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首页> 外文期刊>Angewandte Chemie >Charge Transport through Self-Assembled Monolayers of Monoterpenoids
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Charge Transport through Self-Assembled Monolayers of Monoterpenoids

机译:通过单萜单极的自组装单层电荷运输

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摘要

The nature of the processes at the origin of life that selected specific classes of molecules for broad incorporation into cells is controversial. Among those classes selected were polyisoprenoids and their derivatives. This paper tests the hypothesis that polyisoprenoids were early contributors to membranes in part because they (or their derivatives) could facilitate charge transport by quantum tunneling. It measures charge transport across self-assembled monolayers (SAMs) of carboxyl-terminated monoterpenoids (O2C(C9HX)) and alkanoates (O2C(C7HX)) with different degrees of unsaturation, supported on silver (Ag-TS) bottom electrodes, with Ga2O3/EGaIn top electrodes. Measurements of current density of SAMs of linear length-matched hydrocarbons-both saturated and unsaturated-show that completely unsaturated molecules transport charge faster than those that are completely saturated by approximately a factor of ten. This increase in relative rates of charge transport correlates with the number of carbon-carbon double bonds, but not with the extent of conjugation. These results suggest that polyisoprenoids-even fully unsaturated-are not sufficiently good tunneling conductors for their conductivity to have favored them as building blocks in the prebiotic world.
机译:选择特定类别分子用于广泛掺入细胞的生命起源的性质是有争议的。在那些所选择的类中,是多异戊二烯及其衍生物。本文测试了多异戊二烯是对膜的早期贡献者的假设,部分原因是它们(或其衍生物)可以通过量子隧道促进电荷运输。它测量羧基封端的单萜类单过分(O2C(C9HX))和链烷酸盐(O 2 C(C7HX))的自组装单层(SAMS)的电荷输送,其具有不同的不饱和度,在银(Ag-TS)底部电极上,用Ga2O3负载/ egain顶部电极。线性长度匹配的烃的水SAM的电流密度 - 饱和和不饱和的液态饱和度显示,其完全不饱和分子的传输电荷比完全饱和的饱和分子速度快大约十倍。电荷传输的相对速率的这种增加与碳 - 碳双键的数量相关,但不具有缀合程度。这些结果表明,多异瓣 - 甚至完全不饱和 - 不是足够好的隧道导体,因为它们的电导率是在益生元世界中作为构建块的电导率。

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