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Scalable Solid-Template Reduction for Designed Reduced Graphene Oxide Architectures

机译:用于设计还原氧化石墨烯架构的可扩展实体模板还原

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Herein, we report a solid-state reduction process (in contrast to solution-based approach) by using an environmentally friendly reductant, such as vitamin C (denoted VC), to be directly employed to solid-state graphene oxide (GO) templates to give the highly active rGO architecture with a sheet resistance of as low as 10 Ω sq~(-1). In addition, predesigned rGO patterns/tracks with tunable resistivity can be directly "written" on a preprepared solid GO film via the inkjet-printing technique using VC/H2O as the printing-ink. This advanced reduction process allows foreign active materials to be preincorporated into the GO matrix to form quality active composite architectures.
机译:在这里,我们报告了一种固态还原过程(与基于溶液的方法相反),它使用一种环境友好的还原剂(例如维生素C(表示为VC))直接用于固态氧化石墨烯(GO)模板,从而提供了一个具有10Ωsq〜(-1)的薄层电阻的高活性rGO架构。此外,可以使用VC / H2O作为印刷油墨,通过喷墨印刷技术将具有可调电阻率的预先设计的rGO图案/轨迹直接“写”在预先制备的固态GO膜上。这种先进的还原工艺使异物可以预先掺入GO基质中,从而形成高质量的活性复合材料体系结构。

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