Department of Physics, National University of Singapore, 2 Science Drive 3, 117542, Singapore.
Nanotechnology. 2011 May 27;22(21):215702. doi: 10.1088/0957-4484/22/21/215702. Epub 2011 Mar 30.
First-principles calculations have been performed to study the effects of adsorbates (CO molecules and O atoms) and defects on electronic structures and transport properties of Au nanotubes (Au(5, 3) and Au(5, 5)). For CO adsorption, various adsorption sites of CO on the Au tubes were considered. The vibrational frequency of the CO molecule was found to be very different for two nearly degenerate stable adsorption configurations of Au(5, 3), implying the possibility of distinguishing these two configurations via measuring the vibrational frequency of CO in experiments. After CO adsorption, the conductance of Au(5, 3) decreases by 0.9G(0) and the conductance of Au(5, 5) decreases by approximately 0.5G(0). For O-adsorbed Au tubes, O atoms strongly interact with Au tubes, leading to around 2G(0) of drop in conductance for both Au tubes. These results may have implications for Au-tube-based chemical sensing. When a monovacancy defect is present, we found that, for both tubes, the conductance decreases by around 1G(0). Another type of defect arising from the adhesion of one Au atom is also considered. For this case, it is found that, for the Au(5, 3) tube, the defect decreases the conductance by nearly 1G(0), whereas for Au(5, 5), the decrease in conductance is only 0.3G(0).
已进行第一性原理计算,以研究吸附剂(CO 分子和 O 原子)和缺陷对金纳米管(Au(5,3)和 Au(5,5))电子结构和输运性质的影响。对于 CO 的吸附,考虑了 CO 在 Au 管上的各种吸附位。发现 CO 分子的振动频率对于 Au(5,3)的两个近简并稳定吸附构型非常不同,这意味着通过测量实验中 CO 的振动频率有可能区分这两种构型。CO 吸附后,Au(5,3)的电导降低了 0.9G(0),Au(5,5)的电导降低了约 0.5G(0)。对于吸附 O 的 Au 管,O 原子与 Au 管强烈相互作用,导致两个 Au 管的电导下降约 2G(0)。这些结果可能对基于 Au 管的化学传感具有意义。当存在单空位缺陷时,我们发现,对于两个管,电导均降低了约 1G(0)。还考虑了另一种由一个 Au 原子附着引起的缺陷类型。对于这种情况,发现对于 Au(5,3)管,缺陷使电导降低了近 1G(0),而对于 Au(5,5),电导降低仅为 0.3G(0)。