On May 27, 2020, Han, Bin; Li, Yao; Ji, Xuan; Song, Xianneng; Ding, Shuaishuai; Li, Baili; Khalid, Hira; Zhang, Yaogang; Xu, Xiaona; Tian, Lixian; Dong, Huanli; Yu, Xi; Hu, Wenping published an article.Name: 1-Decanethiol The title of the article was Systematic Modulation of Charge Transport in Molecular Devices through Facile Control of Molecule-Electrode Coupling Using a Double Self-Assembled Monolayer Nanowire Junction. And the article contained the following:
We report a novel solid-state mol. device structure based on double self-assembled monolayers (D-SAM) incorporated into the suspended nanowire architecture to form a “Au|SAM-1||SAM-2|Au” junction. Using com. available thiol mols. that are devoid of synthetic difficulty, we constructed a “Au|S-(CH2)6-ferrocene||SAM-2|Au” junction with various lengths and chem. structures of SAM-2 to tune the coupling between the ferrocene conductive MO and electrode of the junction. Combining low noise and a wide temperature range measurement, we demonstrated systematically modulated conduction depending on the length and chem. nature of SAM-2. Meanwhile, the transport mechanism transition from tunneling to hopping and the intermediate state accompanied by the current fluctuation due to the coexistence of the hopping and tunneling transport channels were observed Considering the versatility of this solid-state D-SAM in modulating the electrode-mol. interface and electroactive groups, this strategy thus provides a novel facile strategy for tailorable nanoscale charge transport studies and functional mol. devices. The experimental process involved the reaction of 1-Decanethiol(cas: 143-10-2).Name: 1-Decanethiol
The Article related to self assembly monolayer nanowire gold thiol electron transfer, Electric Phenomena: Conduction and Conductivity, Semiconductivity, Resistance, Current Carriers, Galvanomagnetic and Acoustoelectric Effects and other aspects.Name: 1-Decanethiol
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