Wu Jhao-Yi, Lai Yi-Chin, Chang Chien-Liang, Hung Wu-Ching, Wu Hsiao-Min, Liao Ying-Chih, Huang Chia-Hung, Liu Wei-Ren
Department of Chemical Engineering, Chung Yuan Christian University, R&D Center for Membrane Technology, 32023, No. 200, Chun Pei Rd., Chung Li District, Taoyuan 32023, Taiwan.
Department of Chemical Engineering, National Taiwan University, No. 1, Sec. 4, Roosevelt Rd., Taipei 10617, Taiwan.
Nanomaterials (Basel). 2018 Dec 28;9(1):38. doi: 10.3390/nano9010038.
In this study, we report a facile and green process to synthesize high-quality and few-layer graphene (FLG) derived from graphite via a liquid exfoliation process. The corresponding characterizations of FLG, such as scanning electron microscopy (SEM), transmission electron microscope (TEM), atomic force microscopy (AFM) and Raman spectroscopy, were carried out. The results of SEM show that the lateral size of as-synthesized FLG is 1⁻5 μm. The results of TEM and AFM indicate more than 80% of graphene layers is <10 layers. The most surprising thing is that D/G ratio of graphite and FLG are 0.15 and 0.19, respectively. The result of the similar D/G ratio demonstrates that little structural defects were created via the liquid exfoliation process. Electronic conductivity tests and resistance of composite film, in terms of different contents of graphite/polyvinylidene difluoride (PVDF) and FLG/PVDF, were carried out. Dramatically, the FLG/PVDF composite demonstrates superior performance compared to the graphite/PVDF composite at the same ratio. In addition, the post-sintering process plays an important role in improving electronic conductivity by 85%. The composition-optimized FLG/PVDF thin film exhibits 81.9 S·cm. These results indicate that the developed FLG/PVDF composite adhesives could be a potential candidate for conductive adhesive applications.
在本研究中,我们报道了一种简便且绿色的方法,通过液相剥离法从石墨合成高质量的少层石墨烯(FLG)。对FLG进行了相应的表征,如扫描电子显微镜(SEM)、透射电子显微镜(TEM)、原子力显微镜(AFM)和拉曼光谱。SEM结果表明,合成的FLG横向尺寸为1⁻5μm。TEM和AFM结果表明,超过80%的石墨烯层数小于10层。最令人惊讶的是,石墨和FLG的D/G比分别为0.15和0.19。相似的D/G比结果表明,液相剥离过程中产生的结构缺陷很少。对不同石墨/聚偏二氟乙烯(PVDF)和FLG/PVDF含量的复合膜进行了电导率测试和电阻测试。引人注目的是,在相同比例下,FLG/PVDF复合材料表现出优于石墨/PVDF复合材料的性能。此外,烧结后处理在将电导率提高85%方面起着重要作用。成分优化的FLG/PVDF薄膜表现出81.9 S·cm的电导率。这些结果表明,所开发的FLG/PVDF复合胶粘剂可能是导电胶粘剂应用的潜在候选材料。