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Effects of Different Ion Irradiation on the Contact Resistance of Pd/Graphene Contacts

机译:不同离子辐照对Pd /石墨烯触点接触电阻的影响

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摘要

The effect of ion-induced defects on graphene was studied to investigate the contact resistance of 40 nm palladium (Pd) contacting on graphene. The defect development was considered and analyzed by irradiating boron (B), carbon (C), nitrogen (N ), and argon (Ar) ions on as-transferred graphene before metallization. The bombardment energy was set at 1.5 keV and ion dose at 1 × 10 ions/cm . The defect yields under different ion irradiation conditions were examined by Raman spectroscopy. Although, dissolution process occurs spontaneously upon metal deposition, chemical reaction between metal and graphene is more pronounced at higher temperatures. The rapid thermal annealing (RTA) treatment was performed to improve the Pd/graphene contact after annealing at 450 °C, 500 °C, 550 °C, and 600 °C. The lowest contact resistance of 95.2 Ω-µm was achieved at 550 °C RTA with Ar ion irradiation. We have proved that ion irradiation significantly enhance the Pd/graphene contact instead of pd/pristine graphene contact. Therefore, in view of the contention of results ion induced defects before metallization plus the RTA served an excellent purpose to reduce the contact resistance.
机译:研究了离子诱导缺陷对石墨烯的影响,以研究40 nm钯(Pd)与石墨烯的接触电阻。在金属化之前,通过在转移后的石墨烯上照射硼(B),碳(C),氮(N)和氩(Ar)离子来考虑和分析缺陷的发展。轰击能量设置为1.5 keV,离子剂量设置为1×10离子/ cm。通过拉曼光谱检查在不同离子辐照条件下的缺陷产率。尽管在金属沉积时溶解过程会自发发生,但金属和石墨烯之间的化学反应在较高温度下更为明显。在450°C,500°C,550°C和600°C退火后,进行了快速热退火(RTA)处理以改善Pd /石墨烯的接触。在550°C RTA和Ar离子辐照下,最低接触电阻为95.2 μ-µm。我们已经证明,离子辐照显着增强了Pd /石墨烯的接触,而不是pd /原始石墨烯的接触。因此,考虑到结果的争用,金属化加上RTA之前的离子诱导缺陷起到了降低接触电阻的优异目的。

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