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用于生物和电子应用的集成石墨烯/纳米粒子杂化物。

Integrated graphene/nanoparticle hybrids for biological and electronic applications.

机构信息

Division of Chemistry and Biological Chemistry, School of Physical and Mathematical Sciences, Nanyang Technological University, 21 Nanyang Link, 637371 Singapore.

出版信息

Nanoscale. 2014 Jun 21;6(12):6245-66. doi: 10.1039/c4nr00612g.

Abstract

The development of novel graphene/nanoparticle hybrid materials is currently the subject of tremendous research interest. The intrinsic exceptional assets of both graphene (including graphene oxide and reduced graphene oxide) and nanoparticles render their hybrid materials synergic properties that can be useful in various applications. In this feature review, we highlight recent developments in graphene/nanoparticle hybrids and their promising potential in electronic and biological applications. First, the latest advances in synthetic methods for the preparation of the graphene/nanoparticle hybrids are introduced, with the emphasis on approaches to (1) decorate nanoparticles onto two-dimensional graphene and (2) wrap nanoparticles with graphene sheets. The pros and cons of large-scale synthesis are also discussed. Then, the state-of-the-art of graphene/nanoparticle hybrids in electronic and biological applications is reviewed. For electronic applications, we focus on the advantages of using these hybrids in transparent conducting films, as well as energy harvesting and storage. Biological applications, electrochemical biosensing, bioimaging, and drug delivery using the hybrids are showcased. Finally, the future research prospects and challenges in this rapidly developing area are discussed.

摘要

新型石墨烯/纳米粒子杂化材料的开发目前是研究的热点。石墨烯(包括氧化石墨烯和还原氧化石墨烯)和纳米粒子的固有卓越特性赋予了它们的杂化材料协同性能,可用于各种应用。在这篇专题综述中,我们强调了石墨烯/纳米粒子杂化材料的最新进展及其在电子和生物应用中的广阔前景。首先,我们介绍了制备石墨烯/纳米粒子杂化材料的最新合成方法的进展,重点介绍了(1)将纳米粒子修饰到二维石墨烯上,以及(2)用石墨烯片包裹纳米粒子的方法。同时还讨论了大规模合成的优缺点。然后,我们综述了石墨烯/纳米粒子杂化材料在电子和生物应用中的最新进展。对于电子应用,我们重点介绍了在透明导电薄膜以及能量收集和存储方面使用这些杂化材料的优势。展示了杂化材料在电化学生物传感、生物成像和药物输送方面的应用。最后,讨论了该快速发展领域的未来研究前景和挑战。

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