Photochemical construction of the ZnCdS/PO/FeCoNiPi-MnO composite for efficient tandem application of photocatalytic partial water splitting and overall water splitting

Developing a sacrificial agent-free Zn 1− x Cd x S-based photocatalyst for efficient photocatalytic overall water splitting (POWS) is economical and eco-friendly but a challenging task. Herein, we synthesize a phosphorus (PO) protection layer and non-precious Fe x Co y Ni z P and MnO a cocatalysts o...

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Veröffentlicht in:Journal of materials chemistry. A, Materials for energy and sustainability Materials for energy and sustainability, 2022-08, Vol.1 (3), p.1629-1636
Hauptverfasser: Song, Jingang, Su, Hai-Yan, Fang, Ming, Han, Lu, Chu, Jiayu, Li, Chao, Miao, Rongrong, Yao, Wenlong, Zhang, Gang, You, Ao
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Sprache:eng
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Zusammenfassung:Developing a sacrificial agent-free Zn 1− x Cd x S-based photocatalyst for efficient photocatalytic overall water splitting (POWS) is economical and eco-friendly but a challenging task. Herein, we synthesize a phosphorus (PO) protection layer and non-precious Fe x Co y Ni z P and MnO a cocatalysts on Zn 0.4 Cd 0.6 S by a safe and energy-saving two-step photochemical strategy. The prepared Zn 0.4 Cd 0.6 S/PO/Fe x Co y Ni z Pi-MnO a photocatalyst displays average hydrogen and oxygen evolution rates of ∼1.14 mmol h −1 g −1 and ∼0.54 mmol h −1 g −1 in POWS, respectively, where Fe x Co y Ni z P and MnO a act as the photogenerated electron and hole acceptors and provide the active sites for the two reactions. The superior POWS performance was maintained for 12 hours without any obvious attenuation. Moreover, photocatalytic partial water splitting (PPWS) is induced by the oxidation of NaH 2 PO 2 during the photochemical synthesis process, yielding hydrogen evolution rates of 7.22 mmol h −1 g −1 and 5.90 mmol h −1 g −1 , respectively. By integrating the two-step photochemical synthesis and POWS process (PPWS → PPWS → POWS), we obtain a total H 2 yield of about 4.85 mmol under 17 h visible light irradiation, which corresponds to an average H 2 evolution rate of 0.29 mmol h −1 . This work develops a safe and energy-saving photochemical synthesis strategy for Zn 1− x Cd x S-based photocatalysts, which not only exhibits excellent POWS performance but opens an avenue for the tandem application of PPWS and POWS to achieve a high H 2 total yield for solar-energy conversion. A ZCS/PO/FCNPi-MO composite was constructed by a two-step photochemical synthesis strategy and used for efficient tandem application of photocatalytic partial water splitting and overall water splitting.
ISSN:2050-7488
2050-7496
DOI:10.1039/d2ta02978b