Title : Stannous oxide promoted charge separation in rationally designed heterojunction photocatalysts with a controllable mechanism.

Pub. Date : 2018 Sep 18

PMID : 30141818






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1 Herein, we proposed an in situ hydrothermal method to expedite the charge transfer with enhanced photocatalytic H2 evolution rate and photodegradation activities via introducing SnO microplates into TiO2. titanium dioxide strawberry notch homolog 2 Homo sapiens
2 As compared to bare TiO2, the SnO/TiO2 heterojunction achieves remarkable 470% and 150% higher efficiency for the photocatalytic H2 evolution rate and photodegradation of rhodamine B, respectively. titanium dioxide strawberry notch homolog 2 Homo sapiens
3 As compared to bare TiO2, the SnO/TiO2 heterojunction achieves remarkable 470% and 150% higher efficiency for the photocatalytic H2 evolution rate and photodegradation of rhodamine B, respectively. titanium dioxide strawberry notch homolog 2 Homo sapiens
4 In particular, it is demonstrated that the charge transfer mechanism of SnO/TiO2 can be switched from the Z-scheme to type II by Pt loading, leading to a significant enhancement of photocatalytic performances. titanium dioxide strawberry notch homolog 2 Homo sapiens