2021
DOI: 10.1016/j.cej.2021.128708
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Corrigendum to “Simultaneous introduction of 0D Bi nanodots and oxygen vacancies onto 1D Bi6Mo2O15 sub-microwires for synergistically enhanced photocatalysis” [Chem. Eng. J. 409 (2021) 128098]

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Cited by 6 publications
(9 citation statements)
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“…21 The virtues of Z-scheme heterojunctions for POP degradation could be further maximized by reducing the size or dimension of the photocatalysts. 22,23 Recently, it has been reported that the formation of low-dimensional heterostructures including two-dimensional/one-dimensional (2D/1D), 24 two-dimensional/one-dimensional (2D/0D), 25 and one-dimensional/zero-dimensional (1D/0D) 26 could increase the contact surface and reduce the charge transfer length, which is beneficial for the built-in electric field to induce charge migration. Inspired by the above discussion, it is desirable to integrate the two strategies of Z-scheme heterojunction design and low-dimensional nanostructure modulation to prepare high-performance photocatalysts for the degradation of POPs.…”
Section: Introductionmentioning
confidence: 99%
“…21 The virtues of Z-scheme heterojunctions for POP degradation could be further maximized by reducing the size or dimension of the photocatalysts. 22,23 Recently, it has been reported that the formation of low-dimensional heterostructures including two-dimensional/one-dimensional (2D/1D), 24 two-dimensional/one-dimensional (2D/0D), 25 and one-dimensional/zero-dimensional (1D/0D) 26 could increase the contact surface and reduce the charge transfer length, which is beneficial for the built-in electric field to induce charge migration. Inspired by the above discussion, it is desirable to integrate the two strategies of Z-scheme heterojunction design and low-dimensional nanostructure modulation to prepare high-performance photocatalysts for the degradation of POPs.…”
Section: Introductionmentioning
confidence: 99%
“…Reproduced with permission. [ 260 ] Copyright 2021, Elsevier. g) PC performance of the different samples for the degradation of TC.…”
Section: Sustainable Energy and Environmental Restoration Applicationsmentioning
confidence: 99%
“…The rich oxygen vacancies in 1D bismuth molybdate (Bi 6 Mo 2 O 15 ) sub-microwires (B-BMO) that support 0D Bi nanodots [260] and bismuth molybdate nanosheets [261] boost PC performance under visible light illumination due to the high ionic conductivity of the developed systems. The surface plasmon resonance from the Bi quantum dots and the oxygen vacancies in the B-BMO deliver high ionic conductivity (Figure 16f), resulting in excellent PC performance for the degradation of tetracycline (TC).…”
Section: Organic Pollutant Removalmentioning
confidence: 99%
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