Abstract  

Facile preparation of micro–mesoporous carbon-doped TiO2 photocatalysts with anatase crystalline walls under template-free condition
(
2453 – 2455) Chemical Communications #21 (2008)

5/16/2008

Self-Assembled 3-D Architectures of BiOBr as a Visible Light-Driven Photocatalyst
(2937 – 2941) Chemistry of  Materials 20 #9 (2008)
Abstract

Immobilization of TiO2 films on activated carbon fiber and their photocatalytic degradation properties for dye compounds with different molecular size
(1846-1850) Catalysis Communications 9 #9 (2008)

Role of phosphorus in synthesis of phosphated mesoporous TiO2 photocatalytic materials by EISA method
(5191-5198) Applied Surface Science 254  #16 (2008)

Preparation of S-TiO2 photocatalyst and photodegradation of L-acid under visible light
(5276-5280) Applied Surface Science 254  #16 (2008)

Visible-light-driven titania photocatalyst co-doped with nitrogen and ferrum
(4726-4731) Applied Surface Science 254  #15 (2008)

Visible-light-induced degradation of formaldehyde over titania photocatalyst co-doped with nitrogen and nickel
(4780-4785) Applied Surface Science 254  #15 (2008)

A visible light-sensitive tungsten carbide/tungsten trioxde composite photocatalyst
(# 182107) Applied Physics Letters 92 #18 (2008)
Abstract

Photopolymerization of water-soluble acrylic monomers induced by colloidal CdS and Cd x Zn1 x S nanoparticles
(489-498 ) Colloid and Polymer Science 286 #5 (2008)

The Effects of Sintering on the Photocatalytic Activity of N-Doped TiO2 Nanoparticles
(2629 – 2636) Chemistry of  Materials 20 #8 (2008)
Abstract

Copper (II) phthalocyanines immobilized on alumina and encapsulated inside zeolite-X and their applications in photocatalytic degradation of cyanide: A comparative study
(16-24) Applied Catalysis A: General 340 #1 (2008)

Visible-Light Photocatalysis in Titania-Based Mesoporous Thin Films 
(p 1493-1498)
Advanced Materials 20 #8 (2008)
Abstract

ZnO Hierarchical Micro/Nanoarchitectures: Solvothermal Synthesis and Structurally Enhanced Photocatalytic Performance 
(p 1047-1056)
Advanced Functional Materials 18  #7 (2008)
Abstract  

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Roger D. Corneliussen
Editor
www.nanotechnology-profit.com

Tel: 610 363 9920
Fax: 610 363 9921
E-Mail: cornelrd@bee.net

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Copyright 2008 by Roger D. Corneliussen.
No part of this transmission is to be duplicated in any manner or forwarded by electronic mail without the express written permission of Roger D. Corneliussen
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