Chen Fang, Li Xiulan, Hihath Joshua, Huang Zhifeng, Tao Nongjian
Department of Electrical Engineering & Center for Solid State Electronics Research, Arizona State University, Tempe, Arizona 85287, USA.
J Am Chem Soc. 2006 Dec 13;128(49):15874-81. doi: 10.1021/ja065864k.
We studied the effect of anchoring groups on the conductance of single molecules using alkanes terminated with dithiol, diamine, and dicarboxylic-acid groups as a model system. We created a large number of molecular junctions mechanically and analyzed the statistical distributions of the conductance values of the molecular junctions. Multiple sets of conductance values were found in each case. The I-V characteristics, temperature independence, and exponential decay of the conductance with the molecular length all indicate tunneling as the conduction mechanism for these molecules. The prefactor of the exponential decay function, which reflects the contact resistance, is highly sensitive to the anchoring group, and the decay constant is weakly dependent on the anchoring group. These observations are attributed to different electronic couplings between the molecules and the electrodes and alignments of the molecular energy levels relative to the Fermi energy level of the electrodes introduced by different anchoring groups. For diamine and dicarboxylic-acid groups, the conductance values are sensitive to pH due to protonation and deprotonation of the anchoring groups. Further insight into the binding strengths of these anchoring groups to gold electrodes is obtained by statistically analyzing the stretching length of molecular junctions.
我们以末端带有二硫醇、二胺和二羧酸基团的烷烃作为模型体系,研究了锚定基团对单分子电导的影响。我们通过机械方式创建了大量分子结,并分析了分子结电导值的统计分布。在每种情况下都发现了多组电导值。电流-电压特性、与温度无关以及电导随分子长度呈指数衰减,所有这些都表明隧穿是这些分子的传导机制。反映接触电阻的指数衰减函数的前置因子对锚定基团高度敏感,而衰减常数对锚定基团的依赖性较弱。这些观察结果归因于分子与电极之间不同的电子耦合,以及由不同锚定基团引入的分子能级相对于电极费米能级的排列。对于二胺和二羧酸基团,由于锚定基团的质子化和去质子化,电导值对pH敏感。通过对分子结拉伸长度进行统计分析,进一步深入了解了这些锚定基团与金电极的结合强度。