“…Among the available W 18 O 49 materials, one dimensional (1-D) nanowires and three dimensional (3-D) urchin-like particles are the most desirable and excellent in the eld of photocatalysis because of their uniform form and numerous performance advantages. [30][31][32][33][34] However, most researchers concentrate solely on investigating the properties of individual materials and their composites, and few deeply study their difference in photocatalytic properties and the fundamental reasons for such differences. The absence of this part of research content is not conducive to our better understanding of the relationship between the structure and properties for W 18 O 49 particle and better application of them in more elds.…”
Comprehensive characterization and control experiments were used to deeply explore the intrinsic relationship between the morphology and photocatalytic properties of W18O49 catalysts.
“…Among the available W 18 O 49 materials, one dimensional (1-D) nanowires and three dimensional (3-D) urchin-like particles are the most desirable and excellent in the eld of photocatalysis because of their uniform form and numerous performance advantages. [30][31][32][33][34] However, most researchers concentrate solely on investigating the properties of individual materials and their composites, and few deeply study their difference in photocatalytic properties and the fundamental reasons for such differences. The absence of this part of research content is not conducive to our better understanding of the relationship between the structure and properties for W 18 O 49 particle and better application of them in more elds.…”
Comprehensive characterization and control experiments were used to deeply explore the intrinsic relationship between the morphology and photocatalytic properties of W18O49 catalysts.
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