2022
DOI: 10.1016/j.apsusc.2022.153028
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2D/0D plasmonic CuSe/CdS for efficient photocatalytic hydrogen activity via strong Vis-NIR light and interfacial effect

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Cited by 27 publications
(10 citation statements)
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“…Hence, the valence band (VB) potentials of TpMA and CdS were 1.94 eV and 1.15 eV, which are consistent with previous studies. 38,49 Photoluminescence spectroscopy (PL) was used to test the degree of e − −h + recombination of the prepared photocatalysts. Compared to TpMA, the CT-10 sample exhibited a substantially lower fluorescence emission peak at 482 nm excited by 400 nm light (Figure S11).…”
Section: ■ Results and Discussionmentioning
confidence: 99%
“…Hence, the valence band (VB) potentials of TpMA and CdS were 1.94 eV and 1.15 eV, which are consistent with previous studies. 38,49 Photoluminescence spectroscopy (PL) was used to test the degree of e − −h + recombination of the prepared photocatalysts. Compared to TpMA, the CT-10 sample exhibited a substantially lower fluorescence emission peak at 482 nm excited by 400 nm light (Figure S11).…”
Section: ■ Results and Discussionmentioning
confidence: 99%
“…The synergistic action between heterojunctions and the plasma effect can effectively improve the photothermal effect of semiconductors. Efficient photocatalytic hydrogen production by 2D/0D plasma CuSe/CdS through strong Vis-NIR light and interface effects has been reported . As shown in Figure c, the combined action of photoelectrons and thermoelectrons greatly improved the photocatalytic efficiency.…”
Section: Application Of Cu-based Semiconductor Nanomaterials In Photo...mentioning
confidence: 92%
“…Efficient photocatalytic hydrogen production by 2D/0D plasma CuSe/CdS through strong Vis-NIR light and interface effects has been reported. 221 As shown in Figure 11c, the combined action of photoelectrons and thermoelectrons greatly improved the photocatalytic efficiency. In addition, Cu 2 Se is also a good cocatalyst.…”
Section: Photocatalytic Hydrogen Evolutionmentioning
confidence: 94%
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“…2a and b, the hollow CuSe nanocubes with different sizes are all indexed to the hexagonal phase (JCPDS 34-0171) of CuSe with some impurity phase of Cu 2−x Se (JCPDS 06-0680). 15,24 According to the RIR method, the calculated proportion of the impure Cu 2−x Se phase tends to increase as the sample size increases, and is up to the largest in CuSe-3, as shown in Table S3. † 25 The appropriate ratio may be able to optimize the band structure.…”
Section: Morphology and Structurementioning
confidence: 99%