Biodesign Institute, Arizona State University, Tempe, Arizona 85287, USA.
Nano Lett. 2010 Mar 10;10(3):1070-5. doi: 10.1021/nl1001185.
Nucleosides diffusing through a 2 nm electron-tunneling junction generate current spikes of sub-millisecond duration with a broad distribution of peak currents. This distribution narrows 10-fold when one of the electrodes is functionalized with a reagent that traps nucleosides in a specific orientation with hydrogen bonds. Functionalizing the second electrode reduces contact resistance to the nucleosides, allowing them to be identified via their peak currents according to deoxyadenosine > deoxycytidine > deoxyguanosine > thymidine, in agreement with the order predicted by a density functional calculation.
核苷通过 2nm 的电子隧穿结扩散,会产生持续时间小于 1 毫秒、具有广泛峰值电流分布的电流尖峰。当其中一个电极用一种试剂官能化时,这种分布会缩小 10 倍,该试剂通过氢键将核苷固定在特定的取向中。第二个电极的官能化降低了与核苷的接触电阻,使得可以根据峰值电流来识别它们,顺序为脱氧腺苷>脱氧胞苷>脱氧鸟苷>胸苷,与密度泛函计算预测的顺序一致。