2022
DOI: 10.1016/j.jcis.2021.12.158
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Narrow-Bandgap LaMO3 (M = Ni, Co) nanomaterials for efficient interfacial solar steam generation

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Cited by 41 publications
(28 citation statements)
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“…The evaporation efficiency of the 2D evaporators is limited by various types of energy losses in the form of reflection, convection, and radiation, 51 which can be greatly resolved using 3D evaporators. 52 Furthermore, over 100% evaporation efficiency can be explained by the heat energy harvesting capacity of the 3D evaporation from the environment. The outer surface temperature of the 3D evaporator is about 4 °C lower than the environment (see ESI Fig.…”
Section: Resultsmentioning
confidence: 99%
“…The evaporation efficiency of the 2D evaporators is limited by various types of energy losses in the form of reflection, convection, and radiation, 51 which can be greatly resolved using 3D evaporators. 52 Furthermore, over 100% evaporation efficiency can be explained by the heat energy harvesting capacity of the 3D evaporation from the environment. The outer surface temperature of the 3D evaporator is about 4 °C lower than the environment (see ESI Fig.…”
Section: Resultsmentioning
confidence: 99%
“…As shown in the Co 2p core‐level spectra (Figure 2a), four typical peaks, 781.6 eV (2p 3/2 ), 786.5 eV (2p 3/2 , satellite), 797.2 eV (2p 1/2 ), and 803.3 eV (2p 1/2 , satellite) present in the Co‐La 50% (w/o H 2 O 2 ), which are assigned to the Co 2+ species [9] . When H 2 O 2 was added (i.e., the Co‐La 50% HTL), the Co 2p core‐level spectra exhibited not only Co 2+ species but also Co 3+ species, which demonstrates the partial oxidation of the Co 2+ species by H 2 O 2 [13a, 17c] . As with the La 3d core‐level spectra (Figure 2b), four typical peaks, 836.0 eV (3d 5/2 ), 839.4 eV (3d 5/2 , satellite), 852.8 eV (3d 3/2 ), and 856.2 eV 3d 3/2 , satellite), ascribed to La 3+ species are observed in the Co‐La 50% (w/o H 2 O 2 ) and there is no significant difference between the spectra of Co‐La 50% (w/o H 2 O 2 ) and Co‐La 50% HTL, revealing that the addition of H 2 O 2 has little effect on the La 3+ precursor [13a, 17c] .…”
Section: Resultsmentioning
confidence: 99%
“…Synergistic integration of such PMEGs with SSG can simultaneously produce freshwater and electricity. Using a 3D conical evaporator will increase the evaporation rate by reducing the heat losses under illumination and providing a large effective surface area to maintain a sufficient dark evaporation rate necessary for all-day electricity generation in PMEGs.…”
Section: Resultsmentioning
confidence: 99%