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Direct Z-Scheme g-Csub.3Nsub.5/Cusub.3TiOsub.4 Heterojunction Enhanced Photocatalytic Performance of Chromene-3-Carbonitriles Synthesis under Visible Light Irradiation
Direct Z-Scheme g-Csub.3Nsub.5/Cusub.3TiOsub.4 Heterojunction Enhanced Photocatalytic Performance of Chromene-3-Carbonitriles Synthesis under Visible Light Irradiation
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Direct Z-Scheme g-Csub.3Nsub.5/Cusub.3TiOsub.4 Heterojunction Enhanced Photocatalytic Performance of Chromene-3-Carbonitriles Synthesis under Visible Light Irradiation
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Direct Z-Scheme g-Csub.3Nsub.5/Cusub.3TiOsub.4 Heterojunction Enhanced Photocatalytic Performance of Chromene-3-Carbonitriles Synthesis under Visible Light Irradiation
Direct Z-Scheme g-Csub.3Nsub.5/Cusub.3TiOsub.4 Heterojunction Enhanced Photocatalytic Performance of Chromene-3-Carbonitriles Synthesis under Visible Light Irradiation

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Direct Z-Scheme g-Csub.3Nsub.5/Cusub.3TiOsub.4 Heterojunction Enhanced Photocatalytic Performance of Chromene-3-Carbonitriles Synthesis under Visible Light Irradiation
Direct Z-Scheme g-Csub.3Nsub.5/Cusub.3TiOsub.4 Heterojunction Enhanced Photocatalytic Performance of Chromene-3-Carbonitriles Synthesis under Visible Light Irradiation
Journal Article

Direct Z-Scheme g-Csub.3Nsub.5/Cusub.3TiOsub.4 Heterojunction Enhanced Photocatalytic Performance of Chromene-3-Carbonitriles Synthesis under Visible Light Irradiation

2022
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Overview
In order to make the synthesis of pharmaceutically active carbonitriles efficient, environmentally friendly, and sustainable, the method is regularly examined. Here, we introduce a brand-new, very effective Cu[sub.3]TiO[sub.4]/g-C[sub.3]N[sub.5] photocatalyst for the production of compounds containing chromene-3-carbonitriles. The direct Z-Scheme photo-generated charge transfer mechanism used by the Cu[sub.3]TiO[sub.4]/g-C[sub.3]N[sub.5] photocatalyst results in a suppressed rate of electron-hole pair recombination and an increase in photocatalytic activity. Experiments showed that the current method has some advantages, such as using an environmentally friendly and sustainable photocatalyst, having a simple procedure, quick reaction times, a good product yield (82–94%), and being able to reuse the photocatalyst multiple times in a row without noticeably decreasing its photocatalytic performance.
Publisher
MDPI AG
Subject