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基于[1,3]-硅基从硅烷迁移至硅烯的新型分子电导开关

New Class of Molecular Conductance Switches Based on the [1,3]-Silyl Migration from Silanes to Silenes.

作者信息

Löfås Henrik, Orthaber Andreas, Jahn Burkhard O, Rouf Alvi M, Grigoriev Anton, Ott Sascha, Ahuja Rajeev, Ottosson Henrik

机构信息

Department of Physics and Astronomy, Uppsala University , Box 516, SE-75120, Uppsala, Sweden.

出版信息

J Phys Chem C Nanomater Interfaces. 2013 May 30;117(21):10909-10918. doi: 10.1021/jp400062y. Epub 2013 Apr 5.

Abstract

On the basis of first-principles density functional theory calculations, we propose a new molecular photoswitch which exploits a photochemical [1,3]-silyl(germyl) shift leading from a silane to a silene (a Si=C double bonded compound). The silanes investigated herein act as the OFF state, with tetrahedral saturated silicon atoms disrupting the conjugation through the molecules. The silenes, on the other hand, have conjugated paths spanning over the complete molecules and thus act as the ON state. We calculate ON/OFF conductance ratios in the range of 10-50 at a voltage of +1 V. In the low bias regime, the ON/OFF ratio increases to a range of 200-1150. The reverse reaction could be triggered thermally or photolytically, with the silene being slightly higher in relative energy than the silane. The calculated activation barriers for the thermal back-rearrangement of the migrating group can be tuned and are in the range 108-171 kJ/mol for the switches examined herein. The first-principles calculations together with a simple one-level model show that the high ON/OFF ratio in the molecule assembled in a solid state device is due to changes in the energy position of the frontier molecular orbitals compared to the Fermi energy of the electrodes, in combination with an increased effective coupling between the molecule and the electrodes for the ON state.

摘要

基于第一性原理密度泛函理论计算,我们提出了一种新型分子光开关,它利用光化学[1,3]-硅基(锗基)迁移,从硅烷转变为硅烯(一种Si = C双键化合物)。本文研究的硅烷作为关态,四面体饱和硅原子破坏了分子内的共轭。另一方面,硅烯具有贯穿整个分子的共轭路径,因此作为开态。我们计算出在+1 V电压下,开/关电导比在10 - 50范围内。在低偏压状态下,开/关比增加到200 - 1150范围。逆反应可以通过热或光解触发,硅烯的相对能量略高于硅烷。对于本文研究的开关,迁移基团热逆向重排的计算活化能垒可以调节,范围在108 - 171 kJ/mol。第一性原理计算与一个简单的单能级模型表明,在固态器件中组装的分子具有高开/关比,这是由于与电极的费米能相比,前沿分子轨道的能量位置发生了变化,同时开态下分子与电极之间的有效耦合增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1706/3670211/6b39113d4032/jp-2013-00062y_0010.jpg

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