...
首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Role of Molecular Dipoles in Charge Transport across Large Area Molecular Junctions Delineated Using Isomorphic Self-Assembled Monolayers
【24h】

Role of Molecular Dipoles in Charge Transport across Large Area Molecular Junctions Delineated Using Isomorphic Self-Assembled Monolayers

机译:分子偶极物在跨越大面积分子结的电荷输送中的作用,其使用同态自组装单层描绘

获取原文
获取原文并翻译 | 示例
           

摘要

Delineating the role of dipoles in large area junctions that are based on self-assembled monolayers (SAMs) is challenging due to molecular tilt, surface defects, and interchain coupling among other features. To mitigate SAM-based effects in study of dipoles, we investigated tunneling rates across carboranes-isostructural molecules that orient along the surface normal on Au (but bear different dipole moments) without changing the thickness, packing density, or morphology of the SAM. Using the Au-SAM//Ga2O3-EGaIn junction (where "//" = physisorption, "-" = chemisorption, and EGaIn is eutectic gallium-indium), we observe that molecules with dipole moments oriented along the surface normal (with dipole moment, p = 4.1D for both M9 and 1O2) gave lower currents than when the dipole is orthogonal (p = 1.1 D, M1) at +/- 0.5 V applied bias. Similarly, from transition voltage spectroscopy, the transition voltages, V-T (volt), are significantly different. (0.5, 0.43, and 0.4 V for M1, M9, and 1O2, respectively). We infer that the magnitude and direction of a dipole moments significantly affect the rate of charge transport across large area junctions with Delta log vertical bar J vertical bar congruent to 0.4 per Debye. This difference is largely due to effect of the dipole moment on the molecule-electrode coupling strength, Gamma, hence effect of dipoles is likely to manifest in the contact resistance, J(o), although in conformational flexible molecules field-induced effects are expected.
机译:划定偶极子在基于自组装单层(SAMS)的大面积电源中的作用是由于分子倾斜,表面缺陷和其他特征中的中间耦合而挑战。为了缓解基于SAM的偶极效果,我们调查了跨越Au(但承受不同偶极矩)沿着表面正常的碳钢植物 - 异组分子的隧道速率而不改变山姆的厚度,包装密度或形态。使用AU-SAM // GA2O3-EGAIN结(其中“//”=物理吸附,“ - ”=化学吸附,并且EGAIN是共晶镓铟),观察到沿表面正常定向的偶极矩的分子(用偶极子对于M9和1O2的时刻,P = 4.1d)在+/- 0.5V施加偏压时比偶极性(P = 1.1d,m1)正交的电流较低。类似地,从转变电压谱学,过渡电压V-T(Volt)显着不同。 (对于M1,M9和1O2分别为0.5,0.43和0.4V)。我们推出偶极矩的幅度和方向显着影响大面积交叉点的电荷运输速率,其中具有达特拉日志垂直条J垂直条与0.4每德德一致。这种差异在很大程度上是由于偶极力矩对分子电极耦合强度的影响,因此偶极子的效果可能在接触电阻中显现,但是在构象的柔性分子中,预期诱导的效果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号