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首页> 外文期刊>Catalysis science & technology >Synergism between few-layer black phosphorus and graphitic carbon nitride enhances the photoredox C-H arylation under visible light irradiation
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Synergism between few-layer black phosphorus and graphitic carbon nitride enhances the photoredox C-H arylation under visible light irradiation

机译:可见光照射下,少层黑磷与石墨氮化碳的协同作用增强了光氧化还原C-H芳基化

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摘要

The development of solar-driven chemical transformations is one of the most attractive research interests as they lay the groundwork for a more sustainable future. To reach this target, efficient photocatalysts, particularly metal-free photocatalysts, should be designed and fabricated. For the design of efficient photocatalysts in terms of optical, chemical/thermal properties, and long-term stability, constructing heterojunctions of two-dimensional (2D) materials consisting of earth-abundant elements is one of the most environmentally friendly options. In this study, a highly efficient photoredox catalyst was developed by combining few-layer black phosphorus (FLBP) and graphitic carbon nitride (g-CN) binary heterojunctions, which build up a synergistic effect at the heterojunction interfaces. As-prepared FLBP/g-CN heterojunctions were tested in photoredox C-H arylation of heteroarenes with diazonium salts under visible light irradiation and showed excellent activity, with the product yields reaching up to 94% under ambient conditions. The activity of FLBP/g-CN heterojunctions showed a volcano-shaped relation with respect to the BP loading ratios, where the FLBP/g-CN with 35 wt% FLBP provided the best performance. The substrate scope of FLBP/g-CN heterojunctions was investigated over a variety of heteroarenes (furan, thiophene, and N-Boc pyrrole) with diazonium salts bearing electron-donating (ED) and electron-withdrawing (EWD) groups (29 examples in total). Moreover, a suitable band diagram showing a unique electron-hole migration between g-CN and FLBP, which is different from anticipated type-I heterojunction in the heterojunction structure, was proposed by the mechanistic studies and charge migration experiments.
机译:太阳能化学的发展转换是最有吸引力的研究兴趣为他们奠定了基础一个更可持续的未来。高效催化剂,特别是不含金属的论文,应该设计编造的。论文在光学方面,化学/热性能,和长期的稳定,构建垂直二维(2 d)材料组成的是最地球上充足的元素环保的选择。是一种高效photoredox催化剂由结合few-layer黑磷(FLBP)和石墨碳氮化(g-CN)二进制建立一个协同的垂直异质结界面效应。好FLBP / g-CN垂直测试在photoredox碳氢键的芳基化heteroarenes可见光照射下重氮盐和显示优秀的活动,与产品环境下收益率达到94%条件。垂直显示volcano-shaped关系对BP加载率,FLBP / g-CN 35 wt % FLBP提供最好的表演垂直在各种调查heteroarenes(呋喃、噻吩、N-Boc吡咯)与重氮盐轴承电子基(ED)和吸电子(EWD)组(总共29的例子)。合适的带图显示一个独特的电子空穴迁移g-CN和FLBP之间,这是不同于预期的i型异质结的异质结结构,是机械的研究和提出的电荷迁移实验。

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