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Chemically deposited palladium nanoparticles on graphene for hydrogen sensor applications

机译:化学沉积在石墨烯上的钯纳米粒子用于氢传感器应用

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摘要

Graphene decorated by palladium (Pd) nanoparticles has been investigated for hydrogen sensor applications. The density of Pd nanoparticles is critical for the sensor performance. We develop a new chemical method to deposit high-density, small-size and uniformly-distributed Pd nanoparticles on graphene. With this method, Pd precursors are connected to the graphene by π-π bonds without introducing additional defects in the hexagonal carbon lattice. Our method is simple, cheap, and compatible with complementary metal-oxide semiconductor (CMOS) technology. This method is used to fabricate hydrogen sensors on 3-inch silicon wafers. The sensors show high performance at room temperature. Particularly, the sensors present a shorter recovery time under light illumination. The sensing mechanism is explained and discussed. The proposed deposition method facilitates mass fabrication of the graphene sensors and allows integration with CMOS circuits for practical applications.
机译:已经研究了由钯(Pd)纳米颗粒修饰的石墨烯在氢传感器中的应用。 Pd纳米粒子的密度对于传感器性能至关重要。我们开发了一种新的化学方法,可在石墨烯上沉积高密度,小尺寸和均匀分布的Pd纳米颗粒。通过这种方法,Pd前体通过π-π键连接到石墨烯,而不会在六角形碳晶格中引入其他缺陷。我们的方法简单,便宜且与互补金属氧化物半导体(CMOS)技术兼容。该方法用于在3英寸硅晶片上制造氢传感器。传感器在室温下显示出高性能。特别地,传感器在光照下呈现出较短的恢复时间。解释并讨论了感应机制。所提出的沉积方法有助于石墨烯传感器的大规模制造,并允许与CMOS电路集成以用于实际应用。

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