首页> 外文会议>Nanotechnology 2009 : Technical proceedings >A Mechanistic Investigation on 1,5- to 2,6-Dimethylnaphthalene Isomerization Catalyzed by Acidic Beta Zeolite: An ONIOM Study with a Newly Developed Density Functional Theory
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A Mechanistic Investigation on 1,5- to 2,6-Dimethylnaphthalene Isomerization Catalyzed by Acidic Beta Zeolite: An ONIOM Study with a Newly Developed Density Functional Theory

机译:酸性β沸石催化1,5-二甲基萘异构化的机理研究:基于新的密度泛函理论的ONIOM研究

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摘要

2,6-Dimethylnaphthalene (DMN) is the key intermediate in the synthesis of poly(ethylene naphthalate) (PEN), a high-performance polymer. The detailed reaction mechanism of the catalyzed 1,5- to 2,6- DMN isomerization via 1,6-DMN by acidic beta zeolite is investigated at the ONIOM(M06-L/6-31G(d,p):UFF) level of theory. The M06-L method, a newly developed density functional theory, is applied for the first time to investigate such reaction within the nano-reactor of zeolite. The stepwise mechanism is proposed to proceed with three steps: protonation, methyl shift and proton back-donation. The methyl shift is the rate-determining step with the activation energies of 24.0 and 20.8 kcal/mol for 1,5- to 1,6-DMN and 1,6- to 2,6-DMN steps, respectively. The calculation confirmed the experiment that the 1,6-DMN formation is kinetically controlled. The calculated adsorption and activation energies are in good agreement with experimental data. Our findings demonstrate that the influence of the pore size of the beta zeolite perfectly fit for the enhancement of the isomerization of 1,5- into 2,6-DMN.
机译:2,6-二甲基萘(DMN)是合成高性能聚合物聚萘二甲酸乙二醇酯(PEN)的关键中间体。在ONIOM(M06-L / 6-31G(d,p):UFF)水平下研究了酸性β沸石经1,6-DMN催化1,5-DMN异构化1,5-DMN的详细反应机理理论。首次应用M06-L方法(一种新开发的密度泛函理论)来研究这种沸石在纳米反应器中的反应。提出了逐步机制,该过程以三个步骤进行:质子化,甲基转移和质子返还。甲基转移是速率确定步骤,其活化能分别为1,5-至1,6-DMN和1,6-至2,6-DMN步骤,活化能为24.0和20.8 kcal / mol。该计算证实了该实验,动力学上控制了1,6-DMN的形成。计算得出的吸附能和活化能与实验数据吻合良好。我们的发现表明,β沸石孔径的影响完全适合于1,5-异构化为2,6-DMN的异构化。

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  • 来源
  • 会议地点 Houston TX(US);Houston TX(US);Houston TX(US);Houston TX(US);Houston TX(US);Houston TX(US);Houston TX(US);Houston TX(US);Houston TX(US);Houston TX(US);Houston TX(US);Houston TX(US)
  • 作者单位

    Laboratory for Computational and Applied Chemistry, Chemistry Department, Faculty of Science, Kasetsart University, Bangkok 10900, Thailand NANOTEC Center of Excellence, National Nanotechnology Center, Kasetsart University Research and Development Institute, Thailand;

    Laboratory for Computational and Applied Chemistry, Chemistry Department, Faculty of Science, Kasetsart University, Bangkok 10900, Thailand NANOTEC Center of Excellence, National Nanotechnology Center, Kasetsart University Research and Development Institute, Thailand;

    Laboratory for Computational and Applied Chemistry, Chemistry Department, Faculty of Science, Kasetsart University, Bangkok 10900, Thailand NANOTEC Center of Excellence, National Nanotechnology Center, Kasetsart University Research and Development Institute, Thail;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    dimethylnaphthalene; isomerization; density functional theory; zeolite; beta;

    机译:二甲基萘;异构化密度泛函理论;沸石贝塔;

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