Pressure effects on the hydrolysis of 3-nitro-4-acyloxybenzoic acids catalyzed by hexadecyltrimethylammonium bromide micelle.
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概要
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The rates of the hydrolysis of 3-nitro-4-acetoxybenzoic acid (NABA), 3-nitro-4-propionyloxybenzoic acid (NPBA), 3-nitro-4-butyryloxybenzoic acid (NBBA), and 3-nitro-4-valeryloxybenzoic acid (NVBA), catalyzed by the hexadecyltrimethylammonium bromide (HTAB) micelle, were measured at pressures up to 2 kbar at 25 °C in Tris buffer solution (0.01 M, pH 8.7). The ester binding constant <I>K</I> increased and the rate constant of the hydrolysis catalyzed by micelle <I>k</I><SUB>m</SUB> decreased with longer alkyl chains of esters at 1 bar. The <I>k</I><SUB>m</SUB> values were separated into the contribution of <I>k</I><SUB>OH</SUB> (hydroxide ion catalyzed hydrolysis) and <I>k</I><SUB>T</SUB> (Tris catalyzed hydrolysis), which increased monotonically up to 2 kbar. On the other hand, the <I>K</I> values decreased and then inversed with minima at about 1.5 kbar except for that of NABA. From the pressure dependence of log <I>K</I>, the volume changes, Δ<I>V</I>, accompanying the ester binding to the HTAB micelle at 1 bar were estimated to be in the range of 11±2 cm<SUP>3</SUP>/mol for NABA to 23±2 cm<SUP>3</SUP>/mol for NVBA. The activation volumes for the hydrolysis catalyzed by micelle, were measured as −6±2 cm<SUP>3</SUP>/mol for Δ<I>V</I><SUP>*</SUP><SUB>OH</SUB> and −16±2 cm<SUP>3</SUP>/mol for Δ<I>V</I><SUP>*</SUP><SUB>T</SUB> for each ester. The activation volumes for the spontaneous hydrolysis were measured as −5±2 cm<SUP>3</SUP>/mol for Δ<I>V</I><SUP>*</SUP><SUB>OH</SUB> and −16±2 cm<SUP>3</SUP>/mol for Δ<I>V</I><SUP>*</SUP><SUB>T</SUB> for each ester. The reaction mechanism was discussed in terms of Δ<I>V</I> and Δ<I>V</I><SUP>*</SUP>.
- 公益社団法人 日本化学会の論文
著者
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Suzuki Keizo
Department Of Chemistry Faculty Of Science And Engineering Ritumeikan University
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Taniguchi Yoshihiro
Department Of Applied Chemistry Faculty Of Science And Engineering Ritsumeikan University
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Makimoto Syoichi
Department of Chemistry, Faculty of Science and Engineering, Ritsumeikan University
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