首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Effect of Modification with Vanadium or Carbon on Destructive Sorption of Halocarbons over Nanocrystalline MgO: The Role of Active Sites in Initiation of the Solid-State Reaction
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Effect of Modification with Vanadium or Carbon on Destructive Sorption of Halocarbons over Nanocrystalline MgO: The Role of Active Sites in Initiation of the Solid-State Reaction

机译:钒或碳改性对卤代碳在纳米晶体MgO上的破坏性吸附的影响:活性位点在引发固态反应中的作用

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Small amounts of vanadium or carbon added to nanocrystalline MgO aerogels were shown to promote their activity in destructive sorption of CFZC12 and CFC13 halocarbons. This reaction is characterized by a prolonged induction period, which is considerably shortened after the addition of the studied promoters. It was demonstrated that the promoting effect of finely dispersed carbon did not depend on its location relative to the MgO nanoparticles. Approximately the same results were obtained when carbon was deposited as a thin layer on the surface of the MgO nanoparticles, when activated carbon was physically mixed with the nanocrystalline MgO or when it was located separately in the reactor. The modifying agents are believed to have a catalytic effect on the reaction of nanocrystalline MgO with halocarbons, accelerating the formation of active sites on the surface of the MgO nanoparticles. Electron-acceptor sites are shown to be possible candidates for the role of such active sites. The concentration of weak electron-acceptor sites tested by electron paramagnetic resonance (EPR) using anthracene as a spin probe increases during the induction period, reaching a well-defined maximum during the active stage of the reaction. Electron-acceptor sites of medium strength characterized by direct ionization of anthracene after adsorption were observed on the surface only during the active stage of the reaction. The studied reaction appears to be one of the first solid-state reactions where the role of surface active sites has been identified.
机译:已显示向纳米晶MgO气凝胶中添加少量钒或碳可促进其在CFZC12和CFC13卤代烃的破坏性吸附中的活性。该反应的特征在于延长的诱导期,在加入所研究的启动子后,诱导期大大缩短。已经证明,细分散的碳的促进作用不取决于其相对于MgO纳米颗粒的位置。当将碳作为薄层沉积在MgO纳米颗粒的表面上,将活性炭与纳米晶体MgO物理混合或将其分别放置在反应器中时,可获得大致相同的结果。据信改性剂对纳米晶体MgO与卤代烃的反应具有催化作用,从而加速了MgO纳米颗粒表面上活性位的形成。电子受体位点显示出可能是此类活性位点作用的候选位点。使用蒽作为自旋探针通过电子顺磁共振(EPR)测试的弱电子受体位点的浓度在诱导期增加,在反应的活性阶段达到明确定义的最大值。仅在反应的活性阶段,在表面上观察到中等强度的电子受体位点,其特征在于吸附后蒽被直接电离。所研究的反应似乎是最早的固态反应之一,其中已经确定了表面活性部位的作用。

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