Abstract
The rate constant of the addition of hydrogen cyanide to $ ${\alpha}$-cyano-\beta-piperonylacrylic$ acid (CPA) were determined by UV spectrophotometry at various pH and a rate equation which can be applied over wide pH range was obtained. From this equation, one may conclude that below pH 3 the reaction is started by the addition of hydrogen cyanide molecule to CPA, however, at pH 6~8, hydrogen cyanide is added to $ {\alpha}$-cyano-$ {\beta}$-piperonyl acrylate anion. From pH 3 to 6, these two reaction are competitive. Above pH 9, the reaction is proceeded by the addition of cyanide ion to $ {\alpha}$-cyano-$ {\beta}$-piperonyl acrylate ion. From pH 3 to 9, the complex reaction mechanism can also be fully explained by the rate equation obtained.
$ {\alpha}$-Cyano-$ {\beta}$-piperonylacrylic acid(CPA)에 대한 hydorogen cyanide의 진핵성 첨가 반응속도 상수를 측정하여 넓은 pH범위에서 잘 맞는 반응 속도식을 구하였다. 이 식에 의하면 pH3이하에서는 CPA에 대해 hydrogen cyanide분자의 첨가 반응이 일어나지만 pH6에서 8사이는 hydrogen cyanide가 $ {\alpha}$-cyano-$ {\beta}$-piperonyl acrylate ion에 첨가함을 알수 있고, 또 pH 3과 6사이에서는 이들 두 반응이 경쟁적으로 일어난다. 그리고 pH9이상에서는 $ {\alpha}$-cyano-$ {\beta}$-piperonyl acrylate ion에 cyanide ion이 첨가하는 반응이 일어나며 pH3에서 9까지의 모든 복잡한 반응 메카니즘도 이식으로 충분히 설명할 수 있음을 알았다.