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Buckybowls as gas adsorbents: binding of gaseous pollutants and their electric-field induced release

机译:BuckyBowl作为气体吸附剂:气态污染物的结合及其电场诱导的释放

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The adsorption of nitric oxide and nitrogen dioxide (NOx) to the Buckybowls sumanene and corannulene was investigated. Binding energies were up to 1.8x larger than for coronene as the planar analogue, demonstrating the advantages of Buckybowls for gas adsorption. In agreement with previous reports on carbon dioxide and methane adsorption, the favorable binding energies for NOx were shown to be associated with the curvature of the Buckybowls. It is shown that applying an electric field along the bowl symmetry axis modifies the bowl curvatures and impacts adsorbate binding energies, including the potential to desorb adsorbates. As a proof of concept, it is shown that applying electric fields of different strengths and orientations selectively controls sumanene's preference to bind nitric oxide, nitrogen dioxide, and carbon dioxide, suggesting potential applications for dynamically tunable gas adsorption. Moreover, it is demonstrated that adsorbates can be desorbed by applying suitable electric field strengths, allowing cleaning of the Buckybowls for renewed usage.
机译:研究了一氧化氮和二氧化氮(NOx)对BuckyBowls Sumanene和Corannulene的吸附。粘合能量高于Colonene作为平面模拟的粘合能量高达1.8倍,展示了BuckyBowl用于气体吸附的优点。符合先前关于二氧化碳和甲烷吸附的报道,显示NOx的有利结合能与BuckyBowls的曲率相关。结果表明,沿着碗对称轴施加电场改变碗曲率并冲击吸附结合能,包括解吸吸附剂的电位。作为概念的证据,示出了应用不同强度和取向的电场选择性地控制苏曼烯的偏好以结合一氧化物,氮二氧化氧化物和二氧化碳,表明动态可调谐气体吸附的潜在应用。此外,证明吸附物可以通过施加合适的电场强度来解吸,允许清洁用于再生使用的巴氏杆。

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