论文标题
应变诱导的五轨烯热电学性能
Strain-induced thermoelectricity in pentacene
论文作者
论文摘要
目前的工作讨论了一种非合成策略,以通过菌株在五苯烯中实现有利的热电反应。发现单轴菌株能够在分子中诱导空间各向异性。结果,在特定的紧张情况下,传输光谱变得高度不对称,这是获得有利的热电响应的主要要求。在Landauer-buttiker处方后,使用Green的功能形式主义计算了针对应变诱导的五苯苯乙烯的不同热电量。各种情况被认为使当前的工作更现实,例如底物的效果,分子和电极之间的耦合强度,悬挂键等。这种方案在技术上是在技术上吸引人的,并且完全是我们知识的最佳知识。
The present work discusses a non-synthetic strategy to achieve a favorable thermoelectric response in pentacene via strain. It is found that a uni-axial strain is capable of inducing spatial anisotropy in the molecule. As a result, the transmission spectrum becomes highly asymmetric under a particular strained scenario, which is the primary requirement to get a favorable thermoelectric response. Different thermoelectric quantities are computed for the strain-induced pentacene using Green's function formalism following the Landauer-Buttiker prescription. Various scenarios are considered to make the present work more realistic, such as the effects of substrate, coupling strength between the molecule and electrodes, dangling bonds, etc. Such a scheme to enhance the thermoelectric performance in pentacene is technologically intriguing and completely new to the best of our knowledge.