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A Detailed Study of Irradiation Requirements Towards an Efficient Photochemical Wohl-Ziegler Procedure in Flow

机译:详细研究辐照要求对一个有效的光化学沃尔齐格勒程序流

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摘要

A platform has been developed to enable standardization of light sources, allowing consistent scale-up from high-throughput screening in batch to flow, using the same pseudomonochromatic light source. The impact of wavelength and light intensity on a photochemical reaction was evaluated within this platform using the Wohl-Ziegler benzylic bromination of 4-methyl-3-(trifluoromethyl)benzonitrile with N-bromosuccinimide as a model system. It was found that only 40% of the maximum light intensity was required while still maintaining reaction rate, allowing more reliable temperature control and lower energy consumption. The optimized reaction conditions were subsequently applied to a range of synthetically relevant (hetero)aromatic compounds under continuous conditions, exploring the scope of the process within a mild and scalable procedure.
机译:一个平台开发启用光源的标准化,允许一致的扩大从高通量筛选在批处理流,使用相同的pseudomonochromatic光源。光化光波长和强度反应是评估在这个平台使用沃尔齐格勒的苄基的溴化(4-methyl-3) - trifluoromethyl苄腈N-bromosuccinimide作为一个模型系统。发现,只有40%的最大光强度要求,同时仍然保持反应速率,使温度更可靠控制和降低能源消耗。随后被优化的反应条件应用于一系列综合相关(杂)芳族化合物在连续的条件下,探索过程的范围在一个温和的、可伸缩的过程。

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