Xing Dong, Lei Xiangui, Fu Yufeng, Xu Zhijie, Luo Dengyun, Chen Jiujun, Xiang Yong, Wang Zhouyu, Song Qiao
Sichuan Engineering Research Center for Molecular Targeted Diagnostic & Therapeutic Drugs, Asymmetric Synthesis and Chiral Technology Key Laboratory of Sichuan Province, Research and Application of Small Organic Chiral Molecules Key Laboratory of Yibin City, Department of Chemistry, Xihua University Chengdu 610039 China
Sichuan North Hongguang Special Chemical Co., Ltd, Yinguang Group Yibin 644000 China.
RSC Adv. 2025 Feb 4;15(5):3474-3479. doi: 10.1039/d4ra09115a. eCollection 2025 Jan 29.
Nitroaromatic compounds are extensively used in industries such as pharmaceuticals, pesticides, and dyes. However, traditional synthesis methods often face challenges, including high safety risks, significant environmental pollution, and poor selectivity in mononitration reactions. In this study, we developed an efficient and safe continuous-flow microreaction process for mononitration, which achieves high yield and excellent selectivity. This process is applicable for the continuous synthesis of various mononitro compounds, including nitro--xylene, nitro--xylene, nitro-chlorobenzene, and nitro-toluene. Furthermore, the process was successfully applied to the synthesis of a key intermediate in the anticancer drug erlotinib, achieving a yield of 99.3%. The process has also been scaled up for the continuous production of nitro--xylene and nitro--xylene, with a product output of 800 g h. Under the same reaction conditions, the yield and selectivity were consistent with, or even improved over, those obtained in small-scale experiments, demonstrating the scalability and industrial potential of the process. Additionally, the process incorporates a waste acid recycling strategy, which has no significant impact on product yield, thus enhancing economic benefits and reducing environmental pollution. This continuous nitration process not only shows broad application potential but also offers a safe and efficient solution for nitration in the pharmaceutical and chemical industries.
硝基芳香族化合物广泛应用于制药、农药和染料等行业。然而,传统的合成方法常常面临挑战,包括高安全风险、严重的环境污染以及单硝化反应中选择性差等问题。在本研究中,我们开发了一种高效且安全的连续流微反应单硝化工艺,该工艺实现了高收率和优异的选择性。此工艺适用于各种单硝基化合物的连续合成,包括硝基二甲苯、硝基氯苯和硝基甲苯。此外,该工艺成功应用于抗癌药物厄洛替尼关键中间体的合成,收率达到99.3%。该工艺还已放大用于硝基二甲苯和硝基氯苯的连续生产,产品产量为800 g/h。在相同反应条件下,收率和选择性与小规模实验相当,甚至有所提高,证明了该工艺的可扩展性和工业潜力。此外,该工艺采用了废酸回收策略,对产品收率无显著影响,从而提高了经济效益并减少了环境污染。这种连续硝化工艺不仅具有广泛的应用潜力,还为制药和化工行业的硝化提供了一种安全高效的解决方案。