High Photocatalytic Activity of CdS modified TiO Nanofiber Heteroarchitectures via an Electrospinning Method Yue Li  Shenglian Luo ab  Chengbin Liu a  Shanli Yang State Key Laboratory of ChemoBiosens
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High Photocatalytic Activity of CdS modified TiO Nanofiber Heteroarchitectures via an Electrospinning Method Yue Li Shenglian Luo ab Chengbin Liu a Shanli Yang State Key Laboratory of ChemoBiosens

R China School of Environment and Chemical Engineering Nanchang Hangkong University Nanchang 330063 Peoples Republic of China Keywords TiO nanofibers CdS nanoparticles electrospinning photocatalysis degradation Abstract 1 Introduction 2012 Asia Paci

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High Photocatalytic Activity of CdS modified TiO Nanofiber Heteroarchitectures via an Electrospinning Method Yue Li Shenglian Luo ab Chengbin Liu a Shanli Yang State Key Laboratory of ChemoBiosens




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Presentation on theme: "High Photocatalytic Activity of CdS modified TiO Nanofiber Heteroarchitectures via an Electrospinning Method Yue Li Shenglian Luo ab Chengbin Liu a Shanli Yang State Key Laboratory of ChemoBiosens"— Presentation transcript:


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High Photocatalytic Activity of CdS modified TiO Nanofiber Heteroarchitectures via an Electrospinning Method Yue Li , Shenglian Luo a,b , Chengbin Liu a , Shanli Yang State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Chemistry and Chemical Engineering, Hunan University, Hunan, Changsha 410082, P. R. China School of Environment and Chemical Engineering, Nanchang Hangkong University, Nanchang 330063, Peoples Republic of China Keywords: TiO nanofibers; CdS nanoparticles; electrospinning; photocatalysis; degradation. Abstract. 1. Introduction 2012 Asia Pacific

Conference on Environmental Science and Technology Advances in Biomedical Engineering, Vol.6 978-1-612 75-003-3 /10/$25.00 2012 IERI APEST2012
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. 2. Experimental Section 2.1 Fabrication of TiO nanofibers 2.2 Fabrication of CdS nanopa rticles deposition on TiO nanofibers 3. Results and Discussion 3.1. Photocatalyst Characterization (a) (b)
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(1) (2) (3) (4) 3.2 Photocatalytic degradation of MB 4. Conclusion
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5. Acknowledgements References 23 13 113 353 95 44 39 293 114 13 19