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聚γ-(β-氰乙硫基)丙基硅氧烷铂配合物的合成与催化性能 被引量:5
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作者 蔡明中 宋才生 陈江敏 《应用化学》 CAS CSCD 北大核心 1997年第4期37-40,共4页
γ-巯丙基三乙氧基硅烷与丙烯腈反应,得到γ-(β-氰乙硫基)丙基三乙氧基硅烷.后者经气相法二氧化硅固载,再与氯亚铂酸钾反应,合成了聚γ-(β-氰乙硫基)丙基硅氧烷铂配合物.研究了该铂配合物对不饱和烃与三乙氧基硅烷的硅... γ-巯丙基三乙氧基硅烷与丙烯腈反应,得到γ-(β-氰乙硫基)丙基三乙氧基硅烷.后者经气相法二氧化硅固载,再与氯亚铂酸钾反应,合成了聚γ-(β-氰乙硫基)丙基硅氧烷铂配合物.研究了该铂配合物对不饱和烃与三乙氧基硅烷的硅氢加成反应的催化特性. 展开更多
关键词 丙基硅氧烷 铂配合物 催化剂 硅氢加成 氰乙硫基
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Synthesis of ethoxycarbonyl isothiocyanate by orthogonal design
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作者 梁文杰 钟宏 何谋海 《Journal of Central South University》 SCIE EI CAS 2012年第9期2447-2450,共4页
Using Schiff base as a phase transfer catalyst, ethoxycarbonyl isothiocyanate was synthesized by reacting ethyl chloroformate with sodium thiocyanate. In order to get the best synthetic technology, an orthogonal test ... Using Schiff base as a phase transfer catalyst, ethoxycarbonyl isothiocyanate was synthesized by reacting ethyl chloroformate with sodium thiocyanate. In order to get the best synthetic technology, an orthogonal test (L9(34)) was applied. The results show that reaction temperature, reaction time, content of catalyst and molar ratio of sodium thiocyanate to ethyl chloroformate are the main factors influencing the yield. The four factors chosen for the present investigation are based on the results of a single-factor test. The optimum synthetic technology is determined as follows: reaction temperature 35 ℃, reaction time 3 h, the content of catalyst (molar fraction based on ethyl chloroformate) 1.5% and molar ratio of sodium thiocyanate to ethyl chloroformate 1.1. Under the optimized synthetic technology, the experimental yield reaches 96.8%. 展开更多
关键词 ethoxycarbonyl isothiocyanate Schiffbase phase transfer catalyst orthogonal test
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