| ชื่อเรื่อง | : | Novel-structured electrospun TiO2/CuO composite nanofibers for high efficient photocatalytic cogeneration of clean water and energy from dye wastewater |
| นักวิจัย | : | Lee, Siew Siang , Bai, Hongwei , Liu, Zhaoyang , Sun, Darren Delai |
| คำค้น | : | DRNTU::Engineering::Environmental engineering::Water treatment |
| หน่วยงาน | : | Nanyang Technological University, Singapore |
| ผู้ร่วมงาน | : | - |
| ปีพิมพ์ | : | 2556 |
| อ้างอิง | : | Lee, S. S., Bai, H., Liu, Z., & Sun, D. D. (2013). Novel-structured electrospun TiO2/CuO composite nanofibers for high efficient photocatalytic cogeneration of clean water and energy from dye wastewater. Water Research, 47(12), 4059-4073. , 0043-1354 , http://hdl.handle.net/10220/17799 , http://dx.doi.org/10.1016/j.watres.2012.12.044 |
| ที่มา | : | - |
| ความเชี่ยวชาญ | : | - |
| ความสัมพันธ์ | : | Water research |
| ขอบเขตของเนื้อหา | : | - |
| บทคัดย่อ/คำอธิบาย | : | It is still a challenge to photocatalytically cogenerate clean water and energy from dye wastewater owing to the relatively low photocatalytic efficiency of photocatalysts. In this study, novel-structured TiO2/CuO composite nanofibers were successfully fabricated via facile electrospinning. For the first time, the TiO2/CuO composite nanofibers demonstrated multifunctional ability for concurrent photocatalytic organic degradation and H2 generation from dye wastewater. The enhanced photocatalytic activity of TiO2/CuO composite nanofibers was ascribed to its excellent synergy of physicochemical properties: 1) mesoporosity and large specific surface area for efficient substrate adsorption, mass transfer and light harvesting; 2) red-shift of the absorbance spectra for enhanced light utilization; 3) long nanofibrous structure for efficient charge transfer and ease of recovery, 4) TiO2/CuO heterojunctions which enhance the separation of electrons and holes and 5) presence of CuO which serve as co-catalyst for the H2 production. The TiO2/CuO composite nanofibers also exhibited rapid settleability by gravity and uncompromised reusability. Thus, the as-synthesized TiO2/CuO composite nanofibers represent a promising candidate for highly efficient concurrent photocatalytic organic degradation and clean energy production from dye wastewater. NRF (Natl Research Foundation, S’pore) |
| บรรณานุกรม | : |
Lee, Siew Siang , Bai, Hongwei , Liu, Zhaoyang , Sun, Darren Delai . (2556). Novel-structured electrospun TiO2/CuO composite nanofibers for high efficient photocatalytic cogeneration of clean water and energy from dye wastewater.
กรุงเทพมหานคร : Nanyang Technological University, Singapore. Lee, Siew Siang , Bai, Hongwei , Liu, Zhaoyang , Sun, Darren Delai . 2556. "Novel-structured electrospun TiO2/CuO composite nanofibers for high efficient photocatalytic cogeneration of clean water and energy from dye wastewater".
กรุงเทพมหานคร : Nanyang Technological University, Singapore. Lee, Siew Siang , Bai, Hongwei , Liu, Zhaoyang , Sun, Darren Delai . "Novel-structured electrospun TiO2/CuO composite nanofibers for high efficient photocatalytic cogeneration of clean water and energy from dye wastewater."
กรุงเทพมหานคร : Nanyang Technological University, Singapore, 2556. Print. Lee, Siew Siang , Bai, Hongwei , Liu, Zhaoyang , Sun, Darren Delai . Novel-structured electrospun TiO2/CuO composite nanofibers for high efficient photocatalytic cogeneration of clean water and energy from dye wastewater. กรุงเทพมหานคร : Nanyang Technological University, Singapore; 2556.
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