论文标题

用二维绝缘子模板的原子稀薄的金属进行化学传感

Chemical sensing with atomically-thin metals templated by a two-dimensional insulator

论文作者

Kim, Kyung Ho, He, Hans, Rodner, Marius, Yakimova, Rositsa, Larsson, Karin, Piantek, Marten, Serrate, David, Zakharov, Alexei, Kubatkin, Sergey, Eriksson, Jens, Lara-Avila, Samuel

论文摘要

通过将纳米结构材料掺入活性传感元件来提高固态气体传感器的敏感性可能会因界面效应而复杂。纳米颗粒,晶粒或触点的接口可能会导致非线性电流电压响应,高电阻,并最终导致限制传感器读取的电噪声。在这里,我们报告有可能通过直接在碳化硅上表达生长的碳零层上的直接物理蒸气沉积来名义地制备一种原子薄的电气连续金属。用铂为金属,由于电荷向/从PT转移,与化学分析物相互作用时,其电导率得到了强烈调节。这与材料的可伸缩性一起,使我们能够对化学读数的化学读数进行微生物化学疗程,以读取具有下二十亿个检测限的化学物种。由原子上薄的金属形成的二维系统为具有较高活性和选择性的新型异质催化剂设计了弹性和高灵敏度化学检测的途径,可能是设计新的异质催化剂的路径。

Boosting the sensitivity of solid-state gas sensors by incorporating nanostructured materials as the active sensing element can be complicated by interfacial effects. Interfaces at nanoparticles, grains, or contacts may result in non-linear current-voltage response, high electrical resistance, and ultimately, electric noise that limits the sensor read-out. Here we report the possibility to prepare nominally one atom thin, electrically continuous metals, by straightforward physical vapor deposition on the carbon zero-layer grown epitaxially on silicon carbide. With platinum as the metal, its electrical conductivity is strongly modulated when interacting with chemical analytes, due to charges being transferred to/from Pt. This, together with the scalability of the material, allows us to microfabricate chemiresistor devices for electrical read-out of chemical species with sub part-per-billion detection limits. The two-dimensional system formed by atomically-thin metals open up a route for resilient and high sensitivity chemical detection, and could be the path for designing new heterogeneous catalysts with superior activity and selectivity.

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