Department of Chemistry, Korea University, Seoul, 136-701, Korea.
Angew Chem Int Ed Engl. 2016 Aug 22;55(35):10307-11. doi: 10.1002/anie.201604748. Epub 2016 Jul 22.
Molecular electronics has received significant attention in the last decades. To hone performance of devices, eliminating structural defects in molecular components inside devices is usually needed. We herein demonstrate this problem can be turned into a strength for modulating the performance of devices. We show the systematic dilution of a monolayer of an organic rectifier (2,2'-bipyridine-terminated n-undecanethiolate) with electronically inactive diluents (n-alkanethiolates of different lengths), gives remarkable gradients of rectification. Rectification is finely tunable in a range of approximately two orders of magnitude, retaining its polarity. Trends of rectification against the length of the diluent indicate the gradient of rectification is extremely sensitive to the molecular structure of the diluent. Further studies reveal that noncovalent intermolecular interactions within monolayers likely leads to gradients of structural defect and rectification.
分子电子学在过去几十年中受到了广泛关注。为了提高器件的性能,通常需要消除器件内部分子组件中的结构缺陷。在此,我们证明这个问题可以转化为调节器件性能的一种手段。我们展示了系统地用电子惰性稀释剂(不同长度的烷硫醇)稀释单层有机整流器(2,2'-联吡啶末端正十一烷硫醇)可以产生显著的整流梯度。整流可以在大约两个数量级的范围内进行精细调节,同时保持其极性。对稀释剂长度的整流趋势表明,整流梯度对稀释剂的分子结构非常敏感。进一步的研究表明,单层内的非共价分子间相互作用可能导致结构缺陷和整流的梯度分布。