Fabrications of Electrospun Mesoporous TiO2 Nanofibers with Various Amounts of PVP and Photocatalytic Properties on Methylene Blue (MB) Photodegradation

Author:

Yoo Sun-Ho,Yoon Han-Sol,Han HyukSu,Na Kyeong-HanORCID,Choi Won-YoulORCID

Abstract

The superior chemical and electrical properties of TiO2 are considered to be suitable material for various applications, such as photoelectrodes, photocatalysts, and semiconductor gas sensors; however, it is difficult to commercialize the applications due to their low photoelectric conversion efficiency. Various solutions have been suggested and among them, the increase of active sites through surface modification is one of the most studied methods. A porous nanostructure with a large specific surface area is an attractive solution to increasing active sites, and in the electrospinning process, mesoporous nanofibers can be obtained by controlling the composition of the precursor solution. This study successfully carried out surface modification of TiO2 nanofibers by mixing polyvinylpyrrolidone with different molecular weights and using diisopropyl azodicarboxylate (DIPA). The morphology and crystallographic properties of the TiO2 samples were analyzed using a field emission electron microscope and X-ray diffraction method. The specific surface area and pore properties of the nanofiber samples were compared using the Brunauer-Emmett-Teller method. The TiO2 nanofibers fabricated by the precursor with K-30 polyvinyl pyrrolidone and diisopropyl azodicarboxylate were more porous than the TiO2 nanofibers without them. The modified nanofibers with K-30 and DIPA had a photocatalytic efficiency of 150% compared to TiO2 nanofibers. Their X-ray diffraction patterns revealed anatase peaks. The average crystallite size of the modified nanofibers was calculated to be 6.27–9.27 nm, and the specific surface area was 23.5–27.4 m2/g, which was more than 150% larger than the 17.2 m2/g of ordinary TiO2 nanofibers.

Funder

National Research Foundation of Korea

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

Reference65 articles.

1. Environmental pollution causes and consequences: A study;Appannagari;North Asian Int. Res. J. Soc. Sci. Humanit.,2017

2. Ezzati, M., Lopez, A., Rodgers, A., and Murray, C. (2004). Comparative Quantification of Health Risks: Global and Regional Burden of Disease Due to Selected Major Risk Factors, WHO.

3. Status of fossil energy resources: A global perspective;Balat;Energy Sources Part B Econ. Plan. Policy,2007

4. Carbon Dioxide and Climate: The Uncontrolled Experiment: Possibly severe consequences of growing CO2 release from fossil fuels require a much better understanding of the carbon cycle, climate change, and the resulting impacts on the atmosphere;Baes;Am. Sci.,1977

5. Monthly, global emissions of carbon dioxide from fossil fuel consumption;Andres;Tellus B Chem. Phys. Meteorol.,2011

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