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季铵盐阳离子辅助合成富含硫空位MoS?催化含硫硝基芳烃加氢性能研究

凌宗鹏,陈海涛,高红霞,戴慧聪,赵侦超,杨启华   

  1. 浙江师范大学
  • 收稿日期:2025-02-21 修回日期:2025-04-06 网络首发:2025-04-21 发布日期:2025-04-21
  • 通讯作者: 赵侦超 E-mail:zhaoenc@zjnu.edu.cn
  • 基金资助:
    国家自然科学基金项目(批准号:22472153)资助

Quaternary Ammonium Cation-Assisted Synthesis of Sulfur Vacancy-Rich MoS? for Catalyzing Hydrogenation of Sulfur-Containing Nitroarenes

LING Zongpeng, CHEN Haitao, GAO Hongxia, DAI Huicong, ZHAO Zhenchao, YANG Qihua   

  1. Zhejiang Normal University
  • Received:2025-02-21 Revised:2025-04-06 Online First:2025-04-21 Published:2025-04-21
  • Contact: ZHAO Zhenchao E-mail:zhaoenc@zjnu.edu.cn
  • Supported by:
    Supported by the National Natural Science Foundation of China (No. 22472153)

摘要: 催化含硫硝基芳烃加氢制备其相应的氨基化合物,是实现药物中间体绿色催化转化的重要反应。然而,由于硫原子强配位作用会毒化过渡金属加氢催化剂,抑制其活性发挥。在此,我们选择具有本征抗硫中毒的MoS2作为催化剂,利用具有不同有机链长季铵盐阳离子取代钼酸铵前驱体中铵离子来调变其硫化晶化行为,制备相应MoS2催化剂。电子顺磁共振(EPR)及O2滴定原位红外(IR)表征显示,随季铵盐碳链增长MoS2的边缘硫空位显著增加。在催化模型底物5-硝基苯并噻唑(NBZ)加氢反应中,结果显示MoS2的边缘硫空位可能是主要活性中心。所得最优催化剂性能优于目前报道的Co-Mo-S催化剂,在固定床连续流反应器中,80 oC,3 bar条件下催化剂转化效率可达49 mgNBZ·gcat-1·h-1,优于同等条件下的Pt/TiO2催化剂。该研究表明,利用长链有机季铵盐阳离子可显著提高MoS2的边缘硫空位,并在含硫硝基芳香化合物加氢反应中表现出潜在应用价值。

关键词: MoS2, 季铵盐阳离子, 硫空位, 含硫硝基芳烃, 催化加氢

Abstract: The catalytic hydrogenation of sulfur-containing nitroaromatic hydrocarbons to their corresponding amino compounds is a crucial reaction for achieving green transformation in pharmaceutical intermediates. However, the strong coordination of sulfur atoms poisons transition metal hydrogenation catalysts, suppressing their catalytic activity. Herein, we selected intrinsically sulfur-resistant MoS2 as the catalyst and modulated its sulfidation behavior by replacing ammonium ions in molybdate precursors with quaternary ammonium cations of varying organic chain lengths to synthesize corresponding MoS2 catalysts. Electron paramagnetic resonance (EPR) and O2 titration in situ infrared (IR) characterization revealed that edge sulfur vacancies in MoS2 increased with the elongation of quaternary ammonium salt carbon chains. In the hydrogenation of the model substrate 5-nitrobenzothiazole (NBZ), the catalyst’s activity is closely related with edge S vacancies. The optimized catalyst outperformed the currently reported Co-Mo-S catalysts. In a fixed-bed continuous flow reactor under 80 oC,3 bar, the catalyst achieved a conversion efficiency of 49 mgNBZ·gcat-1·h-1, surpassing the performance of the supported noble metal catalyst Pt/TiO2 under identical conditions. This study demonstrates that long-chain organic quaternary ammonium cations significantly enhance edge S vacancies in MoS2, highlighting their potential application value in hydrogenating sulfur-containing nitroaromatic compounds.

Key words: MoS2, Quaternary ammonium cation, S vacancies, Sulfur-Containing nitroarene, Catalytic hydrogenation

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