Division of Chemistry and Biological Chemistry, School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore 637371, Singapore.
Chemistry. 2013 Apr 8;19(15):4748-53. doi: 10.1002/chem.201204226. Epub 2013 Feb 21.
Graphene materials are generally prepared from the exfoliation of graphite oxide (GO) to graphene oxide, followed by subsequent chemical or thermal reduction. These methods, although efficient in removing most of the oxygen functionalities from the GO material, lack control over the extent of the reduction process. We demonstrate here an electrochemical reduction procedure that not only allows for precise control of the reduction process to obtain a graphene material with a well-defined C/O ratio in the range of 3 to 10, but also one that is able to tune the electrocatalytic properties of the reduced material. A method that is able to precisely control the amount and density of the oxygen functionalities on the graphene material as well as its electrochemical behaviour is very important for several applications such as electronics, bio-composites and electrochemical devices.
石墨烯材料通常是通过将氧化石墨(GO)剥离为氧化石墨烯,然后再进行后续的化学或热还原来制备。这些方法虽然可以有效地去除 GO 材料中的大部分含氧官能团,但对还原过程的程度缺乏控制。在这里,我们展示了一种电化学还原方法,不仅可以精确控制还原过程,以获得具有定义明确的 C/O 比(在 3 到 10 之间)的石墨烯材料,还可以调整还原材料的电催化性能。一种能够精确控制石墨烯材料上的含氧官能团的数量和密度及其电化学行为的方法,对于电子、生物复合材料和电化学器件等多个应用领域都非常重要。