催化作用
腈
天然橡胶
弹性体
钌
傅里叶变换红外光谱
材料科学
选择性
石油化工
核化学
催化加氢
高分子化学
丁腈橡胶
化学
有机化学
化学工程
工程类
作者
Junjie Liu,Mingqi Jia,Fei Yuan,Zitong Hong,Weichao Tong,Chengzhuo Zheng,Chuanqi Wang,Hui Wang
摘要
Abstract Hydrogenated nitrile butadiene rubber (HNBR) is a high‐performance elastomer widely used in the petrochemical and automotive industries. A ruthenium‐based catalyst, namely [1,3‐bis(2,4,6‐trimethylphenyl)‐2‐imidazolidinylidene]‐[2‐[[(4‐methylphenyl)imino]methyl]‐4‐nitrophenoyl]chloro[3‐phenylindenylidene]ruthenium(II) (M41), was investigated for the direct hydrogenation of NBR latex. The catalytic selectivity for the hydrogenation of CC bond instead of CN group was confirmed by both Fourier transform infrared and 1 H NMR spectroscopies. The effects of reaction conditions (such as temperature, pressure, catalyst levels, agitation speed and solid content) on the hydrogenation reaction were examined, and hydrogenation products with over 95 mol% conversion were obtained for only 3 h with a catalyst/NBR ratio of 0.05 wt% and no gel was formed within HNBR. The results suggest that the current limitations in the hydrogenation of NBR latex could be addressed with this catalyst. © 2023 Society of Industrial Chemistry.
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