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Novel pure α-, ß-, and mixed-phase α/ß-Bi2O3 photocatalysts for enhanced organic dye degradation under both visible light and solar irradiation.
Kanagaraj, Thamaraiselvi; Murphin Kumar, Paskalis Sahaya; Thomas, Reshma; Kulandaivelu, Ravichandran; Subramani, Rajeswari; Mohamed, Roshan Noor; Lee, Sijin; Chang, S Woong; Chung, W Jin; Nguyen, D Duc.
Afiliação
  • Kanagaraj T; Department of Analytical Chemistry, University of Madras, Chennai, Tamilnadu, India.
  • Murphin Kumar PS; Department of Civil and Environmental Engineering, Yonsei University, Seoul, 03722, Republic of Korea.
  • Thomas R; Department of Analytical Chemistry, University of Madras, Chennai, Tamilnadu, India.
  • Kulandaivelu R; Department of Analytical Chemistry, University of Madras, Chennai, Tamilnadu, India. Electronic address: raavees@gmail.com.
  • Subramani R; Department of Physics, Muthayammal College of Arts & Science, Rasipuram, Namakkal, Tamilnadu, India.
  • Mohamed RN; Department of Pediatric Dentistry, Faculty of Dentistry, Taif University, PO Box 11099, Taif, 21944, Saudi Arabia.
  • Lee S; Department of Environmental Energy Engineering, Kyonggi University, Republic of Korea.
  • Chang SW; Department of Environmental Energy Engineering, Kyonggi University, Republic of Korea.
  • Chung WJ; Department of Environmental Energy Engineering, Kyonggi University, Republic of Korea.
  • Nguyen DD; Department of Environmental Energy Engineering, Kyonggi University, Republic of Korea; Faculty of Environmental and Food Engineering, Nguyen Tat Thanh University, 300A Nguyen Tat Thanh, District 4, Ho Chi Minh City, 700000, Vietnam. Electronic address: ngyuenduc@gmail.com.
Environ Res ; 205: 112439, 2022 04 01.
Article em En | MEDLINE | ID: mdl-34856170
ABSTRACT
Combining the pure α- and ß-phases of bismuth oxide enhances its photocatalytic activity under both visible and solar irradiation. α-Bi2O3, ß-Bi2O3, and α/ß-Bi2O3 were synthesized by a solvothermal calcination method. The structural, optical, and morphological properties of the as-synthesized catalysts were analyzed using XRD, UV-DRS, XPS, SEM, TEM, and PL. The bandgaps of α/ß-Bi2O3, α-Bi2O3, and ß-Bi2O3 were calculated to be 2.59, 2.73, and 2.34 eV, respectively. The photocatalytic activities of the catalysts under visible and solar irradiation were examined by the degradation of carcinogenic reactive blue 198 and reactive black 5 dyes. The kinetic plots of the degradation reactions followed pseudo-first-order kinetics. α/ß-Bi2O3 exhibited higher photocatalytic activity (∼99%) than α-Bi2O3 and ß-Bi2O3 under visible and solar irradiation. The TOC and COD results confirmed the maximum degradation ability of α/ß-Bi2O3, and the decolorization percentage remained above 90%, even after five cycles under visible irradiation. The photocatalytic dye degradation mechanism employed by α/ß-Bi2O3 was proposed based on active species trapping experiments.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Energia Solar / Luz Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Energia Solar / Luz Idioma: En Ano de publicação: 2022 Tipo de documento: Article