Thermal decompositions of CH3I and CD3I. Experiental and theoretical approaches to the specific rates at the high pressure limit.
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概要
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The rate constants on the thermal decompositions of CH<SUB>3</SUB>I and CD<SUB>3</SUB>I at the high pressure limit, <I>k</I><SUB>d</SUB><SUP>∞</SUP>, were evaluated from the decomposition rates, measured as functions of the reaction time and the pressure of methyl iodide. The values of <I>k</I><SUB>d</SUB><SUP>∞</SUP>(CH<SUB>3</SUB>I) at 606.8, 620.2, 633.5, and 649.5 K were 2.92, 8.22, 22.0, and 68.2×10<SUP>−6</SUP> s<SUP>−1</SUP>, respectively. The values of <I>k</I><SUB>d</SUB><SUP>∞</SUP>(CD<SUB>3</SUB>I)/<I>k</I><SUB>d</SUB><SUP>∞</SUP>(CH<SUB>3</SUB>I) were 0.290 at 620.2 K, 0.285 at 633.5 K, and 0.279 at 649.5 K. Meanwhile, the calculations for <I>k</I><SUB>d</SUB><SUP>∞</SUP> were carried out using a rate theory derived from the assumption that the zero point energy and the vibrational energy are concerned in the entropy term of <I>k</I><SUB>d</SUB><SUP>∞</SUP>. From good correspondence between the experimental and calculated values, the values of <I>D</I><SUB>0</SUB> (chemical bond dissociation energy)=243.7, Δ<I>E</I><SUB>0</SUB> (energy change at 0 K)=230.6, and Δ<I>H</I><SUB>298</SUB>° (enthalpy change at 298 K)=236.3 kJ mol<SUP>−1</SUP> were obtained for the CH<SUB>3</SUB>–I bond dissociation. On the decomposition of equimolar mixture of CH<SUB>3</SUB>I and CD<SUB>3</SUB>I at 633.5 K and 10.67 kPa of the total pressure, it was found that the initial rate ratio of <I>R</I>^°(CH<SUB>4</SUB>+CH<SUB>3</SUB>D)/<I>R</I>°(CD<SUB>4</SUB>+CD<SUB>3</SUB>H) is 1.94 and the excitations to the active molecules of CH<SUB>3</SUB>I and CD<SUB>3</SUB>I in the mixture are less effective than those in the separated systems of CH<SUB>3</SUB>I and CD<SUB>3</SUB>, respectively.
- 公益社団法人 日本化学会の論文
著者
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Kodama Sukeya
Department of Applied Chemistry, College of Engineering, University of Osaka Prefecture
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Ooi Yasuhiro
Department of Applied Chemistry, College of Engineering, University of Osaka Prefecture
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