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A DFT Study on CO2 Interaction with a BN Nano-Cage

机译:DFT研究二氧化碳与BN纳米笼的相互作用

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Covalent fimctionalization of a B_(12)N_(12) nanocage with CO2 molecule has been investigated using density functional theory in terms of energetic, geometric, and electronic property analyses. Results show that besides two physisorption configurations, CO2 preferably tends to perform [2+2] addition on B-N bonds of the cluster which are shared between six-membered and four-membered rings, releasing energy of 14.99 kcal/mol for adsorption of the first CO2 and of 15.45 kcal/mol for the second one (per each molecule). On the basis of calculated density of states, we have found that the electronic properties of the physisorbed B_(12)N_(12) by CO2 have not changed, while slight changes have been predicted in the functionalized cases. Present results might be helpful to provide an effective way to modify the B12N12 properties for further purifications and applications.
机译:B_(12)N_(12)纳米笼与CO2分子的共价功能化已使用密度泛函理论从能量,几何和电子性质分析方面进行了研究。结果表明,除了两个物理吸附构型之外,CO2还倾向于在簇的BN键上进行[2 + 2]加成,BN键在六元环和四元环之间共享,释放出14.99 kcal / mol的能量以吸附第一个第二个气体的CO2和15.45 kcal / mol(每个分子)。根据计算出的状态密度,我们发现CO2物理吸附的B_(12)N_(12)的电子性质未发生变化,而在功能化情况下预计会发生轻微变化。目前的结果可能有助于提供一种有效的方法来修饰B12N12的性质,以进一步纯化和应用。

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