Fig. 5: The photothermal RWGS performance of 2D Cu2Zn1Al0.5Ce5Zr0.5Ox. | Nature Communications

Fig. 5: The photothermal RWGS performance of 2D Cu2Zn1Al0.5Ce5Zr0.5Ox.

From: Cu-based high-entropy two-dimensional oxide as stable and active photothermal catalyst

Fig. 5

a The temperature of 2D Cu2Zn1Al0.5Ce5Zr0.5Ox and CO production rate of photothermal RWGS through 2D Cu2Zn1Al0.5Ce5Zr0.5Ox under different sunlight irradiation. b The CO generation rate of photothermal RWGS through 2D Cu2Zn1Al0.5Ce5Zr0.5Ox under 2 suns irradiation and light off working conditions. c The CO generation rate of photothermal RWGS demonstration with 100 g of 2D Cu2Zn1Al0.5Ce5Zr0.5Ox under different sunlight irradiation. d The STC efficiency of photothermal RWGS demonstration with 100 g of 2D Cu2Zn1Al0.5Ce5Zr0.5Ox under different sunlight irradiation. e The photograph of photothermal RWGS demonstration equipped with reflector in Hebei University. f The CO yield of photothermal RWGS demonstration equipped with reflector under outdoor sunlight irradiation, on December 12, 13, 14, 17, 18, 20, 21, 2021, in Baoding City, China. The errors show standard deviation.

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