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New Insights into the Adsorption of Oleate on Cassiterite: A DFT Study

机译:DFT研究对油酸在锡石上吸附的新见解

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A new understanding of the adsorption mechanism of oleate on cassiterite surfaces is presented by density functional theory (DFT) calculations. Various convergence tests were conducted to optimize the parameter settings for the rational simulation of cassiterite bulk unit cell and surface slabs. The calculated surface energies of four low-index cassiterite cleavage planes form an increasing sequence of (110) < (100) < (101) < (001), demonstrating (110) is the most thermodynamically stable surface of cassiterite. The interaction strengths of the oleate ion (OL ?¢???? ), OH ?¢???? , and H 2 O on the SnO 2 (110) face are in the order of H 2 O < OH ?¢???? < OL ?¢???? , which reveals that the OL ?¢???? is able to replace the adsorbed H 2 O and OH ?¢???? on the mineral surfaces. Mulliken population calculations and electron density difference analysis show that electrons transfer from the Sn atoms on the cassiterite (110) surface to the O atoms offered by carboxyl groups of oleate during the interaction. The populations of newly formed O1?¢????Sn1 and O2?¢????Sn2 bonds are 0.30 and 0.29, respectively, indicating that these two bonds are of a very low covalency. Density of states analysis reveals that the formation of an O1?¢????Sn1 bond mainly results from the 5s and 5p orbitals of the Sn1 atom and the 2p orbital of the O1 atom.
机译:通过密度泛函理论(DFT)计算,对油酸在锡石表面上的吸附机理有了新的认识。进行了各种收敛测试以优化参数设置,以合理模拟锡石块状晶胞和表面平板。计算得到的四个低折射率锡石劈裂面的表面能形成(110)<(100)<(101)<(001)的递增序列,证明(110)是锡石的热力学最稳定的表面。油酸根离子(OL→¢→???),OH→¢→???的相互作用强度并且,SnO 2(110)面上的H 2 O的顺序为H 2 O

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