...
【24h】

Effect of the metal nature on the n-butanol adsorption in the absence of the metal-water chemisorption interaction

机译:在没有金属-水化学吸附作用的情况下,金属性质对正丁醇吸附的影响

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The potential dependences of differential capacitance at the Pb-Ga/H2O, Bi-Ga/H2O, and Sn-Ga/H2O interfaces in 0.05 M Na2SO4 solutions with n-butanol (n-C4H9OH) additions are obtained by impedance measurements at a frequency of 420 Hz and temperature 32 degrees C. The n-C4H9OH adsorption parameters in terms of the model of two parallel capacitors are found using nonlinear regression analysis of the experimental data. They are compared with the corresponding data for Hg and Tl-Ga electrodes. The comparative analysis of the n-C4H9OH adsorption at Hg, Bi-Ga, Pb-Ga, Sn-Ga, and Tl-Ga electrodes revealed the effect of the metal nature on the n-C4H9OH adsorption energy, despite the absence of the metal-water chemisorption interaction at these electrodes. The obtained results fall into the general correlation dependence between the free energy of n-C4H9OH molecule adsorption (Delta G(A)(0)) and the "electronic" capacitance of the electrodes in the absence of the metal-water chemisorption interaction (C-m)(phys). These results can be explained by different metal-water physical interaction caused by the difference in the expansion of the metal electronic density beyond the limits set by the metals' ionic cores.The data obtained for Hg, Bi-Ga, Pb-Ga, Sn-Ga, and Tl-Ga electrodes in combine confirm the suggestion that the using the quantity Delta G(A)(0) and the potential of the cathodic adsorption-desorption peak E-des (expressed in the rational scale) as criteria of the metal-water chemisorption interaction (of the metal hydrophilicity) is only possible when the "electronic" capacitances of the compared metals coincide at the charges where the metal-water chemisorption interaction is absent. In the general case when the "electronic" capacitances do not coincide, some corrections must be introduced. In particular, when the quantity AGO, is used as a criterion, the correction that allows for the effect of the metal nature on the n-C4H9OH adsorption energy in the absence of the metal- water chemisorption interaction (Delta(M)(Hg)G(A)(0))(phys) must be introduced. If, then, E-des is used as a criterion of the metal-water chemisorption interaction, two corrections must be introduced, the first of which allows for the potential drop associated with the unequal "electronic" capacitances of the metals; the other, for the potential drop which is due to the different adsorbability of the organic substance at different metals in the absence of the metal-water chemisorption interaction. (C) 2005 Elsevier B.V. All rights reserved.
机译:通过在一定频率下进行阻抗测量,可以得出在添加了正丁醇(n-C4H9OH)的0.05 M Na2SO4溶液中,Pb-Ga / H2O,Bi-Ga / H2O和Sn-Ga / H2O界面上的差分电容的电位依赖性。在420 Hz和温度32摄氏度的条件下,通过实验数据的非线性回归分析,找到了两个并联电容器模型中n-C4H9OH的吸附参数。将它们与Hg和T1-Ga电极的相应数据进行比较。对Hg,Bi-Ga,Pb-Ga,Sn-Ga和Tl-Ga电极上n-C4H9OH吸附的比较分析显示,尽管不存在金属,金属性质对n-C4H9OH吸附能的影响-这些电极上的水化学吸附相互作用。获得的结果归因于n-C4H9OH分子吸附的自由能(Delta G(A)(0))与在没有金属-水化学吸附相互作用(Cm )(物理)。这些结果可以用不同的金属-水物理相互作用来解释,这是由于金属电子密度的扩展超出金属离子核所设定的极限所引起的。Hg,Bi-Ga,Pb-Ga,Sn获得的数据-Ga和Tl-Ga电极的结合证实了以下建议:使用量Delta G(A)(0)和阴极吸附-解吸峰E-des的电势(以合理的标度表示)作为标准(金属亲水性的)金属-水化学吸附相互作用仅在所比较的金属的“电子”电容在不存在金属-水化学吸附相互作用的电荷一致时才是可能的。在通常情况下,“电子”电容不一致时,必须进行一些校正。特别是,当使用量AGO作为标准时,在没有金属-水化学吸附相互作用(Delta(M)(Hg)的情况下,允许金属性质对n-C4H9OH吸附能产生影响的校正必须引入G(A)(0))(phys)。如果将E-des用作金属与水化学吸附相互作用的判据,则必须引入两个校正,第一个校正允许与金属的不相等“电子”电容相关的电势下降;另一方面,电位下降是由于在没有金属-水化学吸附相互作用的情况下,有机物质在不同金属上的吸附能力不同所致。 (C)2005 Elsevier B.V.保留所有权利。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号