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首页> 外文期刊>Structural Chemistry >Adsorption of molecular iodine on the surface of sulfur-doped carbon nanotubes: theoretical study on their interactions, sensor properties, and other applications
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Adsorption of molecular iodine on the surface of sulfur-doped carbon nanotubes: theoretical study on their interactions, sensor properties, and other applications

机译:硫掺杂碳纳米管表面上分子碘的吸附:其相互作用,传感器性质和其他应用的理论研究

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摘要

In this work, various sulfur-doped carbon nanotubes (SCNTs) are introduced as good adsorbents for iodine. This ability can be employed in sensor, drug delivery, and chemical reactions. Adsorption energies (in gas form and three solvents) of iodine on the surface of SCNTs in various configurations were calculated using density functional theory, and the interaction energies showed that these interactions for stable configurations were exothermic, especially in the solvents. Moreover, AIM analyses confirmed the potency of this interaction, and del(2) rho values revealed that the nature of this interaction was noncovalent. NBO calculations also showed proper interaction between SCNTs and iodine. Population analyses were found to be increasing in the reactivity of SCNT-Is versus SCNTs. Moreover, the electrical conductivity of the SCNTs was increased upon the iodine adsorption and they could be used in sensor devices for iodine detection. In comparison with S-doped fullerene, adsorption values for SCNTs were more negative and SCNTs adsorbed iodine more efficiently.
机译:在这项工作中,引入了各种硫掺杂碳纳米管(SCNT)作为碘的良好吸附剂。此功能可用于传感器,药物输送和化学反应。利用密度泛函理论计算了不同构型的SCNT表面上碘的吸附能(气态和三种溶剂),相互作用能表明,这些稳定构型的相互作用是放热的,尤其是在溶剂中。此外,AIM分析证实了这种相互作用的效力,而del(2)rho值表明这种相互作用的性质是非共价的。 NBO计算还显示出SCNT与碘之间的适当相互作用。发现群体分析增加了SCNT-Is相对于SCNT的反应性。此外,SCNT的电导率随着碘的吸附而增加,它们可用于传感器设备中进行碘检测。与掺S富勒烯相比,SCNTs的吸附值更负,SCNTs吸附碘的效率更高。

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