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首页> 外文期刊>The Journal of Chemical Physics >The role of molecular rotation in activated dissociative adsorption on metal surfaces
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The role of molecular rotation in activated dissociative adsorption on metal surfaces

机译:分子旋转在金属表面活化解离吸附中的作用

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The role of molecular rotation in dissociative adsorption of H_2 on the activated NiAl(110) metal surface is systematically investigated by means of classical dynamics calculations performed on ab initio six-dimensional potential energy surfaces.The calculations show that molecules rotate abruptly when they are close to the surface and that this rotation allows the molecules to adopt the orientation that is more convenient for dissociation (i.e.,nearly parallel to the surface).Also,in reactive sectors of the NiAl(110) unit cell,there is an "angular threshold" below which molecules cannot dissociate.This angular threshold goes down as the incidence energy increases,which explains the rise of the dissociation probability and the fact that it reaches a value close to 1 at incidence energies of the order of 2 eV.The fact that switching on molecular rotation favors dissociation establishes a competition between dissociation and rotational excitation of reflected molecules above the dissociation threshold.Measurements on rotational excitation,might thus bring indirect evidence on the dissociation dynamics.Sample calculations for nonactivated Pd(111) and activated Cu(110) metal surfaces suggest that some of these conclusions may be of general validity.
机译:通过从头算六维势能表面进行经典动力学计算,系统地研究了分子旋转在活化NiAl(110)金属表面上H_2的解离吸附中的作用。计算表明,当分子靠近时,分子会突然旋转到表面,并且这种旋转允许分子采用更易于解离的方向(即几乎平行于表面)。此外,在NiAl(110)晶胞的反应区中,存在一个“角度阈值”在此之下分子无法解离。该角度阈值随入射能量的增加而下降,这解释了解离概率的增加以及在入射能量为2 eV时它达到接近1的值这一事实。分子旋转的切换有利于解离,从而在解离和dissocia上方的反射分子的旋转激发之间建立竞争因此,对旋转激发的测量可能间接地提供了解离动力学的证据。对未活化的Pd(111)和活化的Cu(110)金属表面的样品计算表明,这些结论中的一些可能具有普遍的有效性。

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