Insight into symmetry matching heterogeneous facet junction photocatalysts via {211} faceted CeO2 nanobelts@δ-Bi2O3 nanowires
Photocatalysts with homogenous facet junctions exhibit amazing performance in photocatalytic redox reactions. More challenging and alluring is the construction of heterogeneous facet junctions with two of them. Herein, we show a self-assembly procedure to buildup co-exposing faceted δ-Bi2O3 nanowire...
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Published in | International journal of hydrogen energy Vol. 47; no. 92; pp. 39070 - 39080 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
Elsevier Ltd
29.11.2022
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Subjects | |
Online Access | Get full text |
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Summary: | Photocatalysts with homogenous facet junctions exhibit amazing performance in photocatalytic redox reactions. More challenging and alluring is the construction of heterogeneous facet junctions with two of them. Herein, we show a self-assembly procedure to buildup co-exposing faceted δ-Bi2O3 nanowires on the edges of co-exposing {211} faceted CeO2 nanobelts from sub 10 nm nanoparticles. Directed by surface O-vacancy energy, the δ-Bi2O3 nanoparticles preferentially adsorbed on the {111} facets of CeO2 nanobelts and oriented growth into co-exposing faceted δ-Bi2O3 nanowires. The CeO2@δ-Bi2O3 hetero facet junction displays superior and stable hydrogen evolution activities, 5.2 times of the pure co-exposing faceted CeO2 nanobelts, ascribed to following key factors: First, heterogeneous facet junctions contribute to efficient interplanar and inter-junction separation of photocarriers. Moreover, symmetry matching leads to strong connection between the two facet junctions, facilitating the dynamic charge transfer. This work can provide a new strategy in the design of heterojunction photocatalytic systems for water splitting.
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•Co-exposing {211} faceted CeO2 nanobelts @δ-Bi2O3 nanowires were synthesized by O-vacancy direct self-assembly mechanism.•Symmetry matching strategy is efficient to construct well connected heterogeneous facet junctions.•Heterogeneous facet junctions promote photocatalystic hydrogen evolution properties dramatically.•Charge transfer pathways between interfacets and interjunctions were clarified by DFT calculations and experimental results. |
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ISSN: | 0360-3199 1879-3487 |
DOI: | 10.1016/j.ijhydene.2022.09.071 |