Two-step synthesis of Sillén–Aurivillius type oxychlorides to enhance their photocatalytic activity for visible-light-induced water splitting

A two-step synthesis via the polymerized complex method (2PC) was developed to improve the photocatalytic activity of a Sillén–Aurivillius oxychloride Bi 4 TaO 8 Cl and related oxychlorides for O 2 evolution ( i.e. , water oxidation) in Z-scheme water splitting under visible light. This method uses...

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Veröffentlicht in:Journal of materials chemistry. A, Materials for energy and sustainability Materials for energy and sustainability, 2018, Vol.6 (23), p.10909-10917
Hauptverfasser: Nakada, Akinobu, Saeki, Akinori, Higashi, Masanobu, Kageyama, Hiroshi, Abe, Ryu
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Sprache:eng
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Zusammenfassung:A two-step synthesis via the polymerized complex method (2PC) was developed to improve the photocatalytic activity of a Sillén–Aurivillius oxychloride Bi 4 TaO 8 Cl and related oxychlorides for O 2 evolution ( i.e. , water oxidation) in Z-scheme water splitting under visible light. This method uses the polymerized complex reaction to prepare a precursor oxide ( e.g. , Bi 3 TaO 7 ), which is subsequently calcined with BiOCl to yield a pure Bi 4 TaO 8 Cl phase with smaller particle sizes than those obtained via a conventional single-step solid-state reaction (1SSR). Furthermore, time-resolved microwave conductivity (TRMC) measurements revealed that the Bi 4 TaO 8 Cl sample prepared by the 2PC method at 973 K (2PC_973) achieved more than five times longer-lived charge separation than that by the 1SSR at 973 K (1SSR_973), which probably arises from lower numbers of charge-recombination centers produced in the 2PC synthesis. Thus, the synthesized Bi 4 TaO 8 Cl samples exhibited a higher rate of O 2 evolution ( e.g. , 20 μmol h −1 for 2PC_973 vs. 4 μmol h −1 for 1SSR_973). Overall water splitting into stoichiometric H 2 and O 2 was demonstrated by constructing a Z-scheme photocatalytic system consisting of 2PC_973, Ru-modified SrTiO 3 :Rh, and an Fe 3+ /Fe 2+ shuttle redox mediator, with an external quantum efficiency of 0.9% at 420 nm, which was much higher than that using the sample derived from the optimized 1SSR method at 1173 K (0.4%). The 2PC synthesis was successfully extended to other Sillén–Aurivillius type oxychlorides, Bi 4 NbO 8 Cl, Bi 6 NbWO 14 Cl and Sr 2 Bi 3 Ta 2 O 11 Cl, all of which exhibited superior water splitting activity compared to those prepared through the 1SSR.
ISSN:2050-7488
2050-7496
DOI:10.1039/C8TA03321H