4.7 Article

Different CdSeTe structure determined photoelectrocatalytic reduction performance for carbon dioxide

Journal

JOURNAL OF COLLOID AND INTERFACE SCIENCE
Volume 496, Issue -, Pages 327-333

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jcis.2016.11.054

Keywords

CdSeTe nanoparticles; CdSeTe nanosheets; Photoelectrocatalytic reduction; Carbon dioxide

Funding

  1. National Natural Science Foundation of China [21203114]
  2. Planning Project of Science and Technology in Colleges of Shandong Province [J14LC16]
  3. Shandong Jingbo Holdings Corporation

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CdSeTe nanoparticles (CdSeTe NPs)/TiO2 nanotubes (TiO2 NTs) and CdSeTe nanosheets (CdSeTe NSs)/TiO2 NTs were fabricated by photoelectric deposition method and hydrothermal method, respectively. The band gap of the CdSeTe NPs/TiO2 NTs (1.24 eV) is narrower than that of the CdSeTe NSs/TiO2NTs (1.48 eV). The photoelectrochemical conversion efficiency of the CdSeTe NPs/Ti02 NTs is 2.72 times larger than that of the CdSeTe NSs/TiO2 NTs, manifesting that the CdSeTe NPs/TiO2 NTs possessed more excellent photocatalytic performance. Furthermore, the current density of electrocatalytic reduction CO2 on the CdSeTe NPs/Ti02 NTs was 2.47 times larger than that of the CdSeTe NSs/TiO2 NTs, showing the excellent electrocatalytic performance of the CdSeTe NPs/TiO2 NTs. The major product methanol was detected in the PEC reduction process on the two as-prepared materials. The yield reached 18.57 mmol L-(1) after 300 min on CdSeTe NPs/TiO2NTs, which is 16 times larger than that of CdSeTe NSs/TiO2 NTs. (C) 2016 Elsevier Inc. All rights reserved.

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