Park Yohwan, Koo Jin Young, Kim Soyoung, Choi Hee Cheul
Department of Chemistry, Pohang University of Science and Technology (POSTECH), Pohang 37673, Republic of Korea.
ACS Omega. 2019 Oct 25;4(19):18423-18427. doi: 10.1021/acsomega.9b02691. eCollection 2019 Nov 5.
We demonstrate an effective and facile method for the deposition of gold nanoparticles (AuNPs) on graphene by using spontaneous galvanic reaction. Despite the interest and importance of the hybrid structure of noble metal-deposited graphene has been considerably increased for its fundamental knowledge in chemical and physical sciences and for its various applications, the progress of this subject is very slow mainly because of the lack of synthetic methods for such structures, especially that are not free from chemical contamination and usage of complex and expensive equipment. Therefore, we developed a new method allowing chemically pure AuNPs/graphene hybrid structures employing galvanic reaction. The spontaneous galvanic reaction was derived from reductant/graphene/oxidant sandwich structures, such as Au ions/graphene/Ge wafer and Au ions/graphene/copper foil, by placing Au ion solution droplets on graphene transferred on a germanium wafer or as made graphene on Cu foil, respectively. According to scanning electron microscopy and atomic force microscopy results, it was confirmed that AuNPs were successfully formed on the graphene surface. This result implies two important points. One is that the formation of pure AuNPs on graphene is possible without using other chemicals frequently required for conventional NP preparation. The other one is that it was experimentally demonstrated that there are electronic communications between the oxidant and reductant that are separated by graphene, through which electrons can pass freely.
我们展示了一种通过自发电化学反应在石墨烯上沉积金纳米颗粒(AuNPs)的有效且简便的方法。尽管贵金属沉积石墨烯的杂化结构因其在化学和物理科学方面的基础知识以及各种应用而受到的关注和重要性显著增加,但该领域的进展非常缓慢,主要原因是缺乏适用于此类结构的合成方法,特别是那些无法避免化学污染且需要使用复杂昂贵设备的方法。因此,我们开发了一种新方法,可以利用电化学反应制备化学纯的AuNPs/石墨烯杂化结构。自发电化学反应源自还原剂/石墨烯/氧化剂夹心结构,例如通过将金离子溶液滴分别置于转移到锗片上的石墨烯或铜箔上的石墨烯上,形成金离子/石墨烯/锗片和金离子/石墨烯/铜箔结构。根据扫描电子显微镜和原子力显微镜的结果,证实了AuNPs成功地在石墨烯表面形成。这一结果暗示了两个要点。一是无需使用传统纳米颗粒制备中经常需要的其他化学物质,就可以在石墨烯上形成纯AuNPs。另一点是通过实验证明,被石墨烯隔开的氧化剂和还原剂之间存在电子通信,电子可以自由通过。