Lai Huasheng, Xu Fugang, Zhang Yue, Wang Li
College of Chemistry and Chemical Engineering, Jiangxi Normal University, Nanchang 330022, P. R. China.
J Mater Chem B. 2018 Jun 28;6(24):4008-4028. doi: 10.1039/c8tb00902c. Epub 2018 May 29.
Since the intriguing and inspiring discovery of graphene-enhanced Raman scattering (GERS) in 2010, graphene and graphene-based substrates have attracted significant attention in both theoretical research and application exploration of surface-enhanced Raman scattering (SERS); this makes graphene-involved SERS a burgeoning area in many scientific branches. The introduction of graphene not only overcomes some intrinsic drawbacks of SERS, but also has a great synergistic effect with traditional noble metal nanoparticle enhancement substrates and thus greatly improves the sensing performance of SERS and largely expands its application area. To better learn about the recent progress in graphene-based SERS substrates and shed light on future research, an overview of graphene and graphene-based SERS substrates is presented herein. In this review, the role played by graphene in graphene-based SERS substrates is first summarized, and then, the classification and preparation methods of graphene-based substrates are presented, which are helpful for understanding the structure-property relationship. Furthermore, the SERS applications of graphene-based substrates in biomedical areas, including biomolecule detection, bio-imaging, cancer diagnosis and therapy and drug delivery, are highlighted. Other applications in hot-topic areas such as food safety and environmental monitoring are also briefly discussed. Finally, challenges and perspectives on the deficiencies, future development and achievements are presented.
自2010年石墨烯增强拉曼散射(GERS)这一引人入胜且鼓舞人心的发现以来,石墨烯及基于石墨烯的基底在表面增强拉曼散射(SERS)的理论研究和应用探索方面都引起了极大关注;这使得涉及石墨烯的SERS成为许多科学分支中的一个新兴领域。石墨烯的引入不仅克服了SERS的一些固有缺点,而且与传统的贵金属纳米颗粒增强基底具有很大的协同效应,从而极大地提高了SERS的传感性能并大幅扩展了其应用领域。为了更好地了解基于石墨烯的SERS基底的最新进展并为未来研究提供思路,本文对石墨烯及基于石墨烯的SERS基底进行了综述。在这篇综述中,首先总结了石墨烯在基于石墨烯的SERS基底中所起的作用,然后介绍了基于石墨烯的基底的分类和制备方法,这有助于理解结构-性能关系。此外,还重点介绍了基于石墨烯的基底在生物医学领域的SERS应用,包括生物分子检测、生物成像、癌症诊断与治疗以及药物递送。还简要讨论了在食品安全和环境监测等热点领域的其他应用。最后,针对不足之处、未来发展和成果提出了挑战与展望。