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      <dc:title>Facile synthesis of visible-responsive photocatalytic Eu-doped layered double hydroxide for selective removal of NOx pollutant</dc:title>
      <dc:creator>Pastor Espejo, Adrián</dc:creator>
      <dc:creator>Chen, Chunping</dc:creator>
      <dc:creator>De Miguel Rojas, Gustavo</dc:creator>
      <dc:creator>Martín-Jiménez, Francisco de Paula</dc:creator>
      <dc:creator>Cruz Yusta, Manuel</dc:creator>
      <dc:creator>O'Hare, Dermot M.</dc:creator>
      <dc:creator>Pavlovic Milicevic, Ivana</dc:creator>
      <dc:creator>Sánchez-Granados, Luis</dc:creator>
      <dc:subject>Óxidos de nitrógeno</dc:subject>
      <dc:description>Efficient nitrogen oxides (NOx) removal from the urban atmosphere is still a target for the researchers. Herein, a Zn2Al-CO3 based layered double hydroxide (LDH) was doped with increasing amounts of Eu3+ (0.01–0.04) and the photocatalytic oxidation of NOx gases was investigated. The LDHs were synthesized by a facile coprecipitation method at room temperature and ambient pressure. The successful Eu3+ substitution in the LDH layers induces a shift in the M−O bonds that modifies the electronic band structure of the doped photocatalysts. Compared to the undoped LDH, the NOx removal efficiency was enhanced by ∼ 17–25 % under UV–Vis light irradiation. Remarkably, a NOx removal efficiency of ∼ 47 % was attained by the optimally doped LDH under Visible irradiation (420 nm), surpassing raw LDH (∼ 9 %). Moreover, the Eu3+ doped LDHs retained its photocatalytic efficiency during long periods of irradiation during consecutive tests with high selectivity (>90 %). Photoluminescence studies indicated that Eu3+ was located in a non-centrosymmetric position, thereby producing structural disorder within the lattice. Eu doping promoted charge separation and a higher production of ⋅OH radicals as verified by time-resolved photoluminescence and electron paramagnetic resonance, respectively. We believe this work reports unprecedent results obtained by Eu-doping of Zn2Al-based LDHs under visible light for NOx photooxidation and serves as a new strategy to prepare functional LDHs for other photocatalytic applications</dc:description>
      <dc:date>2025-01-09T10:05:09Z</dc:date>
      <dc:date>2025-01-09T10:05:09Z</dc:date>
      <dc:date>2023</dc:date>
      <dc:type>journal article</dc:type>
      <dc:identifier>Adrián Pastor, Chunping Chen, Gustavo de Miguel, Francisco Martín, Manuel Cruz-Yusta, Dermot O'Hare, Ivana Pavlovic, Luis Sánchez. Facile synthesis of visible-responsive photocatalytic Eu-doped layered double hydroxide for selective removal of NOx pollutant, Chemical Engineering Journal, Volume 471, 2023, 144464</dc:identifier>
      <dc:identifier>https://www.sciencedirect.com/science/article/pii/S1385894723031959</dc:identifier>
      <dc:identifier>https://hdl.handle.net/10630/36040</dc:identifier>
      <dc:identifier>10.1016/j.cej.2023.144464</dc:identifier>
      <dc:language>eng</dc:language>
      <dc:relation>http://hdl.handle.net/10396/25930</dc:relation>
      <dc:rights>http://creativecommons.org/licenses/by-nc-nd/4.0/</dc:rights>
      <dc:rights>open access</dc:rights>
      <dc:rights>Attribution-NonCommercial-NoDerivatives 4.0 Internacional</dc:rights>
      <dc:publisher>Elsevier</dc:publisher>
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