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Adsorption Mechanisms of NH3 on Chlorinated Si(100)-2 × 1 Surface

机译:NH 3 在氯化Si(100)-2×1表面的吸附机理

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The potential energy surfaces of ammonia molecule adsorptions on the symmetrically chlorinated Si(100)- 2 × 1 surface were explored with SIMOMM:MP2/6-31G(d). It was found that the initial nucleophilic attack by ammonia nitrogen to the surface Si forms a SN2 type transition state, which eventually leads to an HCl molecular desorption. The second ammonia molecule adsorption requires much less reaction barrier, which can be rationalized by the surface cooperative effect. In general, it was shown that the surface Si-Cl bonds can be easily subjected to the substitution reactions by ammonia molecules yielding symmetric surface Si-NH2 bonds, which can be a good initial template for subsequent surface chemical modifications. The ammonia adsorptions are in general more facile than the corresponding water adsorption, since ammonia is better nucleophile.
机译:用SIMOMM:MP2 / 6-31G(d)探索了对称氯化Si(100)-2×1表面上氨分子吸附的势能面。发现氨氮对表面Si的初始亲核攻击形成SN2型过渡态,最终导致HCl分子解吸。第二个氨分子吸附所需的反应势垒要少得多,这可以通过表面协同效应来合理化。一般而言,已表明表面Si-Cl键可以容易地被氨分子进行取代反应,从而产生对称的表面Si-NH 2键,这可以作为后续表面化学修饰的良好初始模板。氨吸附通常比相应的水吸附更容易,因为氨是更好的亲核试剂。

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